- Published on
Did you know cows poop 15 times per day? The average adult cow produces about 65 pounds (30 kg) of manure daily. That adds up to about 12 tons (11,000 kg) of poo each year. Per cow. I guess this shouldn't be surprising, considering cows stand around eating pretty much all day long. Fortunately, all that manure makes for excellent fertilizer.
Of course, this depends on the breed, sex, and size of the animal, but these numbers are reasonable averages.
Cows also produce copious amounts of urine. On average, a cow releases 3.5 gallons (13 L) of urine each day. It helps to wrap your head around this if you imagine filling up thirteen 1-liter soda bottles with urine.
And let's not forget about milk. An average dairy cow produces about 7.5 gallons (28 L) of milk per day. Interestingly, if a cow was only producing enough milk to feed a calf, it would need only one gallon per day. Due to selective breeding, the average yearly milk production for a single cow has increased from 233 gallons in 1880 to 2,825 gallons in 2022. Um, that's twelve times more milk per cow.
Of course, this depends on the breed, sex, and size of the animal, but these numbers are reasonable averages.
Cows also produce copious amounts of urine. On average, a cow releases 3.5 gallons (13 L) of urine each day. It helps to wrap your head around this if you imagine filling up thirteen 1-liter soda bottles with urine.
And let's not forget about milk. An average dairy cow produces about 7.5 gallons (28 L) of milk per day. Interestingly, if a cow was only producing enough milk to feed a calf, it would need only one gallon per day. Due to selective breeding, the average yearly milk production for a single cow has increased from 233 gallons in 1880 to 2,825 gallons in 2022. Um, that's twelve times more milk per cow.
Photo Credit:
- Dairy cows - DepositPhotos
- Dairy cows - DepositPhotos
- Published on
Did you know koalas sleep 18 to 22 hours every day? Seriously, that's more than a human teenager sleeps. I know, because I used to be one... a teenager, not a koala.
Why do koalas sleep so much? Because they are always working really hard. On the outside, it may not look like they're working hard (in fact, they seem kind of lazy), but they are definitely working hard on the inside.
Here's why. Koalas are fond of living in eucalyptus trees and eating eucalyptus leaves. In fact, that's pretty much all they ever eat. They eat more than a pound of eucalyptus leaves per day. The problem is, eucalyptus leaves are toxic, and they have a huge amount of fiber and very few calories and nutrients. So, a koala's body has to work really hard to break down the toxins and extract nutrients from the leaves. This, of course, can be done while they sleep. And because it takes so much energy to digest their food, they might as well be sleeping to keep from using up what little energy they are gaining from digestion.
Oh... one more thing. I mentioned above that koalas only eat eucalyptus leaves, but that's not completely true. When they are really young (and called joeys), they eat their mother's poop. This is after they stop feeding on milk and before they start eating leaves on their own. Technically, though, because the mother only eats eucalyptus leaves, I guess the mother's poop is eucalyptus leaves too.
Why do koalas sleep so much? Because they are always working really hard. On the outside, it may not look like they're working hard (in fact, they seem kind of lazy), but they are definitely working hard on the inside.
Here's why. Koalas are fond of living in eucalyptus trees and eating eucalyptus leaves. In fact, that's pretty much all they ever eat. They eat more than a pound of eucalyptus leaves per day. The problem is, eucalyptus leaves are toxic, and they have a huge amount of fiber and very few calories and nutrients. So, a koala's body has to work really hard to break down the toxins and extract nutrients from the leaves. This, of course, can be done while they sleep. And because it takes so much energy to digest their food, they might as well be sleeping to keep from using up what little energy they are gaining from digestion.
Oh... one more thing. I mentioned above that koalas only eat eucalyptus leaves, but that's not completely true. When they are really young (and called joeys), they eat their mother's poop. This is after they stop feeding on milk and before they start eating leaves on their own. Technically, though, because the mother only eats eucalyptus leaves, I guess the mother's poop is eucalyptus leaves too.
Photo Credit:
- Sleeping koala - DepositPhotos
- Published on
I've been spending some time lately writing a series of speculative short stories (2,000 to 2,500 words or so). For each of these stories, I start with a "What if?" question.
For this story, I asked the question "What if you discovered someone or something was trying to communicate with you in a strange way?"
I hope you enjoy it!
For this story, I asked the question "What if you discovered someone or something was trying to communicate with you in a strange way?"
I hope you enjoy it!
Reuben didn’t like change. He liked what he’d always liked. That’s why he was eating breakfast alone at 5:30 AM, just as he had always done. It was also why he’d bought a dozen boxes of Alpha-Bits cereal when some company in China started making the stuff once it was discontinued in the US. And it tasted pretty much the same as it always had, which was fine with Reuben. Alpha-Bits drowned in 100% whole milk. From a cow. Not from almonds, or soybeans, or chickpeas, or whatever else they were trying to make milk from these days.
With his mug of black coffee steaming beside his bowl of Alpha-Bits, Reuben spread out his old-fashioned printed newspaper on the breakfast table, careful not to crinkle the pages too loudly and wake Marlene. Marlene liked to sleep in. Always had.
So far it was a perfect morning. Reuben had already had a decent bowel movement, nothing to complain about there. He’d found the newspaper on the porch instead of in the bushes. And today marked his ninth year of retirement. It’d been a damn good nine years, too. Nine years of comfortable routine. Reuben and Marlene, doing what they loved to do, day after day. Some things they did together, some things apart. Just the right balance.
Staring at the not-so-perfect headlines about inflation and a new COVID-19 variant, he spooned up his first bite of cereal. Before shoving it into his mouth, he glanced at the pile of random letters on his spoon. Only they weren’t random. Among the haphazard letters on their edges or upside-down were six letters arranged in order: REUBEN.
Reuben stared. What were the chances? He had occasionally gotten a two-letter word, and one time he laughed his head off when he got the word ASS. But nothing like this. Today was indeed going to be a perfect day.
Grinning like a kid at Christmas, he ate his name, imagining that it tasted better simply because of the statistical improbability of it. He spooned up another pile. In the spoon, six letters again spelled REUBEN.
Reuben’s grin faded. For a moment he thought maybe he hadn’t actually put the first spoonful in his mouth and was still staring at the same pieces, but his mouth was full—he had eaten his name. Somehow the letters had arranged themselves into his name a second time. This was not only unlikely, it couldn’t happen. It just couldn’t.
He considered calling to Marlene, waking her up to see what he’d done. But she’d think he was pulling her leg, then she’d be in a foul mood from getting woke up. He shoved the bite into his mouth, stirred the cereal around in his bowl a few times to mix it up, then scooped up a totally random spoonful.
Six letters spelled REUBEN.
A wave of tingles began washing over Reuben’s face, from his scalp down. Maybe he was hallucinating. He’d eaten a sampler plate of seafood chowders at Buck’s Crab House the previous evening. Maybe he’d gotten a bad batch. But his stomach felt perfectly fine.
He turned the spoon over, splattering the contents onto the table. Somehow, in the mess, six letters still spelled out his name. His tingles spread down his neck and out to his fingertips. Using his spoon, he scooped more cereal onto the table, not caring that the milk was getting his newspaper wet. Among the scattered pieces of sugary, multigrain cereal, his name appeared again: REUBEN. He did it again, and again it said REUBEN.
He stood up and swiped the newspaper off the table. It fluttered noisily onto the floor. He went to the cupboard and brought back the half-empty Alpha-Bits box. After flipping open the tabs and unrolling the plastic sleeve, he sprinkled some of the cereal across the tabletop, working the box back and forth to spread the letters out. Clutching the box to his chest, he stared down at the mess. For several long seconds, he didn’t see anything unusual. Then he did. He spotted the word IMPORTANT. Once he saw it, it was obvious. And there were more words. There was an entire sentence.
REUBEN THIS IS IMPORTANT
“Marlene!” His voice cracked, so he shouted again. “Marlene!”
He wanted Marlene to see what he’d done, so he left the cereal on the table exactly like it was. He sat in his chair and sprinkled the rest of the cereal from the box onto the floor. Seconds later he found another sentence in the mess.
REUBEN YOU MUST SAVE YOUR PEOPLE
“Marlene!”
“What is it, Reuben?”
“You gotta see this!”
“I’m trying to sleep. Can’t it wait?”
“Dammit, Marlene, you gotta see this!”
Reuben went to the cupboard again, plucked out a new box of Alpha-Bits, and tore it open. He sprinkled cereal onto the counter below the cupboard. Seconds later he saw it.
REUBEN SAVE YOUR PEOPLE FROM TERRENCE
“Terrence?” he said aloud. The only Terrence he knew was the neighbor from next door. Strange man who never did much neighboring. “Who are you?” he said, feeling stupid, like he was talking to a box of cereal.
Marlene’s voice came from beyond the bedroom door. “What did you say?”
“You need to get out here!” He moved to a new spot on the counter and dumped out more cereal. He saw the sentence.
REUBEN YOU MUST KILL TERRENCE NOW
He stared. This was insane. “Who are you?”
He dumped more cereal.
IMPORTANT
“What’s important?” He dumped more cereal.
KILL TERRENCE NOW TO SAVE YOUR PEOPLE
He poured out some more.
KILL HIM NOW REUBEN
The bedroom door opened. Marlene was in her robe. “For God’s sake, what are you doing?”
“I don’t know what I’m doing! You have to see this.” He showed her, starting with the words on the table, then the ones on the floor, then on the counter.
“You woke me up for this? Aren’t you a little mature for this kind of joke?”
He stared at her. “Someone is telling me to kill our neighbor!”
Her eyes grew wide as she studied his face. Now she looked as scared as he was. “Are you okay, Reuben?”
“No, I’m not okay!”
She turned and headed back to the bedroom. “I’m calling Clinton.”
“Good, you do that.”
Clinton was Marlene’s brother—a psychiatrist, and a good one too. Clinton had helped save Reuben and Marlene’s marriage years ago. Reuben liked the guy, even though he drove a hoity-toity Jaguar. Yes, Reuben needed to talk to Clinton. Right now.
Seconds later, he heard Marlene talking to her brother in a hushed tone.
Reuben decided he needed something better for these messages than breakfast cereal. He went to the closet and dug out the Scrabble game. He cleared the coffee table in the living room, opened the box, then dumped out the hundred letter tiles from the cloth bag. It took him only a few seconds to spot a message.
TERRENCE IS GOING TO KILL YOUR PEOPLE
He was surely going mad. “Why are you saying these things? Who are you?” He scooped up the tiles and dropped them onto the tabletop again.
KILL TERRENCE NOW
He scooped them up and dropped them again.
YOU ARE RUNNING OUT OF TIME
He did it again.
REUBEN YOU MUST KILL TERRENCE NOW
“Ahh!” Reuben shouted, and he flipped the coffee table over, scattering the tiles across the carpet. He sat on the couch, trying to steady his breathing. Was that a pain in his chest? Was he having a heart attack?
Marlene came into the room, stared for a moment, and said, “He’s on his way.” She turned the table upright and started picking up the mess. She had changed into a dress. Reuben was losing his marbles, maybe having a life-threatening heart attack, and she had taken the time to change her clothes. After putting the tiles back into their bag, she sat beside him. “Reuben, you’re trembling.” She put her arm around him, which he actually found to be comforting.
***
Clinton knocked on the door within minutes, and Marlene showed him in. Reuben was now lying on his back on the couch, with a warm washcloth over his eyes. He sat up, feeling slightly dizzy.
“I think it started as a joke,” Marlene said, after accepting a hug from her brother. “He was trying to be funny, but now I’m really worried about him.”
Reuben shook his head. “It didn’t start as a joke!”
Marlene gave her brother a look that said a lot without her needing to speak any words. It was infuriating, but at this point Reuben wanted Clinton to find that he was having some kind of episode—something there might be a pill for.
“Show Clinton what you think is happening,” said Marlene.
Reuben grabbed the bag of tiles and dumped them onto the coffee table. He held his breath, hoping there wouldn’t be a message. He needed to be proven wrong.
Then he saw it. He pointed to the first word then moved his finger over the entire sentence.
REUBEN MARLENE AND CLINTON YOU MUST KILL TERRENCE NOW
He turned to Clinton, who was frowning.
“How did you do that?” Clinton asked.
Instead of answering, Reuben scooped up the tiles and dropped them again. He found the words and pointed.
KILL TERRENCE OR HE WILL DESTROY YOUR WORLD
Marlene sucked in a breath, as if this was the first time she had actually seen the words. “What’s going on, Reuben? This isn’t funny. Not one bit.”
“How many times has this happened?” Clinton asked.
Reuben scooped the tiles up again. “It started at breakfast—with my Alpha-Bits, for God’s sake! And it happens every time. It keeps saying to kill Terrence. Our neighbor’s name is Terrence.” He dropped the tiles on the table then pointed.
YOU ARE RUNNING OUT OF TIME
“I’ve never seen anything like this,” Clinton said. “And to be honest, it’s rather frightening.” He pulled his phone from his pocket. “For lack of a better idea, I think the police should probably pay a visit to your neighbor.” He nodded at the phone in his hand. “Do you mind?”
“Please do,” said Marlene.
Reuben shrugged. This debacle was ruining his whole day. Now he wanted the whole thing to go away. Then maybe he’d be able to convince himself it had never happened.
***
Twenty minutes later, two Dubuque police officers were standing in the living room, staring at a new message on the coffee table.
KILL TERRENCE NOW IF YOU WANT TO SAVE YOUR PEOPLE
It was the sixth message in a row that they had seen, and Reuben was starting to wonder if they were ever going to believe what their own eyes were showing them.
The heavier man, last name Brewer, shook his head for the umpteenth time. “Let me try it.” He gathered the tiles and dropped them.
Marlene saw the message first and pointed it out.
SOON IT WILL BE TOO LATE
“Jesus Christ,” said the smaller one, last name Bramley. “What do you folks know about your neighbor Terrence?”
“Almost nothing,” said Marlene. “The man hardly speaks, even when we holler hello. Doesn’t even wave.”
The two officers eyed each other for a moment.
Officer Brewer said, “You folks stay inside until we get back, okay?”
They all nodded.
When the officers stepped out the front door, Reuben, Marlene, and Clinton gathered at the only window that had a view of Terrence’s front porch. The officers crossed the lawns, climbed the steps to the porch, and knocked. They knocked again, and Brewer shouted something.
Terrence opened the door, stepped out, and closed the door behind him. He stood facing the officers, with his back to the three observers. Brewer and Bramley were asking questions, but they didn’t seem very happy with the answers. Or maybe they weren’t getting any answers at all.
Reuben saw something strange, and he squinted. Terrence was standing with his hands clasped behind his back, but something was happening to his hands. They were changing shape, seemingly growing longer.
Abruptly, Terrence swung both his arms from behind his back and struck Brewer.
Marlene let out a scream.
Reuben stared in confusion. Officer Brewer’s head was gone. His body collapsed in a heap on the porch.
Officer Bramley shouted something and took several steps back as Terrence drew his arms back to thrust them out again.
A shot rang out, then another and another and another. Terrence toppled down the porch steps and onto the sidewalk.
Reuben ran for his front door and threw it open, ignoring Marlene’s pleas for him to stay inside. He ran across the yards and stopped at Terrence’s body. But it wasn’t a normal body. It still had Terrence’s face, but the impossibly long arms were shiny and orange, with wide, flat blades instead of hands, like two plastic, jointed canoe paddles.
As he stared down at Terrence, Reuben barely heard Officer Bramley shouting into his radio, calling for help.
Orange fluid—maybe blood—was flowing from Terrence’s gunshot wounds onto the sidewalk, forming tiny rivulets on its way toward the street. The rivulets started shifting, changing directions, some of them even flowing up the slope. Within seconds, they formed a string of letters.
REUBEN GO INSIDE AND TURN IT OFF NOW
BASEMENT
GREEN LEVER BLUE LEVER THEN WHITE LEVER
Reuben knew he needed to do this. He had no idea why, he just knew it. He leapt up the stairs, past Officer Bramley and his dead partner, and into the house. He found the door to the basement, descended the carpet-covered stairs, and stopped, staring at an object unlike anything he had ever seen before. It filled most of the basement, from floor to ceiling. It was mostly black, with irregular streaks of orange running parallel to each other, like reverse tiger stripes.
He felt something, a silent vibration that jiggled his internal organs. It was getting more pronounced with every passing second, growing, intensifying, strengthening.
Something caught his eye, on the concrete floor. Sawdust and dirt. The particles were moving, pulling together, forming letters, words, even punctuation.
NOW REUBEN
GREEN LEVER BLUE LEVER THEN WHITE LEVER
NOW NOW NOW
He turned back to the massive black and orange object. To his right, at chest level, was a control panel with dozens of buttons, switches, and levers, each a different color. He found the green lever, in the up position, and he shoved it down. Then he found the blue lever and shoved it down, then the white lever.
His organs stopped jiggling.
He turned back to the sawdust and dirt on the floor. “What did I just do?”
The particles moved into formation.
YOU SAVED YOUR PEOPLE
“Why couldn’t you do it yourself? I mean, if you can move dirt and Scrabble tiles and Alpha-Bits?”
MY INFLUENCE IS LIMITED DUE TO MY GREAT DISTANCE FROM YOUR WORLD
Reuben tried to swallow, but his mouth was too dry. “Who are you?”
I AM AN OBSERVER
YOUR WORLD INTERESTS ME
“Are you like Terrence?”
IN MY BODY TYPE ONLY
NOT IN MY INTENTIONS
“Did I save the world?”
YOU MUST LEAVE THIS HOUSE NOW
OTHERS LIKE ME WILL ARRIVE SOON TO DESTROY THE WEAPON
“Why couldn’t they turn off the weapon?”
THEY WERE TOO FAR AWAY WHEN THE WEAPON ACTIVATION WAS DETECTED
IT IS FORTUNATE YOU WERE NEAR
YOU MUST GO HOME NOW
“Will you continue talking to me? You know, with the cereal or whatever?”
LET US HOPE IT IS NOT NECESSARY
GOODBYE REUBEN
- Published on
When I was a kid, there was a city park about a block away that had a small lake. Around the edges of this lake were burrows that went back into the ground from the water's edge. In my endless curiosity (and perhaps foolishess) I discovered that, if I would lie down on my belly with my head over the water, I could reach my hand far back into these burrows. I know... kind of creepy, right? Well, even creepier, when I reached my hand back in there, I felt some fat, slimy creatures wriggling around, trying to escape my grasp. When I pulled one out, I realized it was a big, black and yellow tiger salamander. That's when my fascination with salamanders began.
This is the type of critter (tiger salamander) I pulled out of those holes in the lake's bank:
This is the type of critter (tiger salamander) I pulled out of those holes in the lake's bank:
Then, in college, when I was working on a degree in wildlife biology, I learned that some tiger salamanders never grow out of the larval stage (the aquatic stage where they have external gills on the sides of their heads). If tiger salamanders happen to live in a pond with few or no predators, and if the pond has plenty of oxygen in the water and does not freeze all the way to the bottom, the salamander larvae are like Peter Pan—they never grow up. They remain in the larval form, even though they grow quite large. These larval tiger salamanders are sometimes called water dogs or mud puppies (although there is actually another type of salamander called the mudpuppy).
However, these water dogs can transform into adults (by losing their gills and developing lungs) at any time. For example, if the pond starts to dry up. Years ago, when I was a science teacher, I put two water dogs in an aquarium full of oxygenated water, and two in an aquarium with only an inch of water. The water dogs in the shallow aquarium transformed into air-breathing adults, whereas those in the full aquarium remained as larvae with gills. Fascinating, huh?
Well, there also happens to be a strange type of salamander that NEVER transforms into the adult form. It NEVER loses its gills. It is the true Peter Pan of the salamander world, and it's called the Axolotl.
What the heck is an Axolotl?
The Axolotl, pronounced ax-oh-lot-ul, is actually closely related to the tiger salamander. However, the axolotl only lives in a small area of Mexico, and it is almost extinct in the wild.
The native habitat of axolotls is only two lakes in the southern part of Mexico City. One of the lakes is now gone, and the other has mostly been converted into canals.
Axolotls are predators, feeding on aquatic insects, snails, worms, small fish, and other small aquatic creatures.
Here's an unusual twist. Despite being all but extinct in the wild, millions of axolotls exist around the world. Why? Because these creatures are used extensively in research and are therefore widely bred in research labs. They are also bred for the pet industry.
Amazing Facts about Axolotls
Okay, let's take a closer look at this Peter Pan concept. It's not really like axolotls never grow up. They do grow to sexual maturity, and they do reproduce. However, they always remain in their larval form, even when they grow to be 12 inches (30 cm) or longer. This is a specialized condition called paedomorphism (sometimes called neoteny)—retaining juvenile physical traits throughout adulthood.
Personally, there's been a few times I've been accused of retaining the mind of a child (which I consider a compliment), but that's a psychological trait, not a physical trait... not the same thing as neoteny!
As you probably know, most amphibians, like frogs and toads, start out as aquatic, tadpole-like larvae. Eventually, though, they metamorphose into terrestrial adults, breathing air instead of water. Most salamanders do this too, although, unlike tadpoles, salamander larvae usually have legs, and they do not lose their tail as they become adults.
So, why do axolotls display permanent paedomorphism? One reason is that axolotls do not have a certain hormone that is necessary for the thyroid gland to trigger metamorphosis.
Oddly, scientists have found that they can force axolotls to go through metamorphosis by artificially administering the hormone. But these salamanders cannot produce the hormone themselves, so this does not happen naturally in the wild. By the way, people who have axolotls as pets should not try this, as it usually kills the creature, either during the process or afterwards.
Take a look at the white axolotl below (as well as the white one above the previous photo).
White individuals like this are not found in the wild. Back in 1864, several axolotls were captured in Mexico and taken to Paris. There, people began breeding them in captivity, eventually developing several different color strains, including the white ones.
Because axolotls are easy to keep and breed in captivity, they have become popular pets, which are sometimes called "Mexican walking fish" in pet stores. Of course, they aren't really fish.
Also, as I stated above, they are widely bred for biological research. The reasons why are quite fascinating. First of all, axolotls have an amazing ability to regenerate body parts. You may know that some other amphibians can regenerate lost body tissue, but the axolotl is by far the champion at this. If they lose a limb, it grows right back. But that's not all. They can also regenerate their jaw, their spine, and even a portion of their brain. To give you an idea of how amazing the ability is, here's a quote from Professor Stephane Roy of the University of Montreal:
"You can cut the spinal cord, crush it, remove a segment, and it will regenerate. You can cut the limbs at any level—the wrist, the elbow, the upper arm—and it will regenerate, and it’s perfect. There is nothing missing, there’s no scarring on the skin at the site of amputation, every tissue is replaced. They can regenerate the same limb 50, 60, 100 times. And every time: perfect."
As you can probably guess, by studying regeneration in axolotls, scientists hope to figure out how to give humans this ability. Well, that seems like a stretch, but even if they don't figure out how to give humans the ability, understanding the process will likely result in other medical breakthroughs.
As if that weren't intriguing enough to scientists, axolotls are also 1,000 times more resistant to cancer than humans and other mammals. And, they can accept transplanted organs from other axolotls without ever rejecting the organs.
No wonder these critters are so common in research labs!
By the way, here's what the original wild axolotls looked like:
Unfortunately, they're pretty much gone in the wild. Remember, one of the lakes they lived in is now gone, and the other has been converted to canals. And this is in Mexico City, one of the largest cities in the world, where water pollution is a concern. In 1998, a survey was done in the canals that used to be the lake axolotls lived in, and scientists found a density of 6,000 axolotls per square km. A similar survey in 2003 found 1,000 per square km, and in 2008 they found only 100 per square km. In 2013, a four-month search found exactly zero axolotls.
Surprisingly, soon after that search, two axolotls were spotted in one of the canals. So, it is possible that a few wild ones are still alive in the canals.
I suppose it's a good thing axolotls thrive in captivity. In fact, there may be a greater number of them in captivity around the world than the number that ever lived in the two lakes of their original native range.
Finally, axolotls have long been culturally important in Mexico. According to legend, the axolotl is actually the Aztec god of fire and lightning, named Xolotl, who disguised himself as a salamander to avoid being sacrificed. Why? Because the Aztec gods were supposed to sacrifice themselves to the sun, to keep it alive and moving across the sky.
In Mexico City, axolotls are depicted on billboards, the sides of buildings, and even on the sides of tour buses.
In 2020, Mexico decided to use an image of an axolotl on its new 50-peso bill.
So, the Axolotl deserves a place in the W.A.H.O.F.
(Wizard Animal Hall of Fame).
FUN FACT: The word wizard, as you can imagine, is quite old. It originated in the early 1400s, and then it meant "philosopher or sage." It came from the Middle English wys, which meant "wise." It wasn't until about 1550 that the word was used to mean someone "with magical power." This happened because the distinction between philosophy and magic became blurred during the middle ages. Much, much later, in 1922, people (particularly British people) began using wizard as an adjective to mean "superb, outstanding."
So, wizard is another way to say awesome (at least in the UK)!
Photo Credits:
- Tiger salamander - DepositPhotos
- Axolotl #1, facing left, brown background - DepositPhotos
- Axolotl #2, closeup of brown, speckled face - DepositPhotos
- Axolotl #3, white, facing camera - DepositPhotos
- Axolotl #4 - wild brown color - DepositPhotos
- Tiger salamander - DepositPhotos
- Axolotl #1, facing left, brown background - DepositPhotos
- Axolotl #2, closeup of brown, speckled face - DepositPhotos
- Axolotl #3, white, facing camera - DepositPhotos
- Axolotl #4 - wild brown color - DepositPhotos
- Published on
When I was a kid, I didn't realize the Tasmanian devil was a real animal. I thought it was just that crazy, snarling, slobbering Looney Tunes cartoon character. I still like Taz, but it turns out there is a real Tasmanian devil, and the two don't look much like each other.
What the heck is a Tasmanian Devil?
First of all, Tasmanian devils are carnivorous marsupial mammals. Marsupials are characterized by giving birth to very underdeveloped young (often smaller than a jelly bean). The young then move into a pouch on the female's body, attach themselves to a nipple, and go through most of their development in the pouch instead of inside the mother's body. Placental mammals (including humans), on the other hand, go through extensive development inside the mother's body before being born, and they get nutrients from the mother's blood through a placenta.
Tasmanian devils are now the largest carnivorous marsupials. They've only held this title since 1936, which is when the thylacine (the Tasmanian tiger) became extinct. Tasmanian devils are about the size of a small dog, with an average weight of 18 pounds (8 kg) for males and 13 pounds (6 kg) for females.
Devils are found mainly on the Australian island state of Tasmania, although a small population has been reintroduced to mainland Australia, where devils have been extinct for hundreds of years.
Early European settlers gave this animal the name devil after seeing the creature display some of its rather bizarre behaviors when feeding and defending its food, including baring its teeth, lunging at anything that gets near, and emitting frightening screeches and growls. As you can probably guess, these behaviors are also what inspired the crazy Looney Tunes character.
Amazing Facts about Tasmanian Devils
First, let's consider this animal's reputation for being insanely aggressive. Is this reputation deserved? Yes and no. Yes, they fiercely defend themselves when attacked, but so do many other animals. They open their mouths wide, baring their teeth, but this is usually just a threatening gesture.
Devils are typically solitary, but the smell of a dead animal carcass will bring them together to feed. One of the rituals of this type of feeding is that they aggressively jockey for a good feeding position on the carcass. It's important to point out that many of their aggressive feeding behaviors do not actually involve physical harm. Studies have found that they use twenty different aggressive postures and eleven different aggressive sounds to intimidate each other without actually fighting. Their famous open-mouth yawn is an example of an aggressive gesture. Sometimes they stand on their hind legs and "spar," shoving each other with their front paws and their snouts.
That being said, the posturing and sparring doesn't always work, and devils do resort to vicious fighting. Scars from these fights are commonly seen on their faces and rumps, particularly in the males, who also fight during the breeding season.
Check out this video on the devil's aggressive behavior.
Tasmanian devils can bite really hard. Due to the arrangement of skull bones and jaw muscles, devils have a bone-crushing bite. In fact, they have one of the strongest bites (per unit of body mass) of any mammal. Their heads and necks are proportionally large compared to their body size. These strong jaws allow them to eat the entire bodies of their prey (and carrion), including the bones. In fact, devils have teeth that are adapted to feeding on bones. They have the same number of teeth as dogs, but unlike dogs their teeth grow continuously throughout their lives, which is important if you are constantly chewing on things as hard as bones.
Speaking of eating, Tasmanian devils are predators, but they are also opportunistic, and they actually feed on carrion (which they find with a keen sense of smell) more often than they feed on animals they kill. When hunting, one of the devils' favorite prey is the wombat, which is relatively easy to kill. They also hunt small wallabies and other smallish marsupials, as well as birds, reptiles, frogs, fish, and domestic farm animals. They will eat just about any dead animal they find, including fish washed ashore and roadkill. They have even been known to dig up dead animals that people have buried. They were seen excavating a horse that had died of disease and had been buried.
When Tasmanian devils find or kill a meal, they really take advantage of the available food. They gorge themselves, sometimes eating as much as 40% of their body weight in one day! When food is abundant, they are able to store fat in their tail. In fact, a good sign of a healthy devil is a nice, plump tail.
Um, this may seem a bit disturbing, but Tasmanian devils have a habit of falling asleep inside the carcasses of large carrion animals. This allows them to defend the carcass from other scavengers, and it's also a matter of convenience—they can start eating again immediately after waking up.
Tasmanian devils are athletic. They are excellent tree climbers and swimmers, as well as long-distance runners. A devil can maintain a pace of 15 miles per hour (24 km/hr) for an hour straight.
When it comes to mating season, you probably won't be surprised that male devils fight aggressively over females (I guess fighting is just a way of life for these pugnacious critters). The females then mate with the winning males. Sometimes the pair will mate off and on for up to eight days, and the male sticks around to guard the female, preventing other males from mating with her.
Females give birth standing up, which is not a problem, considering each baby isn't much bigger than a grain of rice (remember, that's how marsupials do things... the babies develop outside the body instead of inside). Here's where things get a little weird. The female gives birth to 20 to 30 tiny young, and the babies have to race to the pouch. Why? There are only FOUR nipples in the pouch. That means most of the young will not survive, so getting to one of the four nipples quickly is literally a matter of life and death.
The surviving young develop inside the pouch for about three months. After the mother kicks them out, they continue living in the underground den for another three months before going out on their own. Baby devils are called joeys, pups, or imps.
So, the Tasmanian Devil deserves a place in the S.A.H.O.F.
(Slick Animal Hall of Fame).
FUN FACT: The word slick has a long and diverse history, with numerous meanings. It may have originated in about 900 A.D. from the Norwegian word slikja, which was a verb meaning "to make something smooth," like making a rough piece of wood smooth. Starting in the 1620s, the word slick was used as a noun for a type of cosmetic. Then starting in 1849 it was used as a noun for a smooth surface of the water caused by spilled oil (an oil slick). Of course, here we are using it as an adjective. Starting in the 1590s, it was used as an adjective to describe someone who is "clever in deception." Finally, in 1833, it became a slang adjective meaning "wonderful, first-rate, excellent." Example: "The new Rampage Ridge is one slick thriller."
So, slick is another way to say awesome!
Photo Credits:
- Looney Tunes Tasmanian Devil - Wikimedia Commons
- Tasmanian devil 3D rendering on white background - DepositPhotos
- Tasmanian devil with its mouth open - DepositPhotos
- Two Tasmanian devils fighting - DepositPhotos
- Tasmanian devil, fat and lounging on the ground - DepositPhotos
- Tasmanian devil running, on white background - DepositPhotos
- Two baby Tasmanian devils handled by zoo employee - DepositPhotos
- Looney Tunes Tasmanian Devil - Wikimedia Commons
- Tasmanian devil 3D rendering on white background - DepositPhotos
- Tasmanian devil with its mouth open - DepositPhotos
- Two Tasmanian devils fighting - DepositPhotos
- Tasmanian devil, fat and lounging on the ground - DepositPhotos
- Tasmanian devil running, on white background - DepositPhotos
- Two baby Tasmanian devils handled by zoo employee - DepositPhotos
- Published on
A number of different animals have been given Christmas-themed names. For example, the candy cane shrimp. Although not an animal, there is the common house plant called the Christmas cactus. Christmas Island, an Australian territory in the Indian Ocean, has several animals with Christmas names, such as the Christmas imperial pigeon, the Christmas frigatebird, and my favorite, the Christmas boobook (sometimes called the Christmas hawk-owl).
The Christmas tree worm got its name because it has two "crowns" that stick up, looking very much like two tiny Christmas trees.
The Christmas tree worm got its name because it has two "crowns" that stick up, looking very much like two tiny Christmas trees.
What the heck is a Christmas Tree Worm?
Christmas tree worms (Spirobranchus giganteus) are marine worms that live on coral reefs in tropical areas around the world. They are polychaetes, which are segmented, burrowing worms. They attach themselves to the coral then grow a hard, calcium carbonate tube around their body for protection. The tube attaches to the coral. and the coral often grows around the tube. The worm never leaves that spot for the rest of its life.
Their flowery crowns come in a variety of colors, and the worm's body is only about 1.5 inches (3.8 cm) long. Although they are small, these worms are easily spotted when they have their crowns protruding from their coral burrow.
Check out the variety of colors below.
Amazing Facts about Christmas Tree Worms
First, let's talk about those beautiful Christmas tree structures. Maybe it's just me, but these structures look like something from a Dr. Seuss picture book. But what are they? The two crowns are highly specialized mouthparts called palps. They help with feeding and with getting oxygen from the water. Each of those spiral appendages is covered with feathery tentacles. The tentacles have numerous, tiny, movable, finger-like structures called cilia. When planktonic prey animals get caught in the tentacles, these cilia move the prey down into the worm's mouth.
Although the Christmas tree crowns are mainly used to capture prey, they also help the worm breathe. Therefore, the crowns are often called gills, but that's not really a correct name.
When threatened, Christmas tree worms can pull these crowns into their burrow really fast, within just a few milliseconds. Once their feathery plumes are pulled inside their tube burrow, they move another modified mouthpart called an operculum into place over the opening. The operculum is hard and serves as a protective hatch, making the worm safe in its burrow.
Check out this beautiful video showing numerous Christmas tree worms emerging from their tubes. If you watch closely you can see the operculum moving aside as they emerge.
Amazingly, Christmas tree worms can live for 40 years or more, particularly in pristine, unpolluted coral reefs.
Let's consider how these worms reproduce. Keep in mind that they stay in their tube their entire adult life, so they cannot crawl around to find mates. Because they're anchored to one spot, they've developed a specialized way to sexually reproduce. The females simply release unfertilized eggs into the water, and the males release sperm into the water. The water currents carry the eggs and sperm away. If the worms are lucky, some of the sperm will meet some of the eggs. This method of reproduction is called broadcast spawning.
Once an egg is fertilized, it becomes a larva very quickly, within 24 hours. The larvae drift around with all the other plankton for 9 to 12 days as they grow. When it's time to settle down, they attach to a coral rock and start growing their hard calcium carbonate tube, in which they will live out their life, eventually starting the life cycle all over again be releasing eggs or sperm into the water.
Although the worm itself is only 1.5 inches (3.8 cm) long, the tube it constructs is often 8 to 10 inches (20 to 25 cm) long. So, even though they stay inside their tube, I guess they have at least a little room to move around.
The most common predators of Christmas tree worms are shrimp, crabs, and sea urchins. Some fish also feed on them. Usually, though, these predators only bite off the tree-like crowns. When that happens, the worms can regrow their crowns in a few weeks. Christmas tree worms are often collected by humans because their bright colors make them desirable to aquarium enthusiasts. That's a relatively minor threat to the population, though. Not surprisingly, the biggest threat to these worms is the destruction of coral reefs due to pollution and climate change.
So, the Christmas Tree Worm deserves a place in the P.A.H.O.F.
(Posh Animal Hall of Fame).
FUN FACT: The origins of the word posh are somewhat uncertain. Some sources claim it is an acronym for port outward, starboard home, which was used to describe the shipboard accommodations of wealthy Victorians traveling aboard P & O Lines to India and back (to keep their cabins out of the sun). However, there isn't much evidence of this. More likely, the word came from the slang posh, which was used among thieves to describe a "dandy" with money (a good target for theft). Anyway, particularly in the UK, the word came to mean "smart, elegant, or fashionable." Considering the beautiful appearance of the Christmas tree worm's crowns, I think this word fits nicely.
So, posh is another way to say awesome!
Photo Credits:
- Christmas tree worm #1, orange crowns - DepositPhotos
- Christmas tree worm #2, yellow crowns - DepositPhotos
- Variety of Christmas tree worms on coral - Nhobgood Nick Hobgood, CC BY-SA 3.0, via Wikimedia Commons
- Christmas tree worm #3, blue crowns - Betty Wills, CC BY-SA 4.0, via Wikimedia Commons
- Christmas tree worm #4, red and white crowns - DepositPhotos
- Christmas tree worm #1, orange crowns - DepositPhotos
- Christmas tree worm #2, yellow crowns - DepositPhotos
- Variety of Christmas tree worms on coral - Nhobgood Nick Hobgood, CC BY-SA 3.0, via Wikimedia Commons
- Christmas tree worm #3, blue crowns - Betty Wills, CC BY-SA 4.0, via Wikimedia Commons
- Christmas tree worm #4, red and white crowns - DepositPhotos
- Published on
Turtles are strange reptiles with ribs that are modified and fused to their backbone to form a hard external shell across their back. Turtles can pull their head inside of their shell, and turtles as a group can be divided into two subgroups based on how they pull their head into their shell. Most turtles and tortoises pull their head straight back into the shell. However, there is a group of turtles, called the Pleurodira (the side-neck turtles), that pull their head into the shell sideways.
Because they pull their head in sideways, this allows these turtles to have longer necks. The photo below, of a Siebenrock's snake-neck turtle, shows how this works. By folding the neck to the side, there is room for a lot more neck!
Because they pull their head in sideways, this allows these turtles to have longer necks. The photo below, of a Siebenrock's snake-neck turtle, shows how this works. By folding the neck to the side, there is room for a lot more neck!
What the heck is a Snake-neck Turtle?
The snake-neck turtles (family Chelidae) are one of the groups of side-neck turtles, distinguished by their unusually long necks. These turtles are restricted to the southern hemisphere, found in Australia, New Guinea, Indonesia, and South America.
Snake-neck turtles live mostly in water, and they can stay submerged for long periods of time. They are predators, and the long neck helps them grab prey animals with their mouth.
Often, the neck on these turtles can be as long as the turtle's shell.
Amazing Facts about Snake-neck Turtles
First we need to talk about that long neck. When grabbing fish, snails, crustaceans, tadpoles, insects, and various other invertebrates, this neck makes it easier for the turtle to reach out and quickly snap up a meal. They use a feeding strategy called strike-and-gape. When their nose gets close to their prey, they open their mouth quickly and lower their hyoid bone. This creates a vacuum inside their throat, which sucks in water, along with the prey animal.
Check out this video on snake-neck turtles.
These turtles spend a lot of time resting on the bottom of streams, rivers, and swamps, and this long neck also serves as a snorkel. Without having to swim anywhere, the turtle can extend its neck to the surface every now and then when it needs to take a breath.
They also spend a lot of time basking in the sun to warm up their body and speed up digestion.
Let's take a closer look at the two main groups of turtles, the side-neck turtles (Pleurodira), and the "hidden-neck" turtles (Cryptodira). As I stated above, the most obvious difference between these two groups is the anatomy of the neck. Hidden-neck turtles retract their neck into their shell by bending their neck into an S-shape vertically (it looks like an S from the side). Side-neck turtles bend their neck in a S-shape horizontally (looks like an S from directly above or below). This may sound like an insignificant difference (like the stars on the Sneetches in the Dr. Seuss book). However, this difference is only one indicator of anatomical differences that have distinguished the two groups of turtles since the early Jurassic, 200 million years ago. That's how long the two groups have been separated evolutionarily. In other words, they are not closely related at all.
There are about 360 living species of turtles in the world today, but only 65 of those are side-neck turtles. The others are hidden-neck turtles. Only 16 of the side-neck turtle species are specifically considered snake-neck turtles, characterized by exceptionally long necks.
An example is the broad-shelled snake-neck turtle pictured below.
Snake-neck turtles are polygynandrous, which means both the females and the males often have multiple mating partners each mating season. Therefore, during the mating season, males are extremely active, moving as much as possible in their attempt to increase their chances of finding multiple mates.
The males have an elaborate courtship, in which they bob their head up and down. If they successfully impress a female, mating takes place in the water.
When females are ready to lay their eggs, they locate a suitable spot where they can dig a hole near the water, lay their eggs in the hole, then cover it back up. They lay 8 to 24 eggs, depending on the species and on environmental conditions. After an incubation period of up to 150 days, the young hatch, dig their way to the surface, and head for the water as quickly as possible. The young are vulnerable to predators, and many do not make it to adulthood. Those that do survive often live over thirty years in the wild, and even longer in captivity.
Below is a hatchling snake-neck turtle.
So, the Snake-neck Turtle deserves a place in the F.A.H.O.F.
(Frontline Animal Hall of Fame).
FUN FACT: The word frontline (or front-line) is an adjective that evolved from the two-word noun phrase front line, which, in a military sense, refers to the forefront of a battle or military conflict. Eventually, the words were combined to create an adjective with several meanings. The first meaning is related to the military sense of the phrase front line, meaning "located or designed to be used at a military front line" (example: A frontline ambulance helicopter). The second meaning is more broad, related to "the forefront in any action, activity, or field" (example: a frontline health worker in the pandemic). A third meaning is related to proficiency, something or someone that is cutting edge or at the forefront (example: if I'm having brain surgery, I want it done at a frontline hospital).
So, at least in this third sense, frontline is another way to say awesome! Well, kind of.
Photo Credits:
- Jumping kangaroo - DepositPhotos
- Sidewinder - "Sidewinder With its Head in the Air" by Michael R Perry is licensed under CC BY 2.0
- Dung beetle - DepositPhotos
- Komodo dragon - DepositPhotos
- Siebenrock's snake-neck turtle on white background - DepositPhotos
- Snake-neck turtle, on rock with black background - DepositPhotos
- Snake-neck turtle basking on a log - DepositPhotos
- Broad-shelled snake-neck turtle - Sam Fraser-Smith, CC BY 2.0, via Wikimedia Commons
- Hatchling snake-neck turtle - Tortoise Town
- Jumping kangaroo - DepositPhotos
- Sidewinder - "Sidewinder With its Head in the Air" by Michael R Perry is licensed under CC BY 2.0
- Dung beetle - DepositPhotos
- Komodo dragon - DepositPhotos
- Siebenrock's snake-neck turtle on white background - DepositPhotos
- Snake-neck turtle, on rock with black background - DepositPhotos
- Snake-neck turtle basking on a log - DepositPhotos
- Broad-shelled snake-neck turtle - Sam Fraser-Smith, CC BY 2.0, via Wikimedia Commons
- Hatchling snake-neck turtle - Tortoise Town
- Published on
Mimicry in nature has always fascinated me. Viceroy butterflies look like monarch butterflies (to avoid being eaten... monarchs are toxic). Geckos that look like leaves (camouflage). Milk snakes (harmless) that look like coral snakes (venomous). Alligator snapping turtles that have a tongue that looks like a wriggling worm (to attract prey fish).
The list of examples could go on forever, and all of them are fascinating.
The other day I saw a photo of an atlas moth, and I decided I had to write about it. Not only is this moth impressive for its size, it's one of my new favorite mimicry examples.
What do you see when you look at the wing tips of this atlas moth?
The list of examples could go on forever, and all of them are fascinating.
The other day I saw a photo of an atlas moth, and I decided I had to write about it. Not only is this moth impressive for its size, it's one of my new favorite mimicry examples.
What do you see when you look at the wing tips of this atlas moth?
It's almost unmistakable, isn't it? Each wing tip has a remarkable resemblance to the head of a snake. More specifically, to the head of a cobra, a venomous snake. The resemblance is so striking that the moth's Cantonese name is translated as snake's head moth.
Let's explore this awesome animal further.
What the heck is an Atlas Moth?
The atlas moth is one of the biggest insects in the world, with a wingspan of 10.6 inches (27 cm). And the caterpillars are ginormous too, at 4.7 inches (12 cm) in length.
These moths live in tropical forests in Asia, including China, India, Malaysia, and Indonesia. They may have been named after Atlas, the titan god of Greek mythology, but some people believe the name may have come from the way the moth's wings resemble a map.
Atlas moth caterpillars are voracious eaters and feed on leaves. Once they metamorphose into adults, however, they don't eat anything at all. In fact, the adults don't even have mouths!
Amazing Facts about the Atlas Moth
First I want to talk about those cobra images on the atlas moth's wings. To me, it seems quite obvious that this is a wonderful example of Batesian mimicry. This is a category of mimicry in which a harmless mimic resembles a plant or animal that is harmful. The atlas moth is harmless, but it resembles a harmful snake, thus frightening off potential predators.
This is also known as a diematic pattern (when a coloration pattern has the result of startling or frightening potential predators).
I should point out that some entomologists are not convinced that the atlas moth is mimicking a snake. What?! Are they crazy? Like I said, the mimicry seems obvious to me. Besides the clear resemblance to a cobra's head, I have a few additional arguments to prove it.
Argument #1: Batesian mimicry can only evolve if the harmless animal lives in the same geographic area as the harmful animal it mimics—at least at some point in the past. Here in Missouri, we have harmless milk snakes, but we do not have venomous coral snakes. However, when milk snakes evolved a color pattern that resembles a coral snake, the two types would have had to live in the same area, where predators instinctually avoided coral snakes. Coral snakes live in the US, so I am assuming milk snakes gradually expanded their range beyond the range of coral snakes after they evolved this color pattern. The same circumstances would have to be true for atlas moths and cobras. And, in fact, cobras do live in much of the same range as the moths.
Argument #2: The cobra pattern on atlas moth wings would only work on predators that rely primarily on vision to hunt. As it turns out, the moth's main predators, birds and lizards, are visual predators.
Argument #3: When an atlas moth is threatened, it spreads its wings and moves slowly (and sometimes shakes them), which tends to make the wing tips look even more like two live cobras.
Check out this brief video.
Are you convinced that the atlas moth's resemblance to cobra heads is mimicry? Or do you think it's a coincidence?
Astoundingly, some of the moths have variations in the cobra-head pattern. Look at the example below... this pattern not only makes it look like you are looking at the cobra head from above, it also has white touches that make it look like it is glossy and reflecting the light!
Let's take a look at atlas moth reproduction and life cycle. Females lay a cluster of about 150 round eggs, sticking them to the underside of a leaf. After about two weeks, tiny green caterpillars hatch out. They don't stay tiny for long. After eating their own eggshell, they get to work chomping on leaves, eventually growing to 4.5 inches (12 cm) long and 1 inch (2.5 cm) thick. It takes them about 100 days to grow that large.
When full grown, the caterpillar will spin a silk cocoon (pupa) attached to a twig. After four weeks in the cocoon, an adult moth emerges.
Adult atlas moths are weak, shaky fliers, so they rest during the day. At this point in their lives, they only have one purpose, to find a mate, which they do at night. The adults do not have a mouth and do not eat at all, which means they have to find a mate within a week or two, before they use up their fat reserves and die.
The female moth releases a potent chemical to attract males, and males are really good at detecting this chemical—they can detect only a few molecules from several miles away, then they follow the scent gradient until they find the female.
Check out this video about the atlas moth life cycle.
One last tidbit of information. Because atlas moth larvae are so big, and because they spin silk to create their cocoon, people in some countries use the vacated cocoons as purses. The cocoon, which is extremely strong, is just the right size for a small change purse. All you need to do is sew on a zipper!
So, the Atlas Moth deserves a place in the S.A.H.O.F.
(Superb Animal Hall of Fame).
FUN FACT: The word superb originated in the 1540s, and it meant "noble, magnificent." It came from the Latin superbus, which had more diverse meanings, including "grand, proud, splendid; or haughty, vain, insolent." By 1729, superb was (and still is) primarily used to mean "very fine." So, superb is "an adjective of praise for that which is exceptional." Surprisingly, the word superb did not originate by simply adding a b to the end of the word super. Super is a Latin preposition that means "above." Superb, on the other hand, is actually a shortened form of the Latin superbus.
So, superb is another way to say awesome!
Photo Credits:
- Atlas moth #1, hanging on a leaf - DepositPhotos
- Atlas moth flying at night - DepositPhotos
- Atlas moth, glossy-looking wingtip - DepositPhotos
- Atlas moth life cycle - DepositPhotos
- Atlas moth cocoons - Elegant Entomology
- Atlas moth #1, hanging on a leaf - DepositPhotos
- Atlas moth flying at night - DepositPhotos
- Atlas moth, glossy-looking wingtip - DepositPhotos
- Atlas moth life cycle - DepositPhotos
- Atlas moth cocoons - Elegant Entomology
- Published on
Years ago Trish and I were in Boston, and we had a chance to go on a whale-watching boat tour for a few hours. We did indeed see a few whales, but for some reason, I was most excited when a massive whale shark swam right beneath us as we peered over the side of the boat.
Whale sharks are the largest living fish. They are also the largest non-mammal vertebrate animal. How large are they? The biggest individual found was almost 19 meters (62 feet) long! If you're wondering about how much these fish weigh, well, very few of the really large ones have been weighed. However, one whale shark that was 39 feet (12 m) long weighed about 33,000 pounds (15,000 kg).
It's time we take a closer look at this gentle giant.
Whale sharks are the largest living fish. They are also the largest non-mammal vertebrate animal. How large are they? The biggest individual found was almost 19 meters (62 feet) long! If you're wondering about how much these fish weigh, well, very few of the really large ones have been weighed. However, one whale shark that was 39 feet (12 m) long weighed about 33,000 pounds (15,000 kg).
It's time we take a closer look at this gentle giant.
What the heck is a Whale Shark?
First of all, whale sharks (Rhincodon typus) are not whales, they are sharks. As you probably know, whales are mammals (as are humans). Sharks, on the other hand, are fish.
Just because whale sharks are sharks and are huge, that doesn't mean they are dangerous to people. Whale sharks are filter feeders--they filter plankton and small fish from the water. They do not attack and kill large prey. The whale shark is one of only three filter-feeding sharks—the other two are the basking shark and the megamouth shark.
Amazing Facts about Whale Sharks
Let's talk about this unusual filter-feeding habit. Whale sharks cruise along, mile after mile, swimming close to the surface, scooping up plankton in their huge mouths. Most sharks have a mouth that is located under their head, but a whale shark's mouth is situated right up front, to help scoop up all those yummy little plankton animals.
Look at the size of that mouth! When measured, one whale shark that was 40 feet (12 m) long, had a mouth that was 5.1 feet (1.5 m) across. That's one big mouth!
Although they are too small to see in the above photo, whale sharks have about 300 rows of teeny, tiny teeth. Below is a photo of a section of these teeth. Strangely, these teeth have nothing to do with feeding. In fact, they serve little (if any) purpose at all and are therefore considered to be vestigial teeth. The word vestigial refers to body structures that used to be larger and more functional but are in the process of going away over time due to evolution. An example of vestigial structures in humans are the muscles attached to our ears that used to allow our distant ancestors to move their ears, like many other animals can.
So, if these thousands of teeth aren't used, how does a whale shark actually eat? As stated above, they cruise around, scooping up plankton. Sometimes they also actively open and close the mouth, sucking in water. With either method, a large quantity of water rushes into the mouth and is then expelled through the gills. So, what keeps all those yummy plankton animals from getting expelled along with the water? Well, situated on their gills, whale sharks have twenty comb-like structures called filter pads. As the water is expelled through the gills, the plankton and tiny fish get caught in these filter pads. Whenever the filter pads get full, the whale shark swallows all that stuff, making room for more.
Remember that huge mouth? It's easily big enough for a human to swim into (or get sucked into). But even if that happened, the whale shark could not swallow a person because their throats are too narrow to swallow anything bigger than your fist. If you somehow accidentally got sucked into a whale shark's mouth, the shark would probably simply "cough" you back out. Whale sharks are often observed coughing out excess particles that they don't want to eat.
Check out this video about whale sharks.
Whale sharks are known to be very docile toward divers, often even allowing divers to grab hold and go for a ride. However, disturbing these magnificent fish in such a way is discouraged by biologists because it puts excess stress on the sharks. But observing them respectfully, even up close, is safe for both the diver and the fish. In fact, divers travel to various sites around the world just for the opportunity to see these creatures.
The whale shark's huge size requires that it find areas with abundant food. These fish are notorious for incredibly long migrations (thousands of miles), in which they arrive at their destination just at the right time for an annual explosion of certain types of plankton. Keep in mind that whale sharks are slow swimmers, moving at only about three miles (4.8 km) per hour. So, such migrations take a looong time!
Whale sharks are usually solitary, but sometimes they are seen swimming in groups of hundreds.
Whale sharks grow really old. Although studying their age is difficult, scientists estimate that whale sharks live between 60 and 100 years, and some experts suggest that they can live up to 150 years.
Because whale sharks are so difficult to study, they have never been observed giving birth. And mating has only been observed twice (from an airplane). However, we can deduce some information on their reproduction from other observations. Based on dissection of female whale sharks, we know these fish are ovoviviparous (have fun pronouncing that one). Ovoviviparous refers to a form of reproduction that is halfway between egg-laying (oviparous) and live birth (viviparous). Ovoviviparous animals have young that develop inside eggs, but the eggs stay inside the female's body until they hatch, and then the live young are born. Cool, huh?
Here's where things get a little confusing. Female whale sharks can have a lot of fertilized eggs in their body at once. One female that was captured in 1996 contained about 300 shark pups. However, the females do not give birth to all these pups at once. Instead, they keep the sperm from one mating inside their body, and they give birth to only a few pups at a time. Apparently they can continue regularly producing pups like this for a long period of time.
Below is the smallest whale shark pup ever found, which implies that this is about the size of newborn pups. This individual was found tied to a stake on a beach in the Philippines (notice the red string tied to its tail). No one knows why it was tied there, or where it came from, but it was measured and released safely into the wild. Because this is the smallest pup ever observed, we assume this is the size of newborn pups. We assume newborn pups are about 18 inches (46 cm) when they are born.
I suppose because I have so many grandkids, I cannot read the phrase "baby shark" without an incredibly annoying song running through my mind endlessly.
Baby shark, doo, doo, doo, doo, doo, doo...
If you don't know what I'm talking about, you're lucky.
So, the Whale Shark deserves a place in the S.A.H.O.F.
(Sublime Animal Hall of Fame).
FUN FACT: Depending on the source, the word sublime originated in the late 1400s or the 1500s. It came from the Latin sublimis, which means "uplifted, high, borne aloft, lofty, exalted, eminent, or distinguished." Today the word sublime has a variety of different meanings. In chemistry, it is a verb meaning "to convert (a solid substance) by heat into a vapor." It also has several uses as an adjective. For example, it can mean "elevated or lofty in thought or language" (example: Stan's novels are sublime literature). It can also mean "impressing the mind with a sense of grandeur" (example: The changing leaves in the fall provides sublime scenery). For our purposes today, though, I am relying on the definition "supreme or outstanding" (example: The whale shark is a sublime fish).
So, sublime is another way to say awesome!
Photo Credits:
- Whale shark #1, next to swimming diver - DepositPhotos
- Whale shark #2, closeup of mouth - DepositPhotos
- Section of whale shark teeth - D Ross Robertson, Public domain, via Wikimedia Commons
- Whale shark #3, swimming near surface against dark background - DepositPhotos
- Baby whale shark - Aquaworld
- Whale shark #1, next to swimming diver - DepositPhotos
- Whale shark #2, closeup of mouth - DepositPhotos
- Section of whale shark teeth - D Ross Robertson, Public domain, via Wikimedia Commons
- Whale shark #3, swimming near surface against dark background - DepositPhotos
- Baby whale shark - Aquaworld
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Due to the Halloween season, I'm going with a rather creepy-themed Awesome Animal today. I present to you the hammerhead worm—the coolest worm most people have never heard of.
There's even a species with Halloween colors (see image below).
Honestly, I didn't know anything about these until recently, and I immediately decided I needed to feature them as an Awesome Animal.
There's even a species with Halloween colors (see image below).
Honestly, I didn't know anything about these until recently, and I immediately decided I needed to feature them as an Awesome Animal.
What the heck is a Hammerhead Worm?
Actually, these are not worms like earthworms. Earthworms are segmented worms. Hammerhead worms, on the other hand, are planarians, a type of flatworm. Sometimes they are called broadhead planarians. Another common name--landchovy.
Most species of planarians live in freshwater or saltwater, but some types, like the hammerhead worms, live on land.
Perhaps the most distinguishing characteristic is the broad, shovel-shaped head.
Land planarians have what's called a creeping sole that allows them to move around. This creeping sole is on their ventral (belly) side, and it has a thick layer of cilia (moving, hairlike projections) that beat back and forth on a strip of mucus the worm lays down as it progresses forward.
What, you didn't expect these things to produce copious amounts of slime?
To top it all off, these worms are fierce predators, as well as cannibalistic. Oh, and they are invading North America, Europe, and many other parts of the world.
And... if you cut them into pieces, you end up with more hammerhead worms.
Oh... and some of them grow to 18 inches (half a meter) long.
Amazing Facts about Hammerhead Worms
Wait... what was that statement about cutting them up and ending up with more? Planarians are famously good at regeneration. You can literally slice one in half, either lengthwise or across its body, and in two to three weeks each half will grow a new planarian. If you cut one into five pieces, you might get five worms (this depends on several things, including how big the pieces are).
In fact, this splitting is the main way most hammerhead worms reproduce. Yeah, they are capable of sexual reproduction—you know, with a male and female—BUT, hammerhead worms are hermaphroditic, which means each individual has both male and female sexual organs. Therefore, any individual can mate with any other individual. Strangely, though, they usually don't. Instead, they seem to prefer to make new hammerhead worms by splitting their body apart. This is known as fragmentation and is a handy form of asexual reproduction.
How do they split themselves apart? Well, they stick the tail end part of their body to the ground (remember all that slimy mucus?), then they keep moving forward (remember that creeping sole?) until their body tears right in half. The broken piece they leave behind becomes a younger worm, growing longer and developing a broad hammer head in a few weeks. A hammerhead worm can break apart like this one or two times per month.
Lifespan of a hammerhead worm: Potentially immortal.
I know, that's weird, but get this—hammerhead worms have no respiratory system, no circulatory system, no skeleton, and their mouth is also their anus.
Let's consider those one at a time.
No respiratory system: There's no need. Oxygen enters and carbon dioxide leaves the worm's body by diffusing directly through the body wall.
No circulatory system: There's no need, for the exact same reason as above.
Mouth is also the anus: Now we're talking about the digestive system. It's a simple system. The mouth is located in the center of the ventral (belly) side. Food is taken in there and travels through a pharynx to a gastrovascular cavity, where it is digested, and because this cavity branches out to various parts of the body, that's how the nutrients get everywhere they need to be. Whatever is left over gets spit right back out the mouth. Nice.
Let's talk about how these creatures eat. As I stated above, they are predators. Unfortunately, many of them kill and eat earthworms. In case you didn't know, when it comes to almost every aspect of an ecosystem, earthworms are the good guys. gardeners know you can't have healthy soil without earthworms. That's why invading hammerhead worms could be bad news.
Hammerhead worms are vicious earthworm hunters. They glide around on the ground with their spade-like head held up, moving it back and forth like a radar. The broad head has special chemoreceptors that detect earthworm mucus. When they catch up to one, they subdue it with a coat of their own mucus (wow, there's a lot of mucus in this newsletter), then they tear it up into pieces. The hammerhead worm then extends its pharynx out of its mouth and secretes earthworm-dissolving enzymes all over the chopped-up prey. After the earthworm becomes soup, the predator sucks it all up, digests most of it, and spits the remains back out the mouth.
These creatures are an earthworm's worst nightmare (although it seems unlikely earthworms have nightmares—they have very primitive brains).
Hammerhead worms are also enthusiastically cannibalistic. They like eating each other.
Hammerhead worms are native to Asia and Australasia. However, as I stated above, they are becoming invasive worldwide, probably due to being transported on horticultural plants.
Possible solution: Maybe predators (or even people) could eat them. Nope. Many earthworms are edible, but these creatures are toxic. They contain a potent neurotoxin called tetrodotoxin, which is also found in some newts, pufferfish, and the blue-ringed octopus. Other than each other, they have few predators.
If you pick them up, their surface mucus can cause skin irritation. And, of course, don't even try chopping them up.
I know... I'm kind of making these creatures out to be overly creepy for this Halloween edition. But keep in mind that in their native habitats, hammerhead worms are important to the ecosystem and should not be killed. They are, after all, awesome animals.
When it comes to invasive hammerhead worms, they could become a problem. If you see an invasive hammerhead worm, you can pick it up with gloves or tweezers and put it in alcohol, or salt, or a sealed container. It might also help to report it to local authorities, who might be tracking sightings in your area.
So, the Hammerhead Worm deserves a place in the E.A.H.O.F.
(Elegant Animal Hall of Fame).
FUN FACT: The word elegant (meaning "tastefully ornate") originated in the late 1400s, and it came from the Old French élégant. Another definition, one that I think applies to the appearance of some of the hammerhead worms, is "graceful in form or movement." Yet another definition is "excellent; fine; superior," as in "This is an elegant wine." I suppose you could consider hammerhead worms to be nothing more than slimy, slug-like things, but you have to admit they have a rather delicate and graceful appearance, right?
So, elegant is another way to say awesome!
Photo Credits:
- Hammerhead worm from Borneo, orange, black, and white - DepositPhotos
- Hammerhead worm, black and white - DepositPhotos
- Hammerhead worm, black and orange #2 - Bernard DUPONT, Flickr, Creative Commons License (CC BY-SA 2.0)
- Hammerhead worm, long, thin, black - "Hammerhead worm - Carita - West Java_IMG_2708" by fveronesi1 is licensed under CC BY-SA 2.0
- Hammerhead worm head, brown and white - DepositPhotos
- Hammerhead worm from Borneo, orange, black, and white - DepositPhotos
- Hammerhead worm, black and white - DepositPhotos
- Hammerhead worm, black and orange #2 - Bernard DUPONT, Flickr, Creative Commons License (CC BY-SA 2.0)
- Hammerhead worm, long, thin, black - "Hammerhead worm - Carita - West Java_IMG_2708" by fveronesi1 is licensed under CC BY-SA 2.0
- Hammerhead worm head, brown and white - DepositPhotos