Showing posts with label Sharks. Show all posts
Showing posts with label Sharks. Show all posts

Sunday, August 20, 2017

Basking Case

What follows is a cautionary tale. A story about acting out in frustration; of letting passions get the better of our collective judgement. A yarn of life, economy, adventure, and...tourists.

Folks living in major coastal towns around the world know the story. As the days lengthen the sun's rays warm the air and the scent of dry grass drifts in the breeze. Locals finally get on the water as the rains and long dark of winter are left behind. But that's when they come: massive, constantly in the way, slowly moving in impassable groups, gorging themselves on an all you can eat buffet. 

Courtesy: Devin Braun via Flickr 

I am, of course, talking about basking sharks (Cetorhinus maximus). 

-"Hey, Kool-Aid"
Courtesy: jidanchaomian via Flickr

Basking sharks and cruise ship travelers may not seem to have much in common at first, but diving in (Ha! Ocean puns) to their life history reveals some surprising commonalities.

Baskers are the second largest fish species in the world, growing to average lengths of 15-20 feet, but they can get as long as 30. Because they're so big; a single flick of a basking shark's tail moves a lot of water and thus their streamlined bodies are propelled smoothly along with very little effort. This energy efficient movement allows basking sharks to travel great distances through temperate seas. One shark was tagged in late June of 2007 between Ireland and the UK, and had traveled all the way across the Atlantic to south of Greenland by early August. Like other related sharks that make long treks, basking sharks are cruising in search of food. But these massive fish aren't hunting for seals or other large prey; they're cruising along, mouths agape, straining plankton from the water. The filters on their gills are so good at collecting particles, yet remaining unclogged, that they're even inspiring engineers designing industrial and commercial water and air filters.

Basking sharks migrate seasonally across the ocean, and daily up and down in the water column following their favorite food: calanid copepods (pronounced: ko-peh-pods).

Copepods are rich in fats despite their constant failed attempts
at stealing the Krabby Patty secret formula.
Courtesy: DFO via WOrld Register of Marine Species

During the winter these planktonic crustaceans tend to hang out deeper in the water and farther out to sea, so baskers do the same. During the summer, copepod populations explode near shore as lengthening days cause massive blooms of phytoplankton for the copepods to graze on. Basking sharks head shoreward just ahead of this explosion of life to catch the bloom right as it begins and optimize their own feeding. Like most other zooplankton, copepods also participate in the planet's largest migration. During the day they descend to avoid active predators at the surface, and at night they come up to the phytoplankton rich layer that formed while the sun was high. Typically basking sharks do the same daily vertical migration, but occasionally tons of copepod predators called arrow worms will show up at the surface at night. This unexpected pulse of predators drives the majority of the copepods, and consequently the basking sharks, deep when we'd expect them to be shallow.  So not only do basking sharks show up in the inland waters of the far north and south like cruise ships and their passengers, but they also predictably attend to the abundance of the buffet at the times of day it's most well stocked.

Basking sharks' feeding and travel habits aren't the only ways they jive with tourists. As their name implies, basking sharks often hang out in the sun not doing much. Since the sharks already have a pretty bitchin', deep-brown tan they must not be longing to soak up rays. Nope, it's that layer of copepods again. Because there's so much food at the surface, basking sharks don't have to move fast or far during the spring and summer blooms. The sharks are found in aggregations hundreds strong just lolling at the surface with their mouths open like they've fallen asleep sunbathing.

Okay I know there's a shark in this picture somewhere but...
Courtesy: candiche and Noodles and Beef via Flickr

These high concentrations of slow moving basking sharks occur in only a few places in the world. It's likely that these big shivers (the name for a group of sharks) show up in places like southern Chile, but we only know for sure that they happen in the Irish Sea, outside the Bay of Fundy, and historically in the Northwest Straits of the Salish Sea.

Just in case you're not from one of those places or didn't pay attention in geography

Now, you might have noticed that I said "historically" in the Salish Sea. In the past, basking sharks came to the region in droves every year to bathe in the Pacific Northwest sun and chow on the rich abundance of copepods in those waters. But like any pulse of summer tourists visiting a port; they were slow, in the way, and causing problems for traffic.

I'm lookin' at you; Pike Place!
Courtesy: Michael Munch via Flickr

As happens with anyone who deals with influxes of tourists too often; salmon fisher folk in British Columbia largely hated this yearly migration. The sharks were so numerous and slow that they frequently became entangled in salmon gill-nets. Basking sharks also have the same skin-teeth that other sharks possess, so when they thrashed to free themselves they often destroyed more of the net than just where they were caught.

Since much of the BC economy relied on salmon fishing at the time, basking sharks were listed as "Destructive Pests" by Canada's fisheries department in 1949. Six years later the department began an eradication program that, coupled with a commercial fishery for their skin and oil, did exactly as intended. Basking sharks were functionally extinct in the Salish Sea by the late 60s.

The Comox Post with its shark-slicing bow blade
was the pride of the program.
Courtesy: Popular Mechanics via Google Books

However attitudes towards basking sharks (and to a lesser degree cruise tourists) are changing. People better understand the role baskers play in the marine ecosystem as the massive end of a petite food chain. Ironically basking sharks now bring tourists to the Irish Sea and surrounding waters every year to watch their incredible shivers. Having basking sharks and cruise tourists around can greatly enhance the economies of northern port towns in the summer. And Lord knows we can use that extra cash for good beer and faux daylight to get us through the dreary mists of maritime winters.

There's also hope for the Salish Sea's population of basking sharks. They've been granted the protections that being listed as "endangered" under Canada's Species At Risk Act affords them since 2010. Baskers are also occasionally showing up in unexpected parts of the Salish Sea. In 2014 a basking shark gave a family out fishing a unique encounter when it basked about their boat for 15 minutes off of Edmonds, just 16 miles north of Seattle. No word on if the shark was planning to visit Pike Place.

" Excuse me, can you tell me how to get to the gum wall?"
Courtesy: Grace Coale via Q13 Fox


References:

Gore et al., "Transatlantic Migration and Deep Mid-ocean Diving by Basking Shark", Biology Letters: Marine Biology, Vol. 4 pg. 395-398, 2008.

Lorch, Matt, "Close Encounter with Rare 25-foot Basking Shark in Puget Sound: "I didn't really feel scared, just excited", Q13 Fox News, Aug. 13th 2014

Pynn, Larry, "Rare B.C. Photograph of Endangered Basking Shark Shines Light on Change in Federal Attitudes", Vancouver Sun, Nov. 11th, 2013.
Accessed via: 

Sanderson et al., "Fish Mouths as Engineering Structures for Cross-step Vortical Filtration", Nature Communications, Vol. 7, Article #11092, 2016.

Siders et al., "Seasonal Variation in the Spatial Distribution of Basking Sharks (Cetorhinus maximus) in the Lower Bay of Fundy, Canada", PLoS ONE, Vol 8 Issue 12, 2013.

Sims et al., "Habitat-specific Normal and Reverse Diel Vertical Migrationin the Plankton-feeding Basking Shark", Journal of Animal Ecology, Vol. 74 pg. 755-761, 2005.



Tuesday, September 20, 2016

Sleeping Beauties

Imagine yourself cruising down the road at night. There's no moon so, so you're driving slowly, peering into the blackness to find your way. As your eyes adjust you see a gigantic, ancient woman sidle into the glare of your headlamps. She's slow and battered, and moves almost as if she's in a trance. You slow down even more to avoid hitting her, but you can't bring yourself to get out of the vehicle. As she meanders to the edge of your lights' beam she turns slightly, and you catch a glance at her eyes. A tubular creature dangles from two filaments embedded in her cornea. Though she's surely been blinded by the parasite you sense that she can feel you there. As she's enfolded back into the darkness you wonder was she an ancient spirit? An aesthetic hiding away from society? A witch? or even a zombie?

She was a shark.

Courtesy: NOAA Photo Library via Flickr

In our imaginary scenario you're a researcher with the US' National Oceanic and Atmospheric Administration. You're cruising along in a submersible when a species of sleeper shark swims in front of your vehicle. 

There are only around six species of sleeper sharks that we know of, and two of them fit the bill for this story; the Pacific sleeper shark (Somniosus pacificus) and the Greenland shark (Somniosus microcephalus). Although their cousin the southern sleeper (Somniosus antarcticus), which lives around Antarctica and is so badass it eats juvenile colossal squid, comes close it doesn't fit our story because it isn't affected by the dangling parasite; which we'll talk about later.

Pacific sleeper and Greenland sharks are truly incredible. They're massive. Adults of both species average around 4 meters; that's about 14ft, but they can grow even larger. That size is on par with all the largest predatory sharks we're more familiar with. 

I'm gonna go ahead and guess this kid is not
the one who reeled in this shark
 Courtesy: Wikimedia Commons

Unlike great whites or tiger sharks, which are fast, active predators, sleeper sharks are sluggish. It's believed that they hunt by sneaking up on live prey. They move so slowly, about the same speed as a crawling baby, and are so hydrodynamic that they barely disturb the water. So when prey are distracted or at rest they don't notice these incredible predators. Not only can sleeper sharks hunt, but they're also effective scavengers. Researchers have found meat in sleeper shark stomachs that's crawling with the organisms that usually consume dead flesh on the ocean bottom. We also know from stomach contents that sleeper sharks will consume seals, dead whales, fish, and even polar bears! It's not clear if the polar bear was an individual that drowned while crossing sea ice or if it was taken live, but either way....wow. Even crazier, a couple of guys in Newfoundland, Canada found a stranded Greenland shark that had 2 feet of moose tissue stuffed down its gullet! 

Little Known Fact: Hastily gobbled moose is 
the national dish of Canada
Courtesy: Christian Heilmann via Flickr

Now this slow lifestyle has benefits besides giving sleeper sharks the ability to hunt or scavenge literally everything. Sleepers are found in cold waters, either at the poles or deep in the ocean. In fact, Greenland sharks are the only shark species known to live under the arctic ice cap. In frigid waters it's easier to survive with a slow metabolism because with a fast one you're constantly compensating for lost heat. Plus a slow metabolism means you can live for a really... really... really... really long time.

A study published in Science used radiocarbon dating of the core of Greenland sharks' eyes to predict the age of a variety of individuals. This technique suggests that really old Greenland sharks may be 272-512 years old! If that's the case they're the longest lived vertebrate on earth, and there are sharks alive today older than the United States. 

"Suck it Methuselah!"
Courtesy Public Domain via Encyclopedia of Life

The downside to growing to that great age is that sleeper sharks probably don't reach sexual maturity very quickly. It's been estimated from the development of ovaries and testes in dead sleepers that they can't reproduce until they're 10 or more feet long. Greenland sharks are thought to grow so slowly that they might need 150 years before they can get to baby making. If that's the case then these fish may be very sensitive to overfishing. Sleepers are commonly caught as bycatch in fisheries for other species, so it's very important to use programs like Seafood Watch to ensure your fish comes from sustainable sources.

In Iceland there is a small targeted fishery for Greenland sharks because they're the main ingredient in one of Iceland's traditional dishes. Hakarl is Greenland shark that's been fermented for several weeks. It has to be fermented because sleeper shark meat contains a lot of Trimethylamine-oxide; which is toxic. It's so poisonous that sled dogs, ravens, and a sea birds called fulmars have been described as getting "shark drunk" after eating too much raw shark. The symptoms include stumbling, respiratory depression, erratic behavior, and vomiting.

Pictured: Shark Drunk
Couretsy: Schroder + Schombs PR via Flickr

The Trimmethylamine-oxide probably helps protect sleeper sharks from the challenges of living in the deep and polar ocean. The chemical counteracts the protein dismantling effects of high pressure at depth, and works like anti-freeze to prevent the sharks body from locking up.

Okay so all of these adaptations make sleeper sharks a pretty good match for the woman in the creepy story from the introduction, but what was that bit about the parasites on her eyes? Well I'm both glad you asked and horrified that you reminded me.

Pacific sleeper and Greenland sharks frequently host the parasitic copepod (pronounced: co-puh-pod) Ommatokoita elongata. One study found that up 85% of Greenland sharks have these creepy-crawlies living on and in their eyeballs. The copepod, which is a crustacean related to shrimps and crabs, inserts a stud called a bulla into the shark's eye and just kind of dangles from it. As it swings there for its entire life the copepod feeds on the juices from the shark's eyeball. It also scratches the ever living heck out of the cornea as it moves around. It's no surprise that these copepods commonly blind their hosts. However, sleepers don't seem to be affected by blindness at all. It's believed that sleepers rely on their other senses so much that they don't actually need their eyes.
      
I propose the common name of the "Why-God-why-does-this-exist!? copepod"
Courtesy: Johnathan Wojcick via bogleech.com

While sleeper sharks are certainly bizarre, they're also a magnificent example of adaptation to challenging conditions. They're probably the longest-lived of all vertebrates, they know how to take their time and move deliberately, they enjoy a place of respect in the food web, and they survive adverse conditions every day. Not only that, but if you're a little loose with your Latin translation, Somniosus microcephalus means "sleepy, little face". That's pretty adorable for an animal most might not call a sleeping beauty.

References:

Borucinska, J.D., Benz, G.W., & Whiteley H.E., "Ocular Lesions Associated with Attachment of the Parasitic Copepod Ommatokoita elongata (Grant) to Corneas of Greenland Sharks, Somniosus microcephalus (Bloch & Schneider), Journal of Fish Diseases, 1998, 21, pg 415-422

Courtney, D.L., & Foy, R, "Pacific Sleeper Shark Somniosus pacificus in the Eastern North Pacific Ocean Inferred from Nitrogen and Carbon Stable-isotope Ratios and Diet", Journal of Fish Biology, 2012, 80, pg 1508-1545

Hulbert, L.B., Sigler M.F., & Huntsford C.R., "Depth and Movement Behavior of the Pacific Sleeper Shark in the North-east Pacfic", Journal of Fish Biology, 2002, 69, pg 406-425

MacNeil, et Al., "Biology of the Greenland Shark Somniosus microcephalus", Journal of Fish Biology, 2012, 80, 991-1018

Nielsen, et al. "Eye Lens Radiocarbon Reveals Centuries of Longevity in the Greenland Shark Somniosus microcephalus" Science, 2016, 353, pg 702-704

No Author, "Moose-eating Shark Rescued in Newfoundland Harbour"(sic), CBC News, Nov 21 2013, Accessed via: http://www.cbc.ca/news/canada/newfoundland-labrador/moose-eating-shark-rescued-in-newfoundland-harbour-1.2434102

Sunday, January 11, 2015

Mommy, Where do Baby Sharks Come from?

Let's start this week off with a little quiz, shall we? What's in the picture below?

"Sand." Alright smart-ass, what else? "Shells."
Courtesy: Patrick Feller via Flickr

If you said mermaid's purse, or shark/skate egg then you're right. All of those animals are part of the chondrichthyes (pronounced: con-drick-thees) class of fish.These fish have skeletons made of cartilage rather than bone. We talked a lot about chondrichthyes diversity in the very first blog post if you'd like to get a refresher. The name mermaid's purse applies to the egg cases of all cartilaginous fish because they're leathery, and most are rounded squares like a purse. The leathery-ness is important too because it's tough but flexible. This means the case is tough enough to protect the embryo, but is flexible enough not to shatter. Instead of nesting; skates and egg-laying sharks just kind of drop their kids off somewhere sheltered on the bottom and get on with their lives. That might sound mean, but mom's body produces a yolk that's so rich and full of nutrients that the babies come out of the case fully formed and ready to survive. (Editor's Note: Depth and Taxa does not condone abandoning one's children with 18 year's worth of food and calling it good.) Laying eggs is a method of reproduction called oviparity, and it's only one of several different ways of developing your babies, all of which cartilaginous fish are capable of.

Oviparity is pretty familiar stuff, but let's go over it anyway because it's the root of the other types of reproduction in sharks and their relatives. Unlike many of their bony relatives, chondrichthyans all fertilize their eggs internally. You can actually distinguish males and females of these fish because males have what are called claspers on their pelvic fins (the fins closest to where hips would be.) Claspers are used to hold onto females during mating and deliver sperm into her vent. (the multi-purpose opening of many marine animals.)

The claspers are the little finger-like nubs on the inside of the fins.

Once the eggs are fertilized they develop the familiar embryo and yolk combination you might have seen shining a flashlight through a chicken egg. Then, like we talked about before, mom drops the eggs off and they develop until they hatch. While inside the mermaid's purse the embryo has only the yolk for nutrients, so when it runs out the baby starts to get hungry and that helps prompt hatching.

Plus the WiFi in the ocean is terrible, so there's no Netflix to
 keep you perfectly still for weeks at a time.
Courtesy: Marian Gonzales via Flickr

 Of the four types of chondrichthyes; sharks are less likely to lay eggs than some of their relatives. All skates lay eggs, as do all of the chimeras. None of the rays lay eggs, and only about a third of what we commonly call sharks don't give live birth.

The next type of fetal development is a weird combination of eggs and live birth. For a long time this was referred to as ovoviviparity (pronounced: oh-vo-viv-i-pair-itty), but this term is falling out of favor because it implies the fetuses aren't getting any nutrients from mom. Recent research suggests that many, but not all, sharks and rays with this means of development contribute at least some nutrients to their babies. This can be through secretions from the uterus that the unattached babies absorb through their skin or consume, or in the form of unfertilized eggs which the developing young eat after their yolks run out. In at least one species the first fetus to use up its yolk will actually eat its brothers and sisters before being born!

"Don't mess with me man, I have seen some s**t "
Courtesy: Justin Morgan via Flickr

 What's consistent across these means of development is that the embryos are never physically attached to their mom. Most of the sharks that give live birth exhibit these strategies for developing their young. All of that is pretty weird and cool, but buckle up, 'cause we're about to take everything we just talked about and add another layer of bizarre.

The last means of fetal development is called placental viviparity. You read that right, placenta like in mammals. Placental development in sharks is a perfect example of one of my favorite concepts in biology: convergent evolution. Convergent evolution is when two very distantly related organisms develop similar traits or strategies completely independent of one another's genes. So even though some sharks have a similar fetal development strategy to mammals it doesn't mean we're related or that we got that trait from sharks.

Amazingly, in placental sharks, the embryos still start out with a yolk. Like other fish the baby shark starts off using up the yolk's nutrients, but late in this process mom's body supplies some of those nutritious secretions we talked about earlier. While her body does this, the lining of the yolk sac actually stretches out and fills with blood vessels. It reaches from the belly of the developing shark to the mom's uterine lining where it attaches and acts as the link between the two for gas exchange (getting oxygen in and CO2 out) and metabolism (getting nutrients in and waste out). This incredible strategy has developed in only a few species of sharks.

"Hey mammals, who's 'highly evolved' now huh!?"
Courtesy: Serena Epstein via Flickr

All of these strategies are spectacular means for getting chondrichthyan babies out into the world ready to survive from the second they emerge. By fully developing inside an egg or their mother; sharks, skates, rays, and chimeras have set themselves up as some of the most successful animals on the planet.

References:

Hamlett, William C., "Evolution and Morphogensis of the Placenta in Sharks", Journal of Experimental Zoology, 1989, vol. 252(S2), pp. 35-52

Musick, J.A. and J.K. Ellis, "Reproductive Evolution of Chondrichtyes", pp. 45-79, In: "Reproductive Biology and Phylogeny of Chondricthyes: Sharks, Batoids and Chimeras", William C. Hamlett, ed., Science Publishers Inc., Plymouth U, 2005

Wourms et al., "The Maternal-Embryonic Relationship in Viviparous Fishes", pp. 5-10, In: "Fish Physiology: Volume XI: The Physiology of Developing Fish Part B: Viviparity and Posthatching Juveniles", W.S. Hoar and D.J. Randall, Academic Press Inc., 1988 





Tuesday, August 12, 2014

More Than a Mouth

It's officially Shark Week! Discovery Channel's toothy extravaganza began its 26th year on Sunday. Not everyone is aware that, while Discovery has an educational tint, it is an entertainment channel at its heart. So naturally, in the era of upworthy and facebook, Shark Week has evolved into what I like to call "click bait TV." You can take a look at the week's lineup here and see what I mean. Happily at the bottom of that page, if you read the comments (dangerous waters I know) you'll see people crying out for more educational programming. So to meet the demand, we're going to explore the amazing diversity of sharks!
"Heeeyy yoouuu guuuys" says the whale shark (Rhincodon typus)
Courtesy Adam Brill via Flickr 

Backing up for a second, let's talk about what a shark actually is. From a taxonomic standpoint you could say that there is no such thing as a shark, or alternatively, that skates and rays are highly modified sharks. They're all what we call elasmobranchs, or fish that have skeletons made of cartilage and 5-7 gills. There's a pretty good write up on taxonomy and the nine orders of sharks on The Shark Trust's website if you'd like to explore a little more, or haven't had much experience with classification. Amazingly those nine orders divide down into, depending on who(PDF) you ask, around 450 different species of sharks. With that many animals swimming around you can imagine they don't all look or act the same. 

Familiar Faces

Look at that adorable dorky grin
Courtesy Hermanus Backpackers via Flickr

The sharks we're most familiar with fall into one of three families (a smaller relationship within an order). These are the mackerel sharks (lamnids), requiem sharks (carcharhinids), and hammerhead sharks (sphyrnids). These three families do represent quite a lot of world's sharks, but they're famous for another reason. They tend to be the bitey-est. We can trade "you're more likely to be hurt by          " back and forth forever and it doesn't make much of a difference to people's fears, because fear isn't about logic and statistics. If it was then we would be terrified by another obligate carnivore that harms people daily and even traps them in their homes: domestic cats.(If you don't click any other link, the last one is very worth it. They call 911 on their cat)



Pictured: A merciless killing machine perfectly adapted to the eradication of local fauna, and a shark. 
Courtesy Joe Dunckly via Flickr, and my cat Einstein

The long and short of it is: yes these types of sharks can be dangerous, but they are also beautiful, fascinating, and directly benefit humans. The three families mentioned above have representatives in the the incredibly unforgiving environment of the open ocean. Mackerel sharks in particular spend much of their time over the continental shelves cruising for food. Cruising really is the best word to describe how these animals usually get around. One Great White Shark (Carcharodon carcharias) was tracked travelling in a shockingly straight line from near San Jose, California to the big island of Hawaii in about a month; probably to find a new crop of pinnipeds to eat. He/she averaged about about 4 kilometers an hour that whole trip. That's like lightly jogging from Seattle to Pittsburgh because the grocery store ran out of the brand of cheese you like.

The requiem sharks are notable even among our more well known animals by being some of the most social sharks. Reef shark "feeding frenzies" have been a staple of documentaries for years, so I imagine you won't be surprised when I tell you some sharks hang out in big groups; which by the way is called a shiver. However, Bimini Sharklab in the Bahamas has been doing research that shows juvenile lemon sharks prefer to hang out with others about their own same size and age. They also preferred being with their own kind, choosing other lemon sharks over nurse sharks. Implications of shark racism aside; it's pretty cool that these animals are so social that they'll choose to "roll deep" even when there isn't a survival incentive to do so.

Lastly among our more familiar sharks we have the hammerheads. They're the perfect animal to bridge from the old staples to the weird and wonderful we'll be talking about next. The first question on people's minds whenever they see a hammerhead is of course "What's up with his face?" The weird flattened head is called a cephalofoil (dibs on the band name) and it's a pretty spectacular piece of evolution. Widely placed eyes mean the shark has 360 degree vision in the vertical plane. This means that hammerheads can see everything above and below at all times!

  "I AM looking right at the camera!"
Courtesy Jeroen Elfferich via Flickr

The nostrils of a hammerhead are also placed far to the sides of the head, not unlike our ears, and give these guys stereo smell. More face space also means that the sharks' electrosensors can sweep the bottom, like a metal detector, for prey hiding in the sand.

Weird Uncles

Since the length of this post is starting to get away from me we'll look at just three of the really unusual sharks out there. Let's start with a coastal animal so we're still in our comfort zone and move on to the deep sea from there.


Yes you did just watch a video of a shark walking. That is the fairly tiny epaulet shark (Hemiscyllium occelatum) looking more like a salamander than shark. These little guys (never more than about 3ft long) live in shallow water and even tidepools near Australia and Indonesia. The shark has adapted the walking ability as a means of moving through water too shallow to swim in. Also, like other intertidal organisms, the epaulette shark has to cope with a lack of oxygen while in isolated pools (tiny bubbles in the water escape when the sun warms it.) So to deal with this, the epaulette shark can actually turn off some of its higher brain function to use less oxygen. That's right there are "mindless" killer sharks, they're just under 3ft  long and like to eat worms...intimidating.

Next up we have...

ARKive species - Angular rough shark (Oxynotus centrina)

 Hahahahahaha are you kidding me!? That can't be real. it looks like someone tried to glue a pompadour wig onto a baby shark. Well that my friends is the angular rough shark (Oxynotus centrina). They live fairly deep down and are not very well known because of it. We do know that they are in the dogfish (squaliformes) order and we're pretty sure they hover over the bottom slurping invertebrates out of the muck. That big sail on their back is their first dorsal fin and probably helps them keep from tipping over as they suction their prey. These animals and their cousins also frequently turn up in bottom trawls (big nets that drag along the bottom) so there is concern that we may be heavily impacting these species without knowing anything about their role in their environment.

Our final shark in this survey of diversity takes us both deep under water and back in time.

ARKive image - Frilled shark swimming

The frilled shark (Chlamydoselachus anguineas), sometimes called the eel shark, is a species that probably evolved several million years ago and has changed very little since. In fact, it and its relatives in the cowshark (Hexanchiformes) order, likely represent the transition from truly ancient sharks to the modern representatives. All the cowsharks have 6-7 gill slits with the frilled shark having frilly tufts of gill tissue that show outside the gills; hence the name. Inside the frilled sharks mouth are hundreds of multi-pronged, needle-like teeth which are helpful in holding onto the generally slippery and squishy prey that's found in the deep. Amazingly one study on developing embryos taken from dead sharks suggests they might gestate their young for 3.5 years, twice as long as an elephants!

Well that's it for my first post. I hope you enjoyed learning more about the varied types of sharks in the world. I'll leave you with this cool video of a frilled shark swimming. This one comes courtesy of one of the few shows still worth watching on shark week: Alien Sharks, which covers deep water shark species.


References: