Showing posts with label squid. Show all posts
Showing posts with label squid. Show all posts

Monday, 30 April 2018

This Contorted Mystery Squid May Be the 'Most Bizarre' Ever Seen



By Mindy Weisberger, Senior Writer | April 20, 2018 11:57am ET


"There's a challenge for you — what is THAT?"

Unusual deep-sea creatures seen for the first time can sometimes stump even a seasoned expert in marine biology. And in a recent video of an ocean dive in the Gulf of Mexico, an expert's off-camera exclamation revealed his surprised response to the appearance of a squid that had contorted itself into such a peculiar shape that it barely resembled a squid at all.

On April 17, the inverted, folded-up squid made its on-screen debut for the cameras of an expedition submersible. Its posture was so peculiar that Mike Vecchione, a research zoologist with the National Oceanic and Atmospheric Administration (NOAA), dubbed the contorted cephalopod "the most bizarre squid I've ever seen." [Gallery: Exploring the Gulf of Mexico]

The dive was part of an ocean exploration mission to investigate deep-sea habitats in the Gulf of Mexico. The expedition is being conducted by the NOAA research vessel Okeanos Explorer and is taking place from April 11 through May 3.

From aboard Okeanos, scientists send deep-diving remotely operated vehicles (ROVs) to capture high-resolution video of marine communities and to map the geography of habitats on the bottom of the ocean. Okeanos researchers share frequent updates from the dives, including photos and video, posting them on the mission's website.



Friday, 2 June 2017

Sea stars filmed hunting squid and squabbling over eating it

30 May 2017

By Chelsea Whyte

It’s like going back in time. NOAA’s Okeanos Explorer has completed more than two weeks of ocean exploration beginning near Pago Pago, the capital of American Samoa, and ending near Honolulu in Hawaii. Some of the animal behaviour it recorded has previously been documented only in fossils hundreds of millions of years old.

“For all of the places we went, it was the first time we were getting to have eyes down in the deep sea,” says Scott France, a deep-sea biologist at the University of Louisiana at Lafayette who was on the ship.

Those eyes come in the form of remote submersibles that light up the sea floor and transmit live video to the team and the public around the world.

“We saw brittle stars capturing a squid from the water column while it was swimming. I didn’t know that was possible. And then there was a tussle among the brittle stars to see who got to have the squid,” says France.
Living fossils

The team also saw snails attached to crinoids, sometimes called sea lillies for their graceful branches.

“We saw this amazing footage of the snail that seemed to be eating a crinoid. No one had seen this before,” says Del Bohnenstiehl at North Carolina State University in Raleigh, a geologist on the ship. “A scientist from the Smithsonian said he had seen it in the fossil record, but never live.”



Continued and video

Wednesday, 14 December 2016

Squid set to top chippy menus as seawater warms up



Great British cod supper is under threat as cold-water fish are replaced by warm-water species, says researcher

Britons may have to adopt a more continental diet as seawater temperatures rise.

Monday 12 December 2016 07.00 GMT

It is the meal most associated with the UK, along with slurping tea and moaning about the weather. But the great British fish supper could be on the way out, replaced by more continental variations such as squid and chips, as seas continue to warm, the British Ecological Society will be told this week. 

Britons may have to adopt a more continental diet when it comes to fish, as climate change sees cold-water fish such as cod gradually replaced by squid and other warm-water species, according to research led by Dr John Pinnegar of Cefas, the Centre for Environment, Fisheries and Aquaculture Science.

“Our models for 2025 and beyond suggest that seawater temperature may continue to rise in the future,” said Pinnegar. “As a result, UK waters will become more hospitable for some species and less suitable for others, with the overall result that most commercial species will move northwards.” 

Squid numbers have increased dramatically over the past 35 years in the North Sea, according to Cefas, which has monitored North Sea fish populations for the past 114 years. It said squid was found at 60% of its 76 survey stations in 2016, compared with just 20% in 1984.

The organisation analyses records of where fish are caught and water temperature, to monitor the impact of climate change and fishing intensity to long-term changes in abundance.

Tuesday, 23 August 2016

Scientists find googly-eyed squid off the California coast

AUGUST 16, 2016

by Brett Smith
Researchers combing the bottom of the sea off the coast of California recently stumbled upon a creature that looked like it came straight out of a Super Nintendo video game.

As seen on a video posted to YouTube by the research vessel E/V Nautilus, researchers happened upon a squid-like creature with “googly” eyes that looked almost cartoonish.

The study team was using an underwater drone to examine the sea floor and upon the unique-looking creature from a distance, the scientists can be heard in the video trying to figure out if it was an octopus or cuttlefish, a type of cephalopod.

When the team sent in the drone for a closer look, their attention shifted to the creature’s captivating eyes.

“They look like googly eyes … It looks so fake!” a female-sounding voice can be heard saying. “It’s like some little kid dropped their toy.”

The strange and interesting Stubby Squid
According to a description of the video, the researchers established that the creature was a Stubby squid, also known as Rossia pacifica.

“This species spends life on the seafloor, activating a sticky mucus jacket and burrowing into the sediment to camouflage, leaving their eyes poking out to spot prey like shrimp and small fish,” the E/V Nautilus description said.

Stubby squid inhabit the Northern Pacific and are typically seen at a depth of close to 1000 feet, though sightings have happened much lower, the E/V team said. The specimen seen in the video, for instance, was situated almost 3000 feet below the ocean.


Monday, 23 May 2016

Squids and octopuses thrive as 'weeds of the sea' warm to hotter oceans


Squid, cuttlefish and their relatives appear to benefit from ‘live fast, die young’ mentality as study shows cephalopods have thrived over past 60 years

Monday 23 May 201619.09 BSTLast modified on Monday 23 May 201622.43 BST


Octopuses, cuttlefish and squid have thrived in the world’s oceans over the last 60 years despite – or because of – human activity that has warmed oceans and reduced fish populations.

An international team compiled a database of cephalopod catch rates, and found that even though the creatures reproduce in diverse ways – some hatch and live near the sea floor, others are born and die moving up and down the water column – around the world, nearly all are steadily increasing.

“Cephalopods have this ‘live fast, die young’ life history strategy – the rock stars of the sea, if you like to call them that,” Bronwyn Gillanders, the project leader and a marine biologist at the University of Adelaide, told the Guardian.

Her colleague and the lead author of a study released on Monday, Zoe Doubleday, had a different analogy.

“Cephalopods are often called ‘weeds of the sea’,” she said, because their “rapid growth, short lifespans and flexible development” let them adapt to environmental changes more quickly than other marine animals.

This rapid life cycle, Gillanders said, means cephalopods can “proliferate quickly, perhaps with advantages over longer-lived organisms”.


Tuesday, 27 October 2015

Giant squid writ small: juvenile monsters of the deep captured off Japan

Three young squid caught by marine biologists are the spitting image of their gigantic parents – if nearly 1,000lbs and 50ft smaller

Alan Yuhas in New York

Saturday 24 October 2015 16.12 BST

Marine biologists have captured three young giant squid, Japanese researchers reported, in what would be the first confirmed catch of very young juveniles of the elusive creature.

The young squid, caught off south-western Japan, are replicas of their gigantic parents who live in the deep. Two were caught together; all three weighed less than 1lb and spanned 5-13ins. Adults can reach 50ft and 1,000lbs.

The smallest squid was captured alive, at a depth of 45 metres, leading the researchers to speculate that young squid may drift on ocean currents or inhabit shallow water at night. They “may inhabit and migrate through different depths of the ocean depending on the development stage”, the researchers said.

The researchers said “genetic analysis” supported their identification of the squid as juvenile giants, which was also based on mantles, suckers and other body parts. The squid were caught by various fishermen in 2013, but the researchers published their findings only this week, in the journal Marine Biodiversity Records.

“This is the first time in the world that such young giant squid were found, and it has helped us understand what they are like this early in their life stage,” paper co-author Toshifumi Wada told the Wall Street Journal.

That two of the squid were captured together in the Sea of Japan may indicate that juvenile giant squid travel together, he added, in contrast to the solitary habits of adults.

Wednesday, 30 September 2015

Novel tag developed for squid, jellyfish


ITAG links animal behavior, environmental conditions

Date:September 28, 2015

Source:Woods Hole Oceanographic Institution

Invertebrates, such as squid and jellyfish, play a crucial role in the marine food web and are also vital commercial fisheries. Despite their importance, little is known about their natural behaviors or how their environment influences those behaviors or physiology.

In a time of changing ocean chemistry and warming temperatures, understanding the impact that environmental changes may have on these animals is more important than ever.

"Squid and other soft-bodied invertebrates have almost open circulatory systems, so they're closely linked to their physical environment," says Aran Mooney, a biologist at the Woods Hole Oceanographic Institution (WHOI). "As the ocean environment changes, they probably change a lot in response."

To find out, Mooney and his collaborators at Stanford University, the University of Michigan (UM), and WHOI set out to create a new kind of data-logging tag, called the ITAG, specifically for small and delicate invertebrates. This novel instrument not only quantifies ocean conditions but also measures animals' responses to their physical environments in high resolution.

Saturday, 21 March 2015

Squid enrich their DNA 'blueprint' through prolific RNA editing


Date:
March 20, 2015

Source:
Marine Biological Laboratory

Summary:
RNA editing of genomic information was thought to be sparingly used, based on a limited number of studies in mammals and flies. But recently, investigators discovered the most prolific usage yet of RNA editing in the common squid, Doryteuthis pealeii, a behaviorally sophisticated marine organism that has long been prized for studies of the nervous system.

Tuesday, 17 February 2015

Squid recode genetic data to adapt to surroundings

February 15, 2015


Chuck Bednar for redOrbit.com – Your Universe Online

Researchers from the US and Israel have identified the first-ever example of a creature capable of editing its own genetic makeup in order to blend into its surroundings – the squid.

Reporting in a recent edition of the journal eLife, Dr. Eli Eisenberg of the Tel Aviv University Department of Physics and Sagol School of Neuroscience and his colleagues explained that the Doryteuthis pealieii squid can alter most of its own proteins on an as-needed basis.

“We have demonstrated that RNA editing is a major player in genetic information processing rather than an exception to the rule,” explained Dr. Eisenberg, who co-authored the study along with researchers from the University of Connecticut Health Center, Bar-Ilan University in Israel, and the University of Puerto Rico Medical Sciences Campus.

“By showing that the squid’s RNA-editing dramatically reshaped its entire proteome – the entire set of proteins expressed by a genome, cell, tissue, or organism at a certain time – we proved that an organism’s self-editing of mRNA is a critical evolutionary and adaptive force,” he continued, adding that the discovery could also have implications for treating diseases in humans.


Wednesday, 14 January 2015

Sizing up giants under the sea: Biologists correct inaccuracies for 25 marine species


Date:
January 13, 2015

Source:
National Evolutionary Synthesis Center (NESCent)

Summary:
Researchers sifted through multiple datasets and historical records to produce more accurate and comprehensive measurements for 25 species including the Blue Whale, Giant Squid, and Great White Shark.


Saturday, 13 December 2014

Are massive sea squid really the sea monsters of legend?

For centuries people have spun tales of sea monsters with giant tentacles that drag people to their doom. Is there any truth to the stories?

Presented by
Melissa Hogenboom

For centuries, fishermen from Norway and Greenland have told tales of a terrifying sea monster: the kraken. Supposedly, this vast creature has giant tentacles that can pluck you from your boat and drag you to the depths of the ocean. You can't see it coming, because it lurks deep beneath you in the dark water. But if you suddenly find yourself catching a great many fish, you should flee: the kraken might be beneath you, scaring the fish towards the surface.

In 1857, the kraken began to move from myth to reality, thanks to the Danish naturalist Japetus Steenstrup. He examined a large squid beak, about 8 cm (3 in) across, that had washed up on Denmark's shores several years earlier. Originally he could only guess at the overall size of the animal, but soon he was sent parts of another specimen from the Bahamas. When Steenstrup finally published his findings, he concluded that the kraken was real, and it was a species of giant squid. He named it Architeuthis dux, meaning "ruling squid" in Latin.

Only after Steenstrup had described the creature could scientists begin to unravel whether there was any truth to the old myths. Was this huge squid really as dangerous as the legends had led people to believe? Where did it come from, and what was it up to in the dark depths of the sea?

Saturday, 10 May 2014

Squid Reveal the Sweet Side of Pain

By Tanya Lewis, Staff Writer | May 08, 2014 02:44pm ET

Lasting feelings of pain or anxiety after an injury may seem perplexing, but they serve an evolutionary purpose, research suggests.

Squid that behave more vigilantly after even a minor injury are more likely to survive than their more brazen counterparts, a new study reveals. The findings suggest that persistent pain may be more useful than once thought, according to the study published today (May 8) in the journal Current Biology.

This study provides the first direct evidence to suggest that animals developed heightened sensitivity— which promotes pain in some animals — in response to natural selection, particularly to avoid predators, said study researcher Edgar Walters, a biologist at the University of Texas Medical School at Houston.

Thursday, 8 May 2014

Humans and Squid Evolved Same Eyes Using Same Genes


By Malcolm Campbell, University of Toronto | May 06, 2014 11:59pm ET

This article was originally published at The Conversation.The publication contributed the article to Live Science's Expert Voices: Op-Ed & Insights.

Eyes and wings are among the most stunning innovations evolution has created. Remarkably these features have evolved multiple times in different lineages of animals. For instance, the avian ancestors of birds and the mammalian ancestors of bats both evolved wings independently, in an example of convergent evolution. The same happened for the eyes of squid and humans. Exactly how such convergent evolution arises is not always clear.

In a new study, published in Nature Scientific Reports, researchers have found that, despite belonging to completely different lineages, humans and squid evolved through tweaks to the same gene.

Tuesday, 23 April 2013

Bomb Found Inside Squid Off Chinese Shore


By Emily ThomasPosted: 03/25/2013 10:12 am EDT | Updated: 03/25/2013 10:12 am EDT

Talk about some bombin' calamari. 

In the shallow waters just off the coast of the Guangdong province in China, a fisherman caught a bloated looking squid and took it to the fish market in Jiaoling County. 

Only after the fish was slaughtered at the market, was it revealed that there was in fact a live-bomb inside the fish that could detonate at any moment if handled improperly, according to China Daily. 

"This sort of squid lives close to the shore and normally makes a meal of small fish and prawns," Mr. Huang, the man who made the discovery, told Guangzhou Daily newspaper.

"Perhaps he thought the bomb was his favorite food and gulped it down. He certainly had a big belly when he was caught," he added. 

According to the Telegraph, the bomb weighed roughly three pounds and was shaped like an eggplant. 

Local police suggested that the rusted bomb may have been dropped by a fighter jet, but the age of the bomb was unknown. After Huang called Chinese authorities about the bomb's discovery, it was promptly taken away and police performed a controlled explosion.


Friday, 17 August 2012

Secret to Squid's Iridescent Rainbow Skin Discovered


For squid looking to sparkle, extra bling is only seconds away, thanks to a nerve network in the skin that allows these cephalopods to alter their iridescence — the first invertebrate creatures found to have this ability.

A new study finds that electrical stimulation of the nerves in squid skin changes the color and reflectance of tiny platelike structures called iridophores in the skin, allowing changes in hue from red all the way through the color spectrum to blue.

Oddly enough, despite their bright displays, these squid see only in black-and-white, deepening the mystery of why and how they pick a color from their array.

Wednesday, 8 August 2012

Deep-Sea Squid Can 'Jettison Arms' as Defensive Tactic


ScienceDaily (Aug. 2, 2012) — A postdoctoral researcher at the University of Rhode Island has observed a never-before-seen defensive strategy used by a small species of deep-sea squid in which the animal counter-attacks a predator and then leaves the tips of its arms attached to the predator as a distraction.

Stephanie Bush said that when the foot-long octopus squid (Octopoteuthis deletron) found deep in the northeast Pacific Ocean "jettisons its arms" in self-defense, the bioluminescent tips continue to twitch and glow, creating a diversion that enables the squid to escape from predators.

"If a predator is trying to attack them, they may dig the hooks on their arms into the predator's skin. Then the squid jets away and leaves its arm tips stuck to the predator," explained Bush. "The wriggling, bioluminescing arms might give the predator pause enough to allow the squid to get away."

The discovery was published in the July issue of the journal Marine Ecology Progress Series.

While Bush was a graduate researcher working with the Midwater Ecology Lab at the Monterey Bay Aquarium Research Institute, she observed that many octopus squid had arms of different lengths. Scientists had speculated that they may release their arms, just as lizards can release their tails when attacked, but no one had seen it happen. Using a remotely operated vehicle in the Monterey Bay Submarine Canyon off the coast of California, Bush poked at a squid with a bottlebrush.

Continued:
http://www.sciencedaily.com/releases/2012/08/120802150437.htm

Thursday, 21 June 2012

Squid ‘spermatophores’ get stuck in diner’s mouth


A 63-year-old Korean woman who was dining on boiled squid was horrified to discover that sperm from the squid had painfully stuck to her tongue and cheeks.
The Squid A Day site reports that the woman experienced severe pain in her mouth after biting into the squid. The National Center for Biotechnology Information (NCBI) explains what happened in further detail:
"She did not swallow the portion, but spat it out immediately. She complained of a pricking and foreign-body sensation in the oral cavity. Twelve small, white spindle-shaped, bug-like organisms stuck in the mucous membrane of the tongue, cheek, and gingiva were completely removed, along with the affected mucosa," the article abstract states.
"On the basis of their morphology and the presence of the sperm bag, the foreign bodies were identified as squid spermatophores."
Squid A Day notes that the squid's internal organs are normally removed when the squid is prepared for a dish, so this is not something the average consumer should have to worry about. When diners orders squid in a restaurant, they are typically served only edible parts, such as the cleaned tentacles and body sac.
And while the incident with this woman is creepy, painful and weird, it's not entirely without precedent. A report from NCBI in 2011 gave a similar case of squid spermatophores stinging a person's mouth, but that occurred after the person was eating raw squid. Again, it would seem as if the squid had not been properly prepared for consumption.
Interestingly, the site also says that squid spermatophores are perfectly safe to handle, as they are not powerful enough to stick to the outside of the human body.

Thursday, 1 March 2012

What sound means to squid

Marine biologists have started prying on squids’ world to find out how these creatures hear and how they respond to sounds in the ocean.

It is only in recent times that scientists have accepted that cephalopods have any auditory capability at all.

But new experiments have demonstrated that noises of varying loudness and frequency will elicit a range of behaviours in the animals - such as jetting or inking, and even a change of colour.

Dr Aran Mooney from the Woods Hole Oceanographic Institution (WHOI) of Massachusetts, US insisted that squids represent something of a keystone species in the ocean, sitting right at the heart of many food webs. If they are not the predator in those webs, they will almost definitely be the prey.


Read on:  http://www.phenomenica.com/2012/02/what-sound-means-to-squids.html

Tuesday, 18 October 2011

The Giant, Prehistoric Squid That Ate Common Sense

We have a serious problem with science journalism. A big one, in fact, and today that problem takes the form of a giant, prehistoric squid with tentacles so formidable that it has sucked the brains right out of staff writers’ heads.

While making the rounds among a few California museums late last month, I kept hearing rumors of a bombastic, super-hyped presentation due to be presented at this year’s Geological Society of America meeting in Minneapolis. The scuttlebutt was that someone was going to give a talk about a super-intelligent, predatory squid which fed on huge ichthyosaurs during the Triassic. Fascinating, if true, but the reason that all the paleontologists I met were chuckling was because there was not a shred of actual evidence to back up the claims. Apparently, whoever was set to give the talk had apparently stayed up late watching It Came From Beneath the Sea too many times.

Now the talk has officially been given and the scant details of the proposition have been oozed out into the newswires by way of a press release. Let me be clear — there is no paper yet or anything specific for those not in attendance at GSA to look at. This fact will be key to the media nonsense which has been swirling around the web today.

You can find the skinny through ScienceDaily and the official GSA abstract, but the basic story is as follows. In central Nevada — among the roughly 215 million-year-old, Late Triassic rocks of what has come to be known as Berlin-Ichthyosaur State Park — paleontologists have previously found the remains of numerous marine reptiles called Shonisaurus popularis. These were some of the largest ichthyosaurs to have ever swum the ancient seas, and this particular site has been of interest to paleontologists because multiple individuals have been found together at some localities. Why these individuals were found together in a mass death assemblage is unknown — explanations have ranged from stranding to poisoning by a prehistoric red tide — but now Mark McMenamin and wife Dianna Schulte-McMenamin of Mount Holyoke College have suggested that the graveyard is actually a cache of bones collected and arranged by a squid the likes of which has never been seen.

There is no direct evidence for the existence of the animal the McMenamins call “the kraken.” No exceptionally preserved body, no fossilized tentacle hooks, no beak — nothing. The McMenamins’ entire case is based on peculiar inferences about the site. It is a case of reading the scattered bones as if they were tea leaves able to tell someone’s fortune. Rather than being distributed through the bonebed by natural processes related to decay and preservation, the McMenamins argue that the Shonisaurus bones were intentionally arrayed in a “midden” by a huge cephalopod nearly 100 feet long. (How the length of the imaginary animal was estimated is anyone’s guess.) But that’s not all — the McMenamins speculate that his “kraken” played with its food:

The proposed Triassic kraken, which could have been the most intelligent invertebrate ever, arranged the vertebral discs in biserial patterns, with individual pieces nesting in a fitted fashion as if they were part of a puzzle. The arranged vertebrae resemble the pattern of sucker discs on a cephalopod tentacle, with each amphicoelous vertebra strongly resembling a coleoid sucker. Thus the tessellated vertebral disc pavement may represent the earliest known self‑portrait.
I guess a giant, ichthyosaur-eating “kraken” wasn’t enough. A squid with a stroke of artistic genius was clearly the simplest explanation for the formation of the bonebeds. *facepalm*

Of course, the McMenamins were not the first people to ponder how the ichthyosaurs came to rest at the site. Paleontologist David Bottjer wrote a summary of the bonebed — largely based on the work of colleague Jennifer Hogler – for the book Exceptional Fossil Preservation. As a whole, the fossil deposits indicate that different Shonisaurus specimens died and became preserved in different ways. Some skeletons were scattered by currents and scavengers, and other, more-complete individuals — such as those at the Fossil House Quarry — were well preserved and found in multi-individual groups. In this latter case, a lack of encrusting invertebrates would seem to indicate that the skeletons came to be preserved in deep water environments with low levels of dissolved oxygen. The initial cause of death for the marine reptiles is unknown, but there is no good evidence that the exceptional sites were, to borrow from Ringo Starr, giant killer octopus gardens.
Read on...
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