User:Seacucumber7/Greenland shark
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Description
[edit]The Greenland shark is one of the largest known extant species of shark, with adults growing to around 400 to 500 cm.[1] The largest confirmed specimen measured up to 6.4 metres (21 ft) long and weighed around 1,023 kilograms (2,255 lb).[2][3][4] The all-tackle International Game Fish Association (IGFA) record for this species is 775 kg (1,709 lb).[5] It rivals the Pacific sleeper shark (possibly up to 7 m or 23 ft long) for the largest species in the family Somniosidae.
The Greenland shark is a thickset species, with a short, rounded snout, small eyes, and small dorsal and pectoral fins.[2] The gill openings are very small for the species' great size. Female Greenland sharks are typically larger than males.[6]
Coloration can range from pale creamy-gray to blackish-brown and the body is typically uniform in color, though whitish spots or faint dark streaks are occasionally seen on the back.[4]
The shark is often infested by the copepod Ommatokoita elongata, a crustacean which attaches itself to the shark's eyes.[7] It was speculated that the copepod may display bioluminescence and thus attract prey for the shark in a mutualistic relationship, but this hypothesis has not been verified.[8] These parasites also damage the eyeball in several ways, leading to almost complete blindness. This does not seem to reduce the life expectancy or predatory ability of Greenland sharks, due to their strong reliance on smell and hearing.[7][9]
Behavior
[edit]Diet
[edit]As both scavengers and active predators, Greenland sharks have established themselves as apex predators in Arctic ecosystems.[10][11] They primarily eat fish (cod, wolffish, haddock, and skates) and seal.[10][11] Some Greenland sharks have been found to also eat minke whale.[11] Small Greenland sharks eat predominantly squid, as well as sea birds, crabs, amphipods, marine snails, brittle stars, sea urchins, and jellyfish, while the larger sharks that are greater than 200 cm (79 in) were discovered eating prey such as epibenthic and benthic fishes, as well as seals and small cetaceans such as oceanic dolphins and porpoises.[12][13][14] The largest of these sharks were found having eaten redfish, as well as other higher trophic level prey.[15]
It is proposed that, because of their slow speeds and low twitch speed muscle fiber, Greenland sharks hunt marine mammals such as seals and smaller cetaceans that are asleep, injured, or sick. Regarding most other benthic species, they utilize their cryptic coloration, and approach prey undetected before closing the remaining distance, expanding their buccal cavity to create suction, drawing in prey. This is the likely explanation for why the gut contents of Greenland sharks are often whole prey specimens.[11]
Greenland sharks have also been found with remains of moose, polar bear, horse, and reindeer (in one case an entire reindeer body) in their stomachs.[16][17][18] The Greenland shark is known to be a scavenger and is attracted by the smell of rotting meat in the water. The sharks have frequently been observed gathering around fishing boats.[16] They also scavenge on seals.[19]
Although such a large shark could easily consume a human swimmer, the frigid waters it typically inhabits make the likelihood of attacks on people very low. No cases of predation on humans have been verified.[16]
Movement and migration
[edit]The Greenland shark prefers cold water temperatures (—1.1 to 7.4°C) and deep water (100 to 1,200m).[20] As an ectotherm living in a just-above-freezing environment, this species is sluggish and slow-moving, with the lowest swim speed and tail-beat frequency for its size across all fish species, which most likely correlates with its very slow metabolism and extreme longevity.[21] It swims at an average of 0.34 m·s-1, with its fastest cruising speed only reaching 0.74 m·s-1.[22][23] Because this top speed is a fraction of that of a typical seal in their diet, biologists are uncertain how the sharks are able to prey on the seals. It is hypothesized that they may ambush them while they sleep.[23][24]
Greenland sharks migrate annually based on depth and temperature rather than distance, although some do travel. During the winter, the sharks congregate in the shallows (up to 80° north) for warmth but migrate separately in summer to the deeps or even farther south. The species has been observed at a depth of 2,200 metres (7,200 ft) by a submersible investigating the wreck of the SS Central America that lies about 160 nautical miles (180 mi; 300 km) east of Cape Hatteras, North Carolina.[25] Daily vertical migration between shallower and deeper waters has also been recorded.[26]
In August 2013, researchers from Florida State University caught a Greenland shark in the Gulf of Mexico at a depth of 1,749 m (5,738 ft), where the water temperature was 4.1 °C (39.4 °F).[27] Four previous records of Greenland shark were reported from Cuba and the northern Gulf of Mexico.[28] A more typical depth range is 0–1,500 m (0–4,900 ft), with the species often occurring in relatively shallow waters in the far north and deeper in the southern part of its range.[29][30]
In April 2022, a large Somniosus shark was caught and subsequently released on Glover's Reef off the coast of Belize. This shark was identified as being either a Greenland shark or a Greenland/Pacific sleeper shark hybrid. This observation is notable for being the first possible record of a Greenland shark from the Western Caribbean, and being caught on a nearshore coral reef (the only other record of this species from the Caribbean was made from a deep-water habitat off the Caribbean coast of Colombia). The discovery indicates that Greenland sharks may have a wider distribution in the tropics, primarily at greater depths, than previously believed.[31]
When hoisted upon deck, it beats so violently with its tail, that it is dangerous to be near it, and the seamen generally dispatch it, without much loss of time. The pieces that are cut off exhibit a contraction of their muscular fibres for some time after life is extinct. It is, therefore, extremely difficult to kill, and unsafe to trust the hand within its mouth, even when the head is cut off. And, if we are to believe Crantz, this motion is to be observed three days after, if the part is trod on or struck.
— Henry William Dewhurst, The Natural History of the Order Cetacea (1834)[32]
Longevity
[edit]The Greenland shark has the longest known lifespan of all vertebrate species.[33] It is estimated that the species has a lifespan of at least 272 years, with the oldest individual estimated to be 392 ± 120 years of age. Estimates of age were made using radiocarbon dating of crystals within the lenses of their eyes.[1] Greenland sharks are estimated to reach sexual maturity at around 150 years of age at which point females measure around 4.19±0.04 and males measure around 2.84±0.06.[1][34][35] One Greenland shark was tagged off the coast of Greenland in 1936 and recaptured in 1952. Its measurements suggest that Greenland sharks grow at a rate of 0.5–1 cm (1⁄4–1⁄2 in) per year.[36] Efforts to conserve Greenland sharks are particularly important due to their extreme longevity, long maturation periods, and the heightened sensitivity of large shark populations.[37]
Reproduction
[edit]Greenland sharks are born alive (a process known as ovoviviparity) after an estimated gestation period of 8–18 years.[38] Estimates of litter size have varied across studies. Some studies suggest that this species produce up to 10 pups per litter, each initially measuring some 38—42 cm in length.[39] Based on these estimates, It is thought that, due to their extreme longevity, Greenland sharks can have between 200 to 700 pups during their lifetime.[38] Within a Greenland shark's uterus, villi serve a key function in supplying oxygen to embryos. It is speculated that oxygen supply is a major limiting factor in the size of litters.[40] Other studies, however, have estimated that Greenland sharks may produce between 200 to 324 pups per litter, measuring between 40—100 cm in length.[41]
Physiological adaptations
[edit]Like other elasmobranchii, Greenland sharks have high concentrations of the two nitrogenous compounds urea and trimethylamine N-oxide (TMAO) in their tissues, which increase their buoyancy and function as osmoprotectants.[42] TMAO also counteracts the protein-destabilizing tendencies of urea and deep-water pressure.[43][44] Its presence in the tissues of both elasmobranch and teleost fish has been found to increase with depth.[43][45]
The blood of Greenland sharks contains three major types of hemoglobin, made up of two copies of α globin combined with two copies of three very similar β subunits. These three types show very similar oxygenation and carbonylation properties, which are unaffected by urea, an important compound in marine elasmobranchii physiology. They display identical electronic absorption and resonance in Raman spectroscopy, indicating that their heme-pocket structures are identical or highly similar. The hemoglobins also have a lower affinity for oxygen compared to temperate sharks. These characteristics are interpreted as adaptations to living at great water depths.[46]
Threats
[edit]The shark has historically been hunted for its liver oil up until the development of synthetic oils and cessation of export of liver oil and skin from Greenland in the 1960s.[47] In the 1970s, the species was seen as a problem for other fisheries in western Norway and the government subsidized a fishery to reduce the stock of the species.[48] Today, the Greenland shark is primarily caught as bycatch in industrial fisheries. While about 25 Greenland sharks are caught per year by artisanal fisheries targeting the species in Iceland, 3,500 are caught annually as bycatch in the Arctic and Atlantic Oceans.[49]
The shark is likely affected by quantity, dynamics, and distribution of Arctic sea ice.[50] The rate of projected loss of sea ice will continue to negatively influence the abundance, distribution and availability of prey, while, at the same time, providing greater access for fishing fleets.[50] There is greater potential for new fisheries to develop as more productive and abundant southerly species invade the warming Arctic waters.[51]
Conservation and Managment
[edit]Greenland sharks are recognized as the longest-lived vertebrates on earth. They have a slow growth rate, late maturity period, and low fecundity, making the management and conservation of this species very important. As a result of their low productivity and extreme longevity, this species is particularly susceptible to overfishing and bycatch. Therefore, Greenland sharks' longevity and conservative life history traits, in tandem with their vulnerability to accidental catching and commercial fishing, promotes a growing concern for the sustainability of this species.[50]
Hákarl
[edit]The flesh of the Greenland shark is toxic because of the presence of high concentrations of urea and trimethylamine oxide (TMAO). If the meat is eaten without pretreatment, the ingested TMAO is metabolized into trimethylamine, which may be a uremic toxin. Occasionally, sled dogs that eat the flesh are unable to stand up because of this effect. Similar toxic effects occur with the related Pacific sleeper shark, but not in most other shark species.[52][53]
Greenland shark meat produced and eaten in Iceland where, today, it is known as a delicacy called hákaral. To make the shark safe for human consumption, it is first fermented and then dried in a process that can take multiple months. The shark was traditionally fermented by burying the meat in gravel pits near the ocean for at least several weeks. In the present day, shark cuts are typically fermented in containers that are perforated to allow liquid to drain. The fermentation process converts urea into ammonia and TMAO into TMA, which then drains as liquid from the meat. The meat is then excavated and hung in strips to dry for several more months. [54][55]
Inuit legends
[edit]The Greenland shark's poisonous flesh has a high urea content, which gave rise to the Inuit legend of Skalugsuak, the first Greenland shark.[56] The legend says that an old woman washed her hair in urine (a common practice to kill head lice) and dried it with a cloth. The cloth blew into the ocean to become Skalugsuak.[57] Another legend tells of Sedna whose father cut off her fingers while drowning her, with each finger turning into a sea creature, including Skalugsuak.[58]
The Greenland shark plays a role in cosmologies of the Inuit from the Canadian Eastern Arctic and Greenland. Igloolik Inuit believe that the shark lives within the urine pot of Sedna, goddess of the sea, and consequently, its flesh has a urine-like smell and acts as a helping spirit to shamans.[59]
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[edit]References
[edit]- ^ a b c Nielsen, Julius; Hedeholm, Rasmus B.; Heinemeier, Jan; Bushnell, Peter G.; Christiansen, Jørgen S.; Olsen, Jesper; Ramsey, Christopher Bronk; Brill, Richard W.; Simon, Malene; Steffensen, Kirstine F.; Steffensen, John F. (2016-08-12). "Eye lens radiocarbon reveals centuries of longevity in the Greenland shark ( Somniosus microcephalus )". Science. 353 (6300): 702–704. doi:10.1126/science.aaf1703. ISSN 0036-8075.
- ^ a b MacNeil, M.A.; McMeans, B. C.; Hussey, N. E.; Vecsei, P.; Svavarsson, J.; Kovacs, K. M.; Lydersen, C.; Treble, M.A.; et al. (2012). "Biology of the Greenland shark Somniosus microcephalus". Journal of Fish Biology. 80 (5): 991–1018. Bibcode:2012JFBio..80..991M. doi:10.1111/j.1095-8649.2012.03257.x. PMID 22497371.
- ^ McClain, Craig R.; Balk, Meghan A.; Benfield, Mark C.; Branch, Trevor A.; Chen, Catherine; Cosgrove, James; et al. (13 January 2015). "Sizing ocean giants: patterns of intraspecific size variation in marine megafauna". PeerJ. 3: e715. doi:10.7717/peerj.715. PMC 4304853. PMID 25649000.
- ^ a b Eagle, Dane. "Greenland shark". Florida Museum of Natural History. Archived from the original on 21 March 2013. Retrieved 26 June 2012.
- ^ "IGFA Member Services". igfa.org.
- ^ Nielsen, Julius; Hedeholm, Rasmus B.; Lynghammar, Arve; McClusky, Leon M.; Berland, Bjørn; Steffensen, John F.; Christiansen, Jørgen S. (2020-10-07). "Assessing the reproductive biology of the Greenland shark (Somniosus microcephalus)". PLOS ONE. 15 (10): e0238986. doi:10.1371/journal.pone.0238986. ISSN 1932-6203. PMC 7540863. PMID 33027263.
{{cite journal}}
: CS1 maint: PMC format (link) CS1 maint: unflagged free DOI (link) - ^ a b Borucinska, J.D.; Benz, G.W.; Whiteley, H.E. (1998). "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. 21 (6): 415–422. doi:10.1046/j.1365-2761.1998.00122.x.
- ^ Berland, Bjørn (1961). "Copepod Ommatokoita elongata (Grant) in the eyes of the Greenland shark – a possible cause of mutual dependence". Nature. 191 (4790): 829–830. Bibcode:1961Natur.191..829B. doi:10.1038/191829a0. S2CID 4262630.
- ^ Ferrando, S.; Gallus, L.; Ghigliotti, L.; Vacchi, M.; Nielsen, J.; Christiansen, J.S.; Pisano, E. (2016-08-01). "Gross morphology and histology of the olfactory organ of the Greenland shark Somniosus microcephalus". Polar Biology. 39 (8): 1399–1409. Bibcode:2016PoBio..39.1399F. doi:10.1007/s00300-015-1862-1. ISSN 1432-2056. S2CID 17368573.
- ^ a b Nielsen, Julius; Hedeholm, Rasmus B.; Simon, Malene; Steffensen, John F. (2014-01-01). "Distribution and feeding ecology of the Greenland shark (Somniosus microcephalus) in Greenland waters". Polar Biology. 37 (1): 37–46. Bibcode:2014PoBio..37...37N. doi:10.1007/s00300-013-1408-3. ISSN 1432-2056. S2CID 17829168.
- ^ a b c d Lydersen, Christian; Fisk, Aaron T.; Kovacs, Kit M. (November 2016). "A review of Greenland shark (Somniosus microcephalus) studies in the Kongsfjorden area, Svalbard Norway". Polar Biology. 39 (11): 2169–2178. Bibcode:2016PoBio..39.2169L. doi:10.1007/s00300-016-1949-3. ISSN 0722-4060. S2CID 15050012.
- ^ Somniosus microcephalus (Greenland shark). (n.d.). Animal Diversity Web. https://animaldiversity.org/accounts/Somniosus_microcephalus/
- ^ Somniosus microcephalus summary page. (n.d.). FishBase. https://www.fishbase.se/summary/Somniosus-microcephalus?ref=biodaily.it
- ^ Somniosus microcephalus. (n.d.). Discover Fishes. https://www.floridamuseum.ufl.edu/discover-fish/species-profiles/somniosus-microcephalus/
- ^ Nielsen, Julius; Christiansen, Jørgen Schou; Grønkjær, Peter; Bushnell, Peter; Steffensen, John Fleng; Kiilerich, Helene Overgaard; et al. (2019). "Greenland shark (Somniosus microcephalus) stomach contents and stable isotope values reveal an ontogenetic dietary shift". Frontiers in Marine Science. 6. doi:10.3389/fmars.2019.00125. hdl:10037/15917. ISSN 2296-7745.
- ^ a b c Eagle, Dane. "Greenland shark". Florida Museum of Natural History. Archived from the original on 21 March 2013. Retrieved 26 June 2012.
- ^ Howden, Daniel (12 August 2008). "Clash of the fiercest predators as shark eats polar bear". The Independent. Retrieved 26 June 2012.
- ^ Somniosus microcephalus (Greenland shark). (n.d.). Animal Diversity Web. https://animaldiversity.org/accounts/Somniosus_microcephalus/
- ^ Yong, Ed (11 August 2016). "The sharks that live to 400". The Atlantic. Retrieved 15 August 2016.
- ^ Nielsen, Julius; Hedeholm, Rasmus B.; Simon, Malene; Steffensen, John F. (2014-01-01). "Distribution and feeding ecology of the Greenland shark (Somniosus microcephalus) in Greenland waters". Polar Biology. 37 (1): 37–46. doi:10.1007/s00300-013-1408-3. ISSN 1432-2056.
- ^ Augustine, Starrlight; Lika, Konstadia; Kooijman, Sebastiaan A.L.M. (2017-12-01). "Comment on the ecophysiology of the Greenland shark, Somniosus microcephalus" (PDF). Polar Biology. 40 (12): 2429–2433. Bibcode:2017PoBio..40.2429A. doi:10.1007/s00300-017-2154-8. hdl:1871.1/a6f1d885-5cd1-431f-8e85-540060915b6c. ISSN 1432-2056. S2CID 20852421.
- ^ Watanabe, Yuuki Y.; Lydersen, Christian; Fisk, Aaron T.; Kovacs, Kit M. (2012). "The slowest fish: Swim speed and tail-beat frequency of Greenland sharks". Journal of Experimental Marine Biology and Ecology. 426–427: 5–11. Bibcode:2012JEMBE.426....5W. doi:10.1016/j.jembe.2012.04.021.
- ^ a b Lydersen, Christian; Fisk, Aaron T.; Kovacs, Kit M. (2016-11-01). "A review of Greenland shark (Somniosus microcephalus) studies in the Kongsfjorden area, Svalbard Norway". Polar Biology. 39 (11): 2169–2178. doi:10.1007/s00300-016-1949-3. ISSN 1432-2056.
- ^ Scales, Helen (June 2012). "Slow sharks sneak up on sleeping seals (and eat them)?". National Geographic News. Archived from the original on 28 June 2012. Retrieved 28 December 2012.
- ^ "America's lost treasure". sscentralamerica.com. Archived from the original on 24 November 2016. Retrieved 14 February 2017.
- ^ Owen, D. (2009). Shark: In peril in the sea. Allen & Unwin.
- ^ Grubs, Dean (15 August 2013). " Deep-C Scientists Capture First Greenland Shark in the Gulf of Mexico". deep-c.org
- ^ Benfield, Mark (2008). "The second report of a sleeper shark (Somniosus (Somniosus) sp.) from the bathypelagic waters of the northern Gulf of Mexico". Bulletin of Marine Science. 82 (2): 195–198.
- ^ Yano, K.; Stevens, J.D.; Compagno, L.J.V. (2007). "Distribution, reproduction and feeding of the Greenland shark Somniosus (Somniosus) microcephalus, with notes on two other sleeper sharks, Somniosus (Somniosus) pacificus and Somniosus (Somniosus) antarcticus". Journal of Fish Biology. 70 (2): 374–390. Bibcode:2007JFBio..70..374Y. doi:10.1111/j.1095-8649.2007.01308.x.
- ^ Møller, P.R.; Nielsen, J.; Knudsen, S.W.; Poulsen, J.Y.; Sünksen, K.; Jørgensen, O.A. (2010). "A checklist of the fish fauna of Greenland waters". Zootaxa. 2378 (1): 1–84.
- ^ Kasana, Devanshi; Martinez, Hector Daniel; Faux, Omar; Monzon, Neri; Guerra, Elio; Chapman, Demian D. (2022). "First report of a sleeper shark (Somniosus sp.) in the western Caribbean, off the insular slope of a coral atoll". Marine Biology. 169 (8): 101. Bibcode:2022MarBi.169..101K. doi:10.1007/s00227-022-04090-3. S2CID 250590599. Retrieved 2022-07-30.
- ^ Dewhurst, H.W. (1834). The Natural History of the Order Cetacea and the Oceanic Inhabitants of the Arctic Regions. Verf.
Illustrated with numerous lithographic and wood engravings
- ^ Nielsen, Julius; Hedeholm, Rasmus B.; Heinemeier, Jan; Bushnell, Peter G.; Christiansen, Jørgen S.; Olsen, Jesper; et al. (2016). "Eye lens radiocarbon reveals centuries of longevity in the Greenland shark (Somniosus microcephalus)". Science. 353 (6300): 702–704. Bibcode:2016Sci...353..702N. doi:10.1126/science.aaf1703. hdl:2022/26597. PMID 27516602. S2CID 206647043. de Lazaro, Enrico (12 August 2016). "Greenland sharks are longest-lived vertebrates on Earth, marine biologists say". Science News.
- ^ Pennisi, Elizabeth (11 August 2016). "Greenland shark may live 400 years, smashing longevity record". Science. doi:10.1126/science.aag0748.
- ^ O'Connor, M.R. (25 November 2017). "The strange and gruesome story of the Greenland shark, the longest-living vertebrate on Earth". The New Yorker. Retrieved 27 November 2017.
- ^ Caloyianis, Nick (September 1998). "Greenland Sharks". National Geographic. 194 (3): 60–71.
- ^ Davis, Brendal; van der Zwaag, David L.; Cosandey-Godin, Aurelie; Hussey, Nigel E.; Kessel, Steven T.; Worm, Boris (2013-10-01). "The conservation of the Greenland shark (Somniosus microcephalus): Setting scientific, law, and policy coordinates for avoiding a species at risk". Journal of International Wildlife Law & Policy. 16 (4): 300–330. doi:10.1080/13880292.2013.805073. ISSN 1388-0292. S2CID 84039070.
- ^ a b Augustine, Starrlight; Lika, Konstadia; Kooijman, Sebastiaan A.L.M. (2017-12-01). "Comment on the ecophysiology of the Greenland shark, Somniosus microcephalus" (PDF). Polar Biology. 40 (12): 2429–2433. Bibcode:2017PoBio..40.2429A. doi:10.1007/s00300-017-2154-8. hdl:1871.1/a6f1d885-5cd1-431f-8e85-540060915b6c. ISSN 1432-2056. S2CID 20852421.
- ^ Pennisi, Elizabeth (11 August 2016). "Greenland shark may live 400 years, smashing longevity record". Science. doi:10.1126/science.aag0748.
- ^ Carter, Anthony M.; Soma, Hiroaki (1 August 2020). "Viviparity in the longest-living vertebrate, the Greenland shark (Somniosus microcephalus)". Placenta. 97: 26–28. doi:10.1016/j.placenta.2020.05.014. PMID 32792058. S2CID 221121663.
- ^ Nielsen, Julius; Hedeholm, Rasmus B.; Lynghammar, Arve; McClusky, Leon M.; Berland, Bjørn; Steffensen, John F.; Christiansen, Jørgen S. (2020-10-07). "Assessing the reproductive biology of the Greenland shark (Somniosus microcephalus)". PLOS ONE. 15 (10): e0238986. doi:10.1371/journal.pone.0238986. ISSN 1932-6203. PMC 7540863. PMID 33027263.
{{cite journal}}
: CS1 maint: PMC format (link) CS1 maint: unflagged free DOI (link) - ^ Withers, Philip C.; Morrison, Garrick; Guppy, Michael (1994). "Buoyancy Role of Urea and TMAO in an Elasmobranch Fish, the Port Jackson Shark, Heterodontus portusjacksoni". Physiological Zoology. 67 (3): 693–705. doi:10.1086/physzool.67.3.30163765. JSTOR 30163765. S2CID 100989392.
- ^ a b Yancey, Paul H.; Gerringer, Mackenzie E.; Drazen, Jeffrey C.; Rowden, Ashley A.; Jamieson, Alan (2014). "Marine fish may be biochemically constrained from inhabiting the deepest ocean depths". Proceedings of the National Academy of Sciences of the United States of America. 111 (12): 4461–4465. Bibcode:2014PNAS..111.4461Y. doi:10.1073/pnas.1322003111. PMC 3970477. PMID 24591588.
- ^ Yancey, Paul H. (2005). "Organic osmolytes as compatible, metabolic and counteracting cytoprotectants in high osmolarity and other stresses". The Journal of Experimental Biology. 208 (pt 15): 2819–2830. doi:10.1242/jeb.01730. PMID 16043587.
- ^ Treberg, Jason R.; Driedzic, William R. (2002). "Elevated levels of trimethylamine oxide in deep-sea fish: Evidence for synthesis and intertissue physiological importance". Journal of Experimental Zoology. 293 (1): 39–45. Bibcode:2002JEZ...293...39T. doi:10.1002/jez.10109. PMID 12115917.
- ^ Russo, Roberta; Giordano, Daniela; Paredi, Gianluca; Marchesani, Francesco; Milazzo, Lisa; Altomonte, Giovanna; et al. (12 October 2017). "The Greenland shark Somniosus microcephalus — hemoglobins and ligand-binding properties". PLOS ONE. 12 (10): e0186181. Bibcode:2017PLoSO..1286181R. doi:10.1371/journal.pone.0186181. PMC 5638460. PMID 29023598.
- ^ Hedeholm, R., Nygaard, R. and Nogueira, A. 2018. Greenland shark in Greenland waters in NAFO Subarea 1 and ICES XIV. North Atlantic Fisheries Organization Scientific Committee Report 18/037: 1-10.
- ^ Castro, José I.; Woodley, Christa M.; Brudek, Rebecca L. (1999). "4. The status of elasmobranch species". A preliminary evaluation of the status of shark species. FAO fisheries technical paper. Rome: FAO. ISBN 978-92-5-104299-1.
- ^ "Greenland Shark". IUCN Red List. Retrieved 11/20/2024.
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(help)CS1 maint: url-status (link) - ^ a b c Edwards, Jena E.; Hiltz, Elizabeth; Broell, Franziska; Bushnell, Peter G.; Campana, Steven E.; Christiansen, Jørgen S.; et al. (2019-04-02). "Advancing research for the management of long-lived species: A case study on the Greenland shark". Frontiers in Marine Science. 6: 87. doi:10.3389/fmars.2019.00087. hdl:10037/16245. ISSN 2296-7745.
- ^ Tai, Travis C.; Steiner, Nadja S.; Hoover, Carie; Cheung, William W.L.; Sumaila, U. Rashid (2019). "Evaluating present and future potential of arctic fisheries in Canada". Marine Policy. 108: 103637. Bibcode:2019MarPo.10803637T. doi:10.1016/j.marpol.2019.103637.
- ^ "The Greenland shark is a very odd species of shark". Shark Sider. December 2014. Retrieved 17 August 2016.
- ^ "The Greenland shark: An icy mystery". Sharkopedia. Discovery.com. Archived from the original on 7 January 2018. Retrieved 17 August 2016.
- ^ Shardlow, Ju; Romeo, Claudia. "Greenland shark is the most toxic shark in the world, but one family has been curing it for hundreds of years". Insider. Retrieved 23 January 2022.
- ^ Jensen, Sophie; Ólason, Snorri Páll; Skírnisdóttir, Sigurlaug; Stefánsson, Guðmundur; Dargentolle, Cecile; Marteinsson, Viggó Thór (2023-11). "Unlocking the microbial diversity and the chemical changes throughout the fermentation process of "hákarl", Greenland shark". Heliyon. 9 (11): e22127. doi:10.1016/j.heliyon.2023.e22127. ISSN 2405-8440. PMC 10700383. PMID 38074871.
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(help)CS1 maint: PMC format (link) CS1 maint: unflagged free DOI (link) - ^ O'Reilly, Lindsay (2004). "Skalugsuak's origins". Canadian Geographic. Archived from the original on 21 March 2016. Retrieved 13 August 2016.
- ^ "Greenland shark". Greenland Shark and Elasmobranch Education and Research Group. Archived from the original on 14 October 2013. Retrieved 13 August 2016.
- ^ Helfman, Gene; Burgess, George H. (2014). Sharks: The animal answer guide. Johns Hopkins University Press.
- ^ Idrobo, Carlos Julián (February 2009). The Pangnirtung Inuit and the Greenland Shark (PDF) (M.Sc. thesis). University of Manitoba. p. 66. OCLC 855389661.