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Rainbow runner

The rainbow runner (Elagatis bipinnulata), also known as the rainbow yellowtail, Spanish jack and Hawaiian salmon, is a common species of pelagic marine fish of the jack family, Carangidae. The species is widespread throughout the tropical and subtropical waters of the world, inhabiting both coastal and offshore areas. The species is the only member of the genus Elagatis, which was created 15 years after its initial description, and is closely related to the amberjacks. The rainbow runner is easily distinguished by its body shape, and the brilliant colouration which gives the fish its name. It is a fast-swimming predator, taking small fish, cephalopods, and a wide variety of planktonic crustaceans. The species reaches sexual maturity around 60 cm (24 in), and spawning takes place at different times, with some populations spawning year round, while others only spawn at certain times of the year. The species is a well known game fish, taken by a variety of fishing methods, and is a well-regarded table fish. Large numbers of the species are taken as bycatch in tuna- and shark-fishing operations and marketed.

Rainbow runner
Scientific classification
Domain: Eukaryota
Kingdom: Animalia
Phylum: Chordata
Class: Actinopterygii
Order: Carangiformes
Family: Carangidae
Subfamily: Naucratinae
Genus: Elagatis
F.D. Bennett, 1840
Species:
E. bipinnulata
Binomial name
Elagatis bipinnulata
(Quoy & Gaimard, 1825)
Approximate range of the rainbow runner
Synonyms[2]
  • Seriola bipinnulata,
    Quoy and Gaimard, 1825
  • Seriolichthys bipinnulatus,
    (Quoy and Gaimard, 1825)
  • Micropteryx bipinnulatus,
    (Quoy and Gaimard, 1825)
  • Elagatis bipinnulatus,
    (Quoy and Gaimard, 1825)
  • Irex indicus,
    Valenciennes, 1862

Taxonomy and naming edit

The rainbow runner is the only species in the monotypic genus Elagatis, which is one of 30 genera in the jack family, the Carangidae. The Carangidae are perciform fishes in the suborder Percoidei.[3] The species was first scientifically described in 1825 by French zoologists Jean René Constant Quoy and Joseph Paul Gaimard based on the type specimen collected from the Indian Ocean, somewhere in the Malay Archipelago. They named the species Seriola bipinnulata, believing the species was related to the amberjacks.[4] This was later revised to the genus Seriolichthys by Bleeker before the species was found to warrant a new genus. The genus Micropteryx was initially created, but was already in use in the Lepidoptera.[5] In 1840, Frederick Debell Bennett created the genus Elagatis, taken from a name published in a whaling voyage memoir,[6] which he used in combination with the specific name bipinnulatus, which was deemed to be incorrect, as the genus name is feminine and the original spelling of bipinnulata was reinstated.[7] Phylogenetically, the species is most closely related to the amberjack genus, Seriola, being the most basal member identified of the carangid tribe Naucratini. This has been determined by the sequencing of the mitochondrial cytochrome b genome, as well as older morphological studies.[8]

The species' wide range has led to a wide array of local common names, with the most common English name being rainbow runner in reference to its colouring. Other names frequently applied include rainbow yellowtail,[4] Hawaiian salmon, salmon (incorrectly), Spanish jack, salmon del alto (Cuba), and over 20 other names in various languages.[2]

Description edit

 
A school of rainbow runners

The rainbow runner's body is atypical of the jack family, which generally have deep, compressed bodies.[9] The rainbow runner has a subcylindrical, elongated to almost fusiform body, with a long, pointed head and snout and a tapering rear end before the caudal fin emerges. The eyes are relatively small and the teeth are arranged on jaws in villiform bands, with minute teeth also present on the roof of the mouth and tongue.[10] The fish has two dorsal fins, although the posterior rays of the long second fin have separated into a finlet. The first dorsal consists of six spines, the second of a single spine and 25 to 30 soft rays, with the last two as a separate finlet. About 4% of rainbow runners have only five spines in the first dorsal fin, and are apparently born without them.[11] The anal fin consists of one spine detached from the fin anteriorally, while the main fin has a single spine and 18 to 22 soft rays, with the last two detached to form a finlet like the dorsal fin.[12] The dorsal and anal fins are quite low, and the dorsal fin is much longer than the anal. The pectoral fin is small for a carangid, about the length of the pelvic fin and is not falcate, with 20 rays. The pelvic fin consists of one spine and five branched soft rays. The caudal fin is also highly diagnostic, being deeply forked and consisting of 17 caudal rays, 9 dorsally and 8 ventrally.[11] The lateral line has a slight anterior arch and no scutes are present on the line,[9] but possesses about 100 scales. The scales covering the body and parts of the operculum, cheek, pectoral fins, pelvic fins, and caudal fins are ctenoid in shape. The species has 24 vertebrae.[12]

The colour of the fish is possibly the easiest way to identify the rainbow runner, with the name taken from the species' striking colours. The upper body is a dark olive blue to green and fades to white underneath. Two narrow, light blue to bluish white stripes run longitudinally along the sides, with a broader olive to yellow stripe between them.[13] The maximum length of the species is somewhat contentious, with most sources giving a known maximum length between 107 and 120 cm (42 and 47 in) cm,[9][10][12] while one source asserts the species reaches 180 cm (71 in) in length.[14] The maximum known weight is confidently known to be 46.2 kg, as recorded by the International Game Fish Association.[2]

Distribution and habitat edit

The rainbow runner has a circumtropical distribution, inhabiting tropical and some subtropical waters worldwide. In the Western Atlantic, the species occurs from Massachusetts and Bermuda to northeastern Brazil, including the northern and southern Gulf of Mexico, the Bahamas, and the Greater and Lesser Antilles,[12] extending east to at least the Azores.[15] The species is widespread throughout the Pacific Ocean, but appears to be slightly less abundant in parts of the Indian Ocean, and rare or absent in the Persian Gulf.[16] The species is an occasional visitor to the Mediterranean Sea, generally as a Lessepsian immigrant through the Suez Canal, but has not taken up permanent residence like other species.[17] The species also inhabits the nearby Canary Islands, possibly entering the Mediterranean from the east, also.[18]

The species is primarily pelagic, inhabiting the upper 164 m of the water column,[19] sometimes close to land over rock and coral reef systems, as well as far offshore. The species occasionally comes quite close to shore, known to inhabits lagoons for short periods,[20] and juveniles have even been reported in a Taiwanese estuary system.[21] Rainbow runners, like other carangids such as yellowtail kingfish, are easily attracted to special fish-attracting devices (FADs), floating buoy-type structures. The species has been shown to occupy a water zone outside of the FADs up to 12 m deep and 10 m wide, treating them as if they were stationary objects.[22]

Biology edit

The species often forms schools of variable sizes ranging from a few individuals to several hundred. The species is also highly migratory, and biochemical studies on the species have shown that the muscles contain unusually high levels of the fatty acid docosahexaenoic acid, probably because the muscle is low in lipids due to their accumulation in other organs. Other migratory fishes such as tuna also have this adaptation, suggesting it is a convergent trait.[23]

Diet edit

Rainbow runners are fast-swimming carnivores that take a wide range of prey, including a wide variety of small fishes, cephalopods,[10] and pelagic or planktonic crustaceans, including, shrimp and crabs.[24] The species shows selectivity of its prey, with fish in the Pacific Ocean taking higher numbers of Decapterus macarellus, a small fish, than any other prey available. Rainbow runners may increase their swimming and prey-searching abilities rapidly with their growth, becoming more efficient at finding their preferred prey items.[25] Rainbow runners are also one of a number of pelagic fishes that prey on open-ocean species of sea-skaters (Halobates spp.), a type of insects which rest on the surface of the ocean.[26] Rainbow runner themselves are important prey items for a number of larger species, with positively identified predators being Fraser's dolphin (Lagenodelphis hosei),[27] and a number of seabirds of the family Laridae.[2]

Reproduction edit

The size at sexual maturity is only confidently known for the female of the species, being around 600 mm in fork length,[25] although the male has been estimated to reach maturity between 600 and 650 mm.[28] In the Atlantic, the species is known to spawn from spring through to early autumn,[29] although fish living in waters greater than 27 °C spawn year round. However, even when year-round spawning occurs, seasonal peaks are seen, with fish in the Western Pacific Ocean showing these peaks in May and in December–January.[25] The fish is oviparous, producing pelagic eggs and larvae. The larval stages have been studied in detail, with the diagnostic features of the larvae include a supraoccupital crest and distinctive patterns of pigment and melanophores.[30] The growth of the fish has also been studied, with the size of fish at 1, 2, 3, 4, and 5 years of age are estimated to be 30, 46, 59, 69, and 77 cm in length, respectively.[28] The migration pattern of juveniles is poorly known, with only a migration from equatorial spawning grounds to the coasts of Japan recorded,[28] often floating in the currents under large mats of Sargassum.[31]

Importance to humans edit

 
Rainbow runner taken on a saltwater fly, Bermuda

Rainbow runners are not a major commercial species like tuna or herring, but are taken in large quantities as bycatch. Their flesh is said to be of fair to excellent standard, depending on personal preferences, but generally fetch a low price at markets because they are relatively unknown.[32] Archaeological evidence from the Kapingamarangi and Nukuoro Atolls in the Caroline Islands of Micronesia suggests the prehistoric people of these islands caught large numbers of rainbow runner as food, thought to have been captured by 'trolling' lure hooks from canoes.[33]

Commercial fishery edit

The rainbow runner is rarely targeted as a commercial fish, but many of the species often turn up as bycatch from tuna and shark fisheries,[34] with the bycatch from the West Indian Tuna Fishery alone totaling 720–1877 t between 1985 and 1994.[35] In recent years, this figure has increased, with global catches as estimated by the FAO peaking at 18,940 t per year in 1998 before declining to around 15,000 t per year in 2000/01.[2] This bycatch is nearly always kept and sold at market, either fresh, salted, or frozen.[10] The methods used to take most rainbow runner are purse seines, as well as hook and line techniques and other native fishing methods.[36] At least one case of ciguatera poisoning has been reported from this species on the Virgin Islands.[2]

Recreational fishery edit

A minor recreational fishery exists for rainbow runner in parts of the world. Often, they are taken while trolling for other species such as tuna and mackerel, but are often targeted inshore by anglers on the west coast of the Americas using surface popper-style lures.[37] The fish are caught on a wide variety of lures and baits, with deep-diving lures, surface lures, and even saltwater flies[38] used to good measure. The species takes a wide variety of baits, including live and cut fish, squid, octopus, and probably other crustaceans resembling their natural food.[39] They are renowned as gamefish, especially at larger sizes.[2] The species is also commonly used as bait, either as live bait or dead bait rigged to be trolled behind game boats for larger species such as billfish and tuna.[40]

References edit

  1. ^ Smith-Vaniz, W.F.; Williams, J.T.; Pina Amargos, F.; Curtis, M.; Brown, J. (2015). "Elagatis bipinnulata". IUCN Red List of Threatened Species. 2015: e.T16440027A16510157. doi:10.2305/IUCN.UK.2015-4.RLTS.T16440027A16510157.en. Retrieved 19 November 2021.
  2. ^ a b c d e f g Froese, Rainer; Pauly, Daniel (eds.) (2019). Elagatis &speciesname=bipinnulata" Elagatis bipinnulata " in FishBase. August 2019 version.
  3. ^ "Elagatis bipinnulata". Integrated Taxonomic Information System. Retrieved 16 November 2007.
  4. ^ a b Hosese, D.F.; Bray, D.J.; Paxton, J.R.; Alen, G.R. (2007). Zoological Catalogue of Australia Vol. 35 (2) Fishes. Sydney: CSIRO. p. 1150. ISBN 978-0-643-09334-8.
  5. ^ Gray, John Edward (1852). List of the Specimens of British Animals in the Collection of the British Museum: Part VII - Lepidoptera. London: British Museum of Natural History. pp. 24–25.
  6. ^ Meek, Seth E.; Bollman, Charles H. (1889). "Note on Elagatis bipinnulatus". Proceedings of the Academy of Natural Sciences of Philadelphia. Academy of Natural Sciences. 41: 42–44.
  7. ^ Lin, Pai-Lei; Shao, Kwang-Tsao (May 19, 1999). "A Review of the Carangid Fishes (Family Carangidae) From Taiwan with Descriptions of Four New Records". Zoological Studies. 38 (1): 33–68. Retrieved 2007-11-15.
  8. ^ Reed, David L.; Carpenter, Kent E.; deGravelle, Martin J. (2002). "Molecular systematics of the Jacks (Perciformes: Carangidae) based on mitochondrial cytochrome b sequences using parsimony, likelihood, and Bayesian approaches". Molecular Phylogenetics and Evolution. 23 (3): 513–524. doi:10.1016/S1055-7903(02)00036-2. PMID 12099802.
  9. ^ a b c Gunn, John S. (1990). "A revision of selected genera of the family Carangidae (Pisces) from Australian waters". Records of the Australian Museum Supplement. 12: 1–78. doi:10.3853/j.0812-7387.12.1990.92.
  10. ^ a b c d Carpenter, Kent E. (2001). Niem, Volker H. (ed.). FAO species identification guide for fishery purposes. The living marine resources of the Western Central Pacific. Volume 5. Bony fishes part 3 (Menidae to Pomacentridae) (PDF). Rome: FAO. p. 2684. ISBN 978-92-5-104587-9.
  11. ^ a b Berry, Frederick H. (1969). "Elagatis bipinnulata (Pisces: Carangidae): Morphology of the Fins and Other Characters". Copeia. 1969 (3): 454–463. doi:10.2307/1441924. JSTOR 1441924.
  12. ^ a b c d McEachran, John D.; Fechhelm, Janice D. (1998). Fishes of the Gulf of Mexico: Myxiniformes to Gasterosteiformes. Austin: University of Texas Press. p. 285. ISBN 978-0-292-75206-1.
  13. ^ Randall, John E. (1995). Coastal Fishes of Oman. Honolulu: University of Hawaii Press. p. 183. ISBN 978-0-8248-1808-1.
  14. ^ Claro, R. (1994). R. Claro - Ecología de los peces marinos de Cuba (ed.). Características generales de la ictiofauna. Instituto de Oceanología Academia de Ciencias de Cuba and Centro de Investigaciones de Quintana Roo.
  15. ^ Azevedo, Jose Manuel; Heemstra, Phillip C. (1995). "New records of marine fishes from the Azores". Arquipélago – Life and Marine Sciences. 13A: 1–10.
  16. ^ Burayya, N.; Suryanarayana, Y.V.S. (1998). "On the rare occurrence of Elagatis bipinnulata off Kakinada coast". Indian Council of Agricultural Research Marine Fisheries Information Service Technical and Extension Series. 156: 21–22.
  17. ^ Tortonese, Enrico (1964). "The Main Biogeographical Features and Problems of the Mediterranean Fish Fauna". Copeia. 1964 (1): 98–107. doi:10.2307/1440837. JSTOR 1440837.
  18. ^ Wirtz, Peter (1996). "New fishes from the Canary Islands". DATZ. 49 (2): 78–80.
  19. ^ Schwartz, Frank J. (2004). "Biological features of five poorly known carangid fishes frequenting inland and ocean waters of North Carolina". Journal of the North Carolina Academy of Science. 120 (3): 99–105.
  20. ^ Leis, J.M; Carson-Ewart, B.M. (2001). "Behaviour of pelagic larvae of four coral-reef fish species in the ocean and an atoll lagoon". Coral Reefs. 19 (3): 247–257. doi:10.1007/s003380000115. S2CID 1967946.
  21. ^ Tzeng1, Wann-Nian; Wang, Yu-Tzu (1992). "Structure, composition and seasonal dynamics of the larval and juvenile fish community in the mangrove estuary of Tanshui River, Taiwan" (PDF). Marine Biology. 113 (3): 481–490. doi:10.1007/BF00349175. S2CID 86626781.{{cite journal}}: CS1 maint: numeric names: authors list (link)
  22. ^ Chen, S.R. (1989). "Study on Aggregation Effect of Artificial Floating Fish Reef". Journal of the Fisheries Society of Taiwan. 16 (1): 29–46.
  23. ^ Saito, H.; Yamashiro, R.; Ishihara, K; Xue, C. (1999). . Bioscience, Biotechnology, and Biochemistry. 63 (11): 2028–2030. doi:10.1271/bbb.63.2028. Archived from the original on 2007-11-20. Retrieved 2007-11-15.
  24. ^ Hiatt, Robert W.; Strasburg, Donald W. (1960). "Ecological Relationships of the Fish Fauna on Coral Reefs of the Marshall Islands". Ecological Monographs. 30 (1): 65–127. doi:10.2307/1942181. JSTOR 1942181.
  25. ^ a b c Yukinobu, Iwasaki (1998). "Maturity and feeding habits of rainbow-runner, Elagatis bipinnulatus, in the western Pacific Ocean". Journal of the School of Marine Science and Technology Tokai University. 46: 33–40.
  26. ^ Senta, T.; Kimura, M.; Kanbara, T. (1993). "Predation of fishes on open-ocean species of sea-skaters (Halobates spp.)". Japanese Journal of Ichthyology. 40 (2): 193–198.
  27. ^ Watkins, William A.; Daher, M.A.; Fristrup, K.; Notarbartolo Di Sciara, G. (1994). "Fishing and Acoustic Behavior of Fraser's Dolphin (Lagenodelphis hosei) near Dominica, Southeast Caribbean". Caribbean Journal of Science. 30 (1–2): 76–82.
  28. ^ a b c Iwasaki, Y. (1991). "Distribution and Size Composition of the Rainbow Runner, Elagatis Bipinnulata in the Western Pacific Ocean". Journal of the School of Marine Science and Technology Tokai University. 32: 137–145.
  29. ^ Gutirrez; Orozco, M.V. (1986). "Distribution and Abundance of the Larvae of the Family Carangidae in Cuban Waters". Poeyana Instituto de Zoologia Academia de Ciencias de Cuba. 324: 1–27.
  30. ^ Richards, William (2006). Early Stages Of Atlantic Fishes: An Identification Guide For The Western Central North Atlantic. CRC Press. p. 1474. ISBN 978-0-8493-1916-7.
  31. ^ Moser, Mary L.; Auster, Peter J.; Bichy, John B. (1998). "Effects of mat morphology on large Sargassum-associated fishes: observations from a remotely operated vehicle (ROV) and free-floating video camcorders". Environmental Biology of Fishes. 51 (4): 378–1909. doi:10.1023/A:1007493412854. S2CID 25225466.
  32. ^ Davidson, Alan (2004). Seafood of South-East Asia: A Comprehensive Guide with Recipes. Ten Speed Press. p. 63. ISBN 978-1-58008-452-9.
  33. ^ Leach, B.F.; J.M. Davidson (1988). "The Quest for Rainbow Runner Prehistoric Fishing on the Kapingamarangi and Nukuoro Atolls; Micronesia, Pacific Ocean". Micronesica. 21 (1–2): 1–22.
  34. ^ Carlson, John K.; Baremore, Ivy E. (December 2003). The Directed Shark Gillnet Fishery: Catch and Bycatch, 2003. Panama City: National Marine Fisheries Service Southeast Fisheries Science Center. p. 6.
  35. ^ Romanov, Evgeny V. (2002). "Bycatch in the tuna purse-seine fisheries of the western Indian Ocean" (PDF). Fishery Bulletin. 100 (1): 90–105.
  36. ^ Tanaka, T. (1989). "Shift of the Fishing Ground and Features of Shoals Caught by Purse seine Fishery in the Tropical Seines of the west Pacific Ocean". Bulletin of Tohoku National Fisheries Research Institute. 51: 77–88.
  37. ^ Ristori, Al (2002). Complete Guide to Saltwater Fishing. Woods N' Water, Inc. p. 59. ISBN 978-0-9707493-5-2.
  38. ^ Bannerot, Scott; Wendy Bannerot (2003). The Cruiser's Handbook of Fishing. McGraw-Hill Professional. p. 6. ISBN 978-0-07-142788-3.
  39. ^ Sakamoto, Michael R. (1985). Pacific Shore Fishing. University of Hawaii Press. pp. 229–230. ISBN 978-0-8248-0892-1.
  40. ^ Starling, S. (1988). The Australian Fishing Book. Hong Kong: Bacragas Pty. Ltd. p. 490. ISBN 978-0-7301-0141-3.

External links edit

  • Pictures at MexFish.com
  • Photos of Rainbow runner on Sealife Collection

rainbow, runner, rainbow, runner, elagatis, bipinnulata, also, known, rainbow, yellowtail, spanish, jack, hawaiian, salmon, common, species, pelagic, marine, fish, jack, family, carangidae, species, widespread, throughout, tropical, subtropical, waters, world,. The rainbow runner Elagatis bipinnulata also known as the rainbow yellowtail Spanish jack and Hawaiian salmon is a common species of pelagic marine fish of the jack family Carangidae The species is widespread throughout the tropical and subtropical waters of the world inhabiting both coastal and offshore areas The species is the only member of the genus Elagatis which was created 15 years after its initial description and is closely related to the amberjacks The rainbow runner is easily distinguished by its body shape and the brilliant colouration which gives the fish its name It is a fast swimming predator taking small fish cephalopods and a wide variety of planktonic crustaceans The species reaches sexual maturity around 60 cm 24 in and spawning takes place at different times with some populations spawning year round while others only spawn at certain times of the year The species is a well known game fish taken by a variety of fishing methods and is a well regarded table fish Large numbers of the species are taken as bycatch in tuna and shark fishing operations and marketed Rainbow runnerConservation statusLeast Concern IUCN 3 1 1 Scientific classificationDomain EukaryotaKingdom AnimaliaPhylum ChordataClass ActinopterygiiOrder CarangiformesFamily CarangidaeSubfamily NaucratinaeGenus ElagatisF D Bennett 1840Species E bipinnulataBinomial nameElagatis bipinnulata Quoy amp Gaimard 1825 Approximate range of the rainbow runnerSynonyms 2 Seriola bipinnulata Quoy and Gaimard 1825 Seriolichthys bipinnulatus Quoy and Gaimard 1825 Micropteryx bipinnulatus Quoy and Gaimard 1825 Elagatis bipinnulatus Quoy and Gaimard 1825 Irex indicus Valenciennes 1862 Contents 1 Taxonomy and naming 2 Description 3 Distribution and habitat 4 Biology 4 1 Diet 4 2 Reproduction 5 Importance to humans 5 1 Commercial fishery 5 2 Recreational fishery 6 References 7 External linksTaxonomy and naming editThe rainbow runner is the only species in the monotypic genus Elagatis which is one of 30 genera in the jack family the Carangidae The Carangidae are perciform fishes in the suborder Percoidei 3 The species was first scientifically described in 1825 by French zoologists Jean Rene Constant Quoy and Joseph Paul Gaimard based on the type specimen collected from the Indian Ocean somewhere in the Malay Archipelago They named the species Seriola bipinnulata believing the species was related to the amberjacks 4 This was later revised to the genus Seriolichthys by Bleeker before the species was found to warrant a new genus The genus Micropteryx was initially created but was already in use in the Lepidoptera 5 In 1840 Frederick Debell Bennett created the genus Elagatis taken from a name published in a whaling voyage memoir 6 which he used in combination with the specific name bipinnulatus which was deemed to be incorrect as the genus name is feminine and the original spelling of bipinnulata was reinstated 7 Phylogenetically the species is most closely related to the amberjack genus Seriola being the most basal member identified of the carangid tribe Naucratini This has been determined by the sequencing of the mitochondrial cytochrome b genome as well as older morphological studies 8 The species wide range has led to a wide array of local common names with the most common English name being rainbow runner in reference to its colouring Other names frequently applied include rainbow yellowtail 4 Hawaiian salmon salmon incorrectly Spanish jack salmon del alto Cuba and over 20 other names in various languages 2 Description edit nbsp A school of rainbow runnersThe rainbow runner s body is atypical of the jack family which generally have deep compressed bodies 9 The rainbow runner has a subcylindrical elongated to almost fusiform body with a long pointed head and snout and a tapering rear end before the caudal fin emerges The eyes are relatively small and the teeth are arranged on jaws in villiform bands with minute teeth also present on the roof of the mouth and tongue 10 The fish has two dorsal fins although the posterior rays of the long second fin have separated into a finlet The first dorsal consists of six spines the second of a single spine and 25 to 30 soft rays with the last two as a separate finlet About 4 of rainbow runners have only five spines in the first dorsal fin and are apparently born without them 11 The anal fin consists of one spine detached from the fin anteriorally while the main fin has a single spine and 18 to 22 soft rays with the last two detached to form a finlet like the dorsal fin 12 The dorsal and anal fins are quite low and the dorsal fin is much longer than the anal The pectoral fin is small for a carangid about the length of the pelvic fin and is not falcate with 20 rays The pelvic fin consists of one spine and five branched soft rays The caudal fin is also highly diagnostic being deeply forked and consisting of 17 caudal rays 9 dorsally and 8 ventrally 11 The lateral line has a slight anterior arch and no scutes are present on the line 9 but possesses about 100 scales The scales covering the body and parts of the operculum cheek pectoral fins pelvic fins and caudal fins are ctenoid in shape The species has 24 vertebrae 12 The colour of the fish is possibly the easiest way to identify the rainbow runner with the name taken from the species striking colours The upper body is a dark olive blue to green and fades to white underneath Two narrow light blue to bluish white stripes run longitudinally along the sides with a broader olive to yellow stripe between them 13 The maximum length of the species is somewhat contentious with most sources giving a known maximum length between 107 and 120 cm 42 and 47 in cm 9 10 12 while one source asserts the species reaches 180 cm 71 in in length 14 The maximum known weight is confidently known to be 46 2 kg as recorded by the International Game Fish Association 2 Distribution and habitat editThe rainbow runner has a circumtropical distribution inhabiting tropical and some subtropical waters worldwide In the Western Atlantic the species occurs from Massachusetts and Bermuda to northeastern Brazil including the northern and southern Gulf of Mexico the Bahamas and the Greater and Lesser Antilles 12 extending east to at least the Azores 15 The species is widespread throughout the Pacific Ocean but appears to be slightly less abundant in parts of the Indian Ocean and rare or absent in the Persian Gulf 16 The species is an occasional visitor to the Mediterranean Sea generally as a Lessepsian immigrant through the Suez Canal but has not taken up permanent residence like other species 17 The species also inhabits the nearby Canary Islands possibly entering the Mediterranean from the east also 18 The species is primarily pelagic inhabiting the upper 164 m of the water column 19 sometimes close to land over rock and coral reef systems as well as far offshore The species occasionally comes quite close to shore known to inhabits lagoons for short periods 20 and juveniles have even been reported in a Taiwanese estuary system 21 Rainbow runners like other carangids such as yellowtail kingfish are easily attracted to special fish attracting devices FADs floating buoy type structures The species has been shown to occupy a water zone outside of the FADs up to 12 m deep and 10 m wide treating them as if they were stationary objects 22 Biology editThe species often forms schools of variable sizes ranging from a few individuals to several hundred The species is also highly migratory and biochemical studies on the species have shown that the muscles contain unusually high levels of the fatty acid docosahexaenoic acid probably because the muscle is low in lipids due to their accumulation in other organs Other migratory fishes such as tuna also have this adaptation suggesting it is a convergent trait 23 Diet edit Rainbow runners are fast swimming carnivores that take a wide range of prey including a wide variety of small fishes cephalopods 10 and pelagic or planktonic crustaceans including shrimp and crabs 24 The species shows selectivity of its prey with fish in the Pacific Ocean taking higher numbers of Decapterus macarellus a small fish than any other prey available Rainbow runners may increase their swimming and prey searching abilities rapidly with their growth becoming more efficient at finding their preferred prey items 25 Rainbow runners are also one of a number of pelagic fishes that prey on open ocean species of sea skaters Halobates spp a type of insects which rest on the surface of the ocean 26 Rainbow runner themselves are important prey items for a number of larger species with positively identified predators being Fraser s dolphin Lagenodelphis hosei 27 and a number of seabirds of the family Laridae 2 Reproduction edit The size at sexual maturity is only confidently known for the female of the species being around 600 mm in fork length 25 although the male has been estimated to reach maturity between 600 and 650 mm 28 In the Atlantic the species is known to spawn from spring through to early autumn 29 although fish living in waters greater than 27 C spawn year round However even when year round spawning occurs seasonal peaks are seen with fish in the Western Pacific Ocean showing these peaks in May and in December January 25 The fish is oviparous producing pelagic eggs and larvae The larval stages have been studied in detail with the diagnostic features of the larvae include a supraoccupital crest and distinctive patterns of pigment and melanophores 30 The growth of the fish has also been studied with the size of fish at 1 2 3 4 and 5 years of age are estimated to be 30 46 59 69 and 77 cm in length respectively 28 The migration pattern of juveniles is poorly known with only a migration from equatorial spawning grounds to the coasts of Japan recorded 28 often floating in the currents under large mats of Sargassum 31 Importance to humans edit nbsp Rainbow runner taken on a saltwater fly BermudaRainbow runners are not a major commercial species like tuna or herring but are taken in large quantities as bycatch Their flesh is said to be of fair to excellent standard depending on personal preferences but generally fetch a low price at markets because they are relatively unknown 32 Archaeological evidence from the Kapingamarangi and Nukuoro Atolls in the Caroline Islands of Micronesia suggests the prehistoric people of these islands caught large numbers of rainbow runner as food thought to have been captured by trolling lure hooks from canoes 33 Commercial fishery edit The rainbow runner is rarely targeted as a commercial fish but many of the species often turn up as bycatch from tuna and shark fisheries 34 with the bycatch from the West Indian Tuna Fishery alone totaling 720 1877 t between 1985 and 1994 35 In recent years this figure has increased with global catches as estimated by the FAO peaking at 18 940 t per year in 1998 before declining to around 15 000 t per year in 2000 01 2 This bycatch is nearly always kept and sold at market either fresh salted or frozen 10 The methods used to take most rainbow runner are purse seines as well as hook and line techniques and other native fishing methods 36 At least one case of ciguatera poisoning has been reported from this species on the Virgin Islands 2 Recreational fishery edit A minor recreational fishery exists for rainbow runner in parts of the world Often they are taken while trolling for other species such as tuna and mackerel but are often targeted inshore by anglers on the west coast of the Americas using surface popper style lures 37 The fish are caught on a wide variety of lures and baits with deep diving lures surface lures and even saltwater flies 38 used to good measure The species takes a wide variety of baits including live and cut fish squid octopus and probably other crustaceans resembling their natural food 39 They are renowned as gamefish especially at larger sizes 2 The species is also commonly used as bait either as live bait or dead bait rigged to be trolled behind game boats for larger species such as billfish and tuna 40 References edit Smith Vaniz W F Williams J T Pina Amargos F Curtis M Brown J 2015 Elagatis bipinnulata IUCN Red List of Threatened Species 2015 e T16440027A16510157 doi 10 2305 IUCN UK 2015 4 RLTS T16440027A16510157 en Retrieved 19 November 2021 a b c d e f g Froese Rainer Pauly Daniel eds 2019 Elagatis amp speciesname bipinnulata Elagatis bipinnulata in FishBase August 2019 version Elagatis bipinnulata Integrated Taxonomic Information System Retrieved 16 November 2007 a b Hosese D F Bray D J Paxton J R Alen G R 2007 Zoological Catalogue of Australia Vol 35 2 Fishes Sydney CSIRO p 1150 ISBN 978 0 643 09334 8 Gray John Edward 1852 List of the Specimens of British Animals in the Collection of the British Museum Part VII Lepidoptera London British Museum of Natural History pp 24 25 Meek Seth E Bollman Charles H 1889 Note on Elagatis bipinnulatus Proceedings of the Academy of Natural Sciences of Philadelphia Academy of Natural Sciences 41 42 44 Lin Pai Lei Shao Kwang Tsao May 19 1999 A Review of the Carangid Fishes Family Carangidae From Taiwan with Descriptions of Four New Records Zoological Studies 38 1 33 68 Retrieved 2007 11 15 Reed David L Carpenter Kent E deGravelle Martin J 2002 Molecular systematics of the Jacks Perciformes Carangidae based on mitochondrial cytochrome b sequences using parsimony likelihood and Bayesian approaches Molecular Phylogenetics and Evolution 23 3 513 524 doi 10 1016 S1055 7903 02 00036 2 PMID 12099802 a b c Gunn John S 1990 A revision of selected genera of the family Carangidae Pisces from Australian waters Records of the Australian Museum Supplement 12 1 78 doi 10 3853 j 0812 7387 12 1990 92 a b c d Carpenter Kent E 2001 Niem Volker H ed FAO species identification guide for fishery purposes The living marine resources of the Western Central Pacific Volume 5 Bony fishes part 3 Menidae to Pomacentridae PDF Rome FAO p 2684 ISBN 978 92 5 104587 9 a b Berry Frederick H 1969 Elagatis bipinnulata Pisces Carangidae Morphology of the Fins and Other Characters Copeia 1969 3 454 463 doi 10 2307 1441924 JSTOR 1441924 a b c d McEachran John D Fechhelm Janice D 1998 Fishes of the Gulf of Mexico Myxiniformes to Gasterosteiformes Austin University of Texas Press p 285 ISBN 978 0 292 75206 1 Randall John E 1995 Coastal Fishes of Oman Honolulu University of Hawaii Press p 183 ISBN 978 0 8248 1808 1 Claro R 1994 R Claro Ecologia de los peces marinos de Cuba ed Caracteristicas generales de la ictiofauna Instituto de Oceanologia Academia de Ciencias de Cuba and Centro de Investigaciones de Quintana Roo Azevedo Jose Manuel Heemstra Phillip C 1995 New records of marine fishes from the Azores Arquipelago Life and Marine Sciences 13A 1 10 Burayya N Suryanarayana Y V S 1998 On the rare occurrence of Elagatis bipinnulata off Kakinada coast Indian Council of Agricultural Research Marine Fisheries Information Service Technical and Extension Series 156 21 22 Tortonese Enrico 1964 The Main Biogeographical Features and Problems of the Mediterranean Fish Fauna Copeia 1964 1 98 107 doi 10 2307 1440837 JSTOR 1440837 Wirtz Peter 1996 New fishes from the Canary Islands DATZ 49 2 78 80 Schwartz Frank J 2004 Biological features of five poorly known carangid fishes frequenting inland and ocean waters of North Carolina Journal of the North Carolina Academy of Science 120 3 99 105 Leis J M Carson Ewart B M 2001 Behaviour of pelagic larvae of four coral reef fish species in the ocean and an atoll lagoon Coral Reefs 19 3 247 257 doi 10 1007 s003380000115 S2CID 1967946 Tzeng1 Wann Nian Wang Yu Tzu 1992 Structure composition and seasonal dynamics of the larval and juvenile fish community in the mangrove estuary of Tanshui River Taiwan PDF Marine Biology 113 3 481 490 doi 10 1007 BF00349175 S2CID 86626781 a href Template Cite journal html title Template Cite journal cite journal a CS1 maint numeric names authors list link Chen S R 1989 Study on Aggregation Effect of Artificial Floating Fish Reef Journal of the Fisheries Society of Taiwan 16 1 29 46 Saito H Yamashiro R Ishihara K Xue C 1999 Lipids of three highly migratory fishes Euthynnus affinis Sarda orientalis and Elagatis bipinnulata Bioscience Biotechnology and Biochemistry 63 11 2028 2030 doi 10 1271 bbb 63 2028 Archived from the original on 2007 11 20 Retrieved 2007 11 15 Hiatt Robert W Strasburg Donald W 1960 Ecological Relationships of the Fish Fauna on Coral Reefs of the Marshall Islands Ecological Monographs 30 1 65 127 doi 10 2307 1942181 JSTOR 1942181 a b c Yukinobu Iwasaki 1998 Maturity and feeding habits of rainbow runner Elagatis bipinnulatus in the western Pacific Ocean Journal of the School of Marine Science and Technology Tokai University 46 33 40 Senta T Kimura M Kanbara T 1993 Predation of fishes on open ocean species of sea skaters Halobates spp Japanese Journal of Ichthyology 40 2 193 198 Watkins William A Daher M A Fristrup K Notarbartolo Di Sciara G 1994 Fishing and Acoustic Behavior of Fraser s Dolphin Lagenodelphis hosei near Dominica Southeast Caribbean Caribbean Journal of Science 30 1 2 76 82 a b c Iwasaki Y 1991 Distribution and Size Composition of the Rainbow Runner Elagatis Bipinnulata in the Western Pacific Ocean Journal of the School of Marine Science and Technology Tokai University 32 137 145 Gutirrez Orozco M V 1986 Distribution and Abundance of the Larvae of the Family Carangidae in Cuban Waters Poeyana Instituto de Zoologia Academia de Ciencias de Cuba 324 1 27 Richards William 2006 Early Stages Of Atlantic Fishes An Identification Guide For The Western Central North Atlantic CRC Press p 1474 ISBN 978 0 8493 1916 7 Moser Mary L Auster Peter J Bichy John B 1998 Effects of mat morphology on large Sargassum associated fishes observations from a remotely operated vehicle ROV and free floating video camcorders Environmental Biology of Fishes 51 4 378 1909 doi 10 1023 A 1007493412854 S2CID 25225466 Davidson Alan 2004 Seafood of South East Asia A Comprehensive Guide with Recipes Ten Speed Press p 63 ISBN 978 1 58008 452 9 Leach B F J M Davidson 1988 The Quest for Rainbow Runner Prehistoric Fishing on the Kapingamarangi and Nukuoro Atolls Micronesia Pacific Ocean Micronesica 21 1 2 1 22 Carlson John K Baremore Ivy E December 2003 The Directed Shark Gillnet Fishery Catch and Bycatch 2003 Panama City National Marine Fisheries Service Southeast Fisheries Science Center p 6 Romanov Evgeny V 2002 Bycatch in the tuna purse seine fisheries of the western Indian Ocean PDF Fishery Bulletin 100 1 90 105 Tanaka T 1989 Shift of the Fishing Ground and Features of Shoals Caught by Purse seine Fishery in the Tropical Seines of the west Pacific Ocean Bulletin of Tohoku National Fisheries Research Institute 51 77 88 Ristori Al 2002 Complete Guide to Saltwater Fishing Woods N Water Inc p 59 ISBN 978 0 9707493 5 2 Bannerot Scott Wendy Bannerot 2003 The Cruiser s Handbook of Fishing McGraw Hill Professional p 6 ISBN 978 0 07 142788 3 Sakamoto Michael R 1985 Pacific Shore Fishing University of Hawaii Press pp 229 230 ISBN 978 0 8248 0892 1 Starling S 1988 The Australian Fishing Book Hong Kong Bacragas Pty Ltd p 490 ISBN 978 0 7301 0141 3 External links edit nbsp Wikimedia Commons has media related to Elagatis bipinnulata Australian Museum info sheet Pictures at MexFish com Angling techniques Photos of Rainbow runner on Sealife Collection nbsp Fish portal nbsp marine biology portal nbsp marine life portal Retrieved from https en wikipedia org w index php title Rainbow runner amp oldid 1170045780, wikipedia, wiki, book, books, library,

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