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Analysis of sailfish (Istiophorus platypterus) population structure in the North Pacific Ocean

Fisheries Research, 2015
Abstract The global genetic population structure of sailfish is not well understood, nor has it been well characterized in any of the major ocean basins. In this study, we surveyed the pattern of genetic differentiation of sailfish in the North Pacific Ocean using 307 bp of sequence of the mtDNA control region I and five tetra-nucleotide ...
Ching-Ping Lu   +3 more
semanticscholar   +2 more sources

Age and growth of larval Atlantic sailfish, Istiophorus platypterus

Marine and Freshwater Research, 2005
Of the Atlantic istiophorid billfishes, larval age–size relationships and growth rates have been examined only for blue marlin (Makaira nigricans). Using otolith microincrement analysis, we describe age–length and age–weight relationships for larval sailfish (Istiophorus platypterus) collected from the Straits of Florida.
Stacy A. Luthy   +4 more
openaire   +1 more source

Genetic diversity and population structure of Indo-Pacific sailfish Istiophorus platypterus in the eastern Pacific

Fisheries Science, 2016
Population genetics provides information for the management and conservation of species, because it supports the delimitation of population units. A mitochondrial DNA marker was used to determine the genetic structure of the sailfish Istiophorus platypterus at four locations in Mexico (Mazatlan, Colima, Acapulco, Oaxaca) and one location in Ecuador. We
Griselma G. Rubio-Castro   +2 more
semanticscholar   +2 more sources

Istiophorus platypterus

2019
Published as part of Andréfouët, Serge, Chen, Wei-Jen, Kinch, Jeff, Mana, Ralph, Russell, Barry C., Tully, Dean & White, William T., 2019, Checklist of the marine and estuarine fishes of New Ireland Province, Papua New Guinea, western Pacific Ocean, with 810 new records, pp.
Andréfouët, Serge   +6 more
openaire   +1 more source

Age and growth of Indo-Pacific sailfish, Istiophorus platypterus, from the Arabian Gulf

Fisheries Research, 2006
Abstract Dorsal and anal fin spines were collected from 85 sailfish from the Gulf and used to estimate age from putative annular growth bands observed in thin transverse sections. A total of 84 (98.8%) of these were successfully read with an average percent error in precision of 4.8%.
Chung-Nan Tsai   +5 more
openaire   +2 more sources

Istiophorus platypterus

2014
Istiophorus platypterus (Shaw & Nodder, 1792) – Sailfish; Veleiro-do-Atlântico ①, ②③ Istiophorus albicans (Latreille, 1804) is a synonym of I. platypterus according to Collette et al. (2006).
Carneiro, Miguel   +3 more
openaire   +1 more source

Trophic size-structure of sailfish Istiophorus platypterus in eastern Taiwan estimated by stable isotope analysis.

Journal of Fish Biology, 2014
To examine trophic dynamics over different size classes, an isotopic study of sailfish Istiophorus platypterus life‐history stages was carried out. Samples were collected from eastern Taiwan and the South China Sea during April 2009 and February 2012. A total of 263 samples (111–245 cm, lower jaw fork length, LLJFL) were examined for changes in trophic
C-N Tsai   +5 more
semanticscholar   +3 more sources

Intraspecific phylogeographic isolation of Arabian Gulf sailfish Istiophorus platypterus inferred from mitochondrial DNA

Marine Biology, 2004
The genetic structure of seven sailfish Istiophorus platypterus populations sampled from three locations inside and four locations outside the Arabian Gulf was determined by restriction fragment length polymorphism analysis of mitochondrial DNA of 147 individuals using eight restriction endonucleases.
J. P. Hoolihan   +3 more
openaire   +1 more source

Sailfish (Istiophorus platypterus) spawning and larval environment in a Florida Current frontal eddy

Progress in Oceanography, 2009
Abstract Fronts and eddies are widely hypothesized to be critical spawning habitat for large pelagic fishes, due to increased larval and/or adult feeding opportunities at these features. We examined sailfish (Istiophorus platypterus) spawning around a cyclonic, submesoscale (∼13 × 7 km) Florida Current frontal eddy.
Richardson, D. E   +5 more
openaire   +2 more sources

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