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Genetics redraws pelagic biogeography ofCalanus
Author(s) -
Marvin Choquet,
Maja Hatlebakk,
Anusha K. S. Dhanasiri,
Ksenia Kosobokova,
Irina Smolina,
Janne E. Søreide,
Camilla Svensen,
Webjørn Melle,
Sławomir Kwaśniewski,
Ketil Eiane,
Malin Daase,
Vigdis Tverberg,
Stig Skreslet,
Ann Bucklin,
Galice Hoarau
Publication year - 2017
Publication title -
biology letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.596
H-Index - 110
eISSN - 1744-957X
pISSN - 1744-9561
DOI - 10.1098/rsbl.2017.0588
Subject(s) - fjord , biology , calanus finmarchicus , calanus , pelagic zone , arctic , ecology , copepod , zooplankton , biogeography , zoology , oceanography , crustacean , geology
Planktonic copepods of the genus Calanus play a central role in North Atlantic/Arctic marine food webs. Here, using molecular markers, we redrew the distributional ranges of Calanus species inhabiting the North Atlantic and Arctic Oceans and revealed much wider and more broadly overlapping distributions than previously described. The Arctic shelf species, C. glacialis , dominated the zooplankton assemblage of many Norwegian fjords, where only C. finmarchicus has been reported previously. In these fjords, high occurrences of the Arctic species C. hyperboreus were also found. Molecular markers revealed that the most common method of species identification, prosome length, cannot reliably discriminate the species in Norwegian fjords. Differences in degree of genetic differentiation among fjord populations of the two species suggested that C. glacialis is a more permanent resident of the fjords than C. finmarchicus We found no evidence of hybridization between the species. Our results indicate a critical need for the wider use of molecular markers to reliably identify and discriminate these morphologically similar copepod species, which serve as important indicators of climate responses.

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