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A key metabolic gene for recurrent freshwater colonization and radiation in fishes
JournalArticle (Originalarbeit in einer wissenschaftlichen Zeitschrift)
 
ID 4597000
Author(s) Ishikawa, Asano; Kabeya, Naoki; Ikeya, Koki; Kakioka, Ryo; Cech, Jennifer N.; Osada, Naoki; Leal, Miguel C.; Inoue, Jun; Kume, Manabu; Toyoda, Atsushi; Tezuka, Ayumi; Nagano, Atsushi J.; Yamasaki, Yo Y.; Suzuki, Yuto; Kokita, Tomoyuki; Takahashi, Hiroshi; Lucek, Kay; Marques, David; Takehana, Yusuke; Naruse, Kiyoshi; Mori, Seiichi; Monroig, Oscar; Ladd, Nemiah; Schubert, Carsten J.; Matthews, Blake; Peichel, Catherine L.; Seehausen, Ole; Yoshizaki, Goro; Kitano, Jun
Author(s) at UniBasel Lucek, Kay
Year 2019
Title A key metabolic gene for recurrent freshwater colonization and radiation in fishes
Journal Science
Volume 364
Number 6443
Pages / Article-Number 886-889
Mesh terms Adaptation, Biological, genetics; Animals; Docosahexaenoic Acids, metabolism; Fatty Acid Desaturases, genetics; Fresh Water; Gene Dosage; Gene Duplication; Seawater; Smegmamorpha, genetics, metabolism, physiology
Abstract Colonization of new ecological niches has triggered large adaptive radiations. Although some lineages have made use of such opportunities, not all do so. The factors causing this variation among lineages are largely unknown. Here, we show that deficiency in docosahexaenoic acid (DHA), an essential ω-3 fatty acid, can constrain freshwater colonization by marine fishes. Our genomic analyses revealed multiple independent duplications of the fatty acid desaturase gene; Fads2; in stickleback lineages that subsequently colonized and radiated in freshwater habitats, but not in close relatives that failed to colonize. Transgenic manipulation of; Fads2; in marine stickleback increased their ability to synthesize DHA and survive on DHA-deficient diets. Multiple freshwater ray-finned fishes also show a convergent increase in; Fads2; copies, indicating its key role in freshwater colonization.
Publisher American Association for the Advancement of Science
ISSN/ISBN 1095-9203
edoc-URL https://edoc.unibas.ch/78195/
Full Text on edoc No
Digital Object Identifier DOI 10.1126/science.aau5656
PubMed ID http://www.ncbi.nlm.nih.gov/pubmed/31147520
 
   

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19/04/2024