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자료유형
학술저널
저자정보
Meg C. Gravley (Alaska Science Center) George K. Sage (Alaska Science Center) Andrew M. Ramey (Alaska Science Center) Scott A. Hatch (Institute for Seabird Research and Conservation) Verena A. Gill (National Marine Fisheries Service) Jolene R. Rearick‑Whitney (Alaska Science Center) Aevar Petersen (Brautarland 2) Sandra L. Talbot (Alaska Science Center)
저널정보
한국유전학회 Genes & Genomics Genes & Genomics Vol.41 No.9
발행연도
2019.1
수록면
1,015 - 1,026 (12page)

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Background In the North Pacific, northern fulmar (Fulmarus glacialis) forms extensive colonies in few locales, which may lead to limited gene flow and locale-specific population threats. In the Atlantic, there are thousands of colonies of varying sizes and in Europe the species is considered threatened. Prior screens and classical microsatellite development in fulmar failed to provide a suite of markers adequate for population genetics studies. Objectives The objective of this study was to isolate a suite of polymorphic microsatellite loci with sufficient variability to quantify levels of gene flow, population affinity, and identify familial relationships in fulmar. We also performed a crossspecies screening of these markers in eight other species. Methods We used shotgun sequencing to isolate 26 novel microsatellite markers in fulmar to screen for variability using individuals from two distinct regions: the Pacific (Chagulak Island, Alaska) and the Atlantic (Hafnarey Island, Iceland). Results Polymorphism was present in 24 loci in Chagulak and 23 in Hafnarey, while one locus failed to amplify in either colony. Polymorphic loci exhibited moderate levels of genetic diversity and this suite of loci uncovered genetic structuring between the regions. Among the other species screened, polymorphism was present in one to seven loci. Conclusion The loci yielded sufficient variability for use in population studies and estimation of familial relationships; as few as five loci provide resolution to determine individual identity. These markers will allow further insight into the global population dynamics and phylogeography of fulmars. We also demonstrated some markers are transferable to other species.

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