首页> 外文期刊>Conservation Genetics Resources >Development of 13 microsatellites for Gunnison Sage-grouse (Centrocercus minimus) using next-generation shotgun sequencing and their utility in Greater Sage-grouse (Centrocercus urophasianus)
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Development of 13 microsatellites for Gunnison Sage-grouse (Centrocercus minimus) using next-generation shotgun sequencing and their utility in Greater Sage-grouse (Centrocercus urophasianus)

机译:使用下一代shot弹枪测序技术开发13种用于甘尼森鼠尾草(Centrocercus minimus)的微卫星及其在大鼠尾草(Centrocercus urophasianus)中的实用性

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摘要

Gunnison Sage-grouse are an obligate sagebrush species that has experienced significant population declines and has been proposed for listing under the U.S. Endangered Species Act. In order to examine levels of connectivity among Gunnison Sage-grouse leks, we identified 13 novel microsatellite loci though next-generation shotgun sequencing, and tested them on the closely related Greater Sage-grouse. The number of alleles per locus ranged from 2 to 12. No loci were found to be linked, although 2 loci revealed significant departures from Hardy-Weinberg equilibrium or evidence of null alleles. While these microsatellites were designed for Gunnison Sage-grouse, they also work well for Greater Sage-grouse and could be used for numerous genetic questions including landscape and population genetics.
机译:Gunnison鼠尾草属植物是专性的鼠尾草属物种,经历了显着的种群减少,并已根据《美国濒危物种法》提议上市。为了检查Gunnison鼠尾草韭菜韭菜之间的连通性水平,我们通过下一代shot弹枪测序鉴定了13个新的微卫星基因座,并在密切相关的Greater Sage-grouse上进行了测试。每个基因座的等位基因数量范围为2到12。虽然2个基因座显示出与Hardy-Weinberg平衡显着偏离或无效等位基因的证据,但未发现任何基因座相关。这些微卫星是专为Gunnison Sage-grouse设计的,但它们也可用于大Sage-grouse,可以用于许多遗传问题,包括景观和种群遗传学。

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