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Genomic single-nucleotide polymorphisms confirm that Gunnison and Greater sage-grouse are genetically well differentiated and that the Bi-State population is distinct

机译:基因组单核苷酸多态性证实,冈尼森和鼠尾草在遗传上有很好的分化,并且双态种群是不同的

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ABSTRACT Sage-grouse are iconic, declining inhabitants of sagebrush habitats in western North America, and their management depends on an understanding of genetic variation across the landscape. Two distinct species of sage-grouse have been recognized, Greater (Centrocercus urophasianus) and Gunnison sage-grouse (C. minimus), based on morphology, behavior, and variation at neutral genetic markers. A parapatric group of Greater Sage-Grouse along the border of California and Nevada (“Bi-State”) is also genetically distinct at the same neutral genetic markers, yet not different in behavior or morphology. Because delineating taxonomic boundaries and defining conservation units is often difficult in recently diverged taxa and can be further complicated by highly skewed mating systems, we took advantage of new genomic methods that improve our ability to characterize genetic variation at a much finer resolution. We identified thousands of single-nucleotide polymorphisms (SNPs) among Gunnison, Greater, and Bi-Sta...
机译:摘要鼠尾草是北美西部鼠尾草栖息地的标志性,正在下降的居民,其管理取决于对整个景观遗传变异的理解。根据形态,行为和中性遗传标记的变异,已经认识到鼠尾草的两个不同种类,即大(Centrocercus urophasianus)和冈尼森的鼠尾草(C. minimus)。沿加利福尼亚州和内华达州交界的大鼠尾草属高产群体(“ Bi-State”)在相同的中性遗传标记上在遗传上也有所区别,但在行为或形态上却没有区别。因为在最近变化的分类单元中划分生物分类边界和定义保护单位通常很困难,并且由于高度倾斜的交配系统可能使分类单元进一步复杂化,所以我们利用了新的基因组方法来提高我们以更精细的分辨率表征遗传变异的能力。我们在Gunnison,Greater和Bi-Sta中鉴定了成千上万的单核苷酸多态性(SNP)...

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