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首页> 外文期刊>The Journal of Heredity >Genome-Wide Assessment of Diversity and Divergence Among Extant Galapagos Giant Tortoise Species
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Genome-Wide Assessment of Diversity and Divergence Among Extant Galapagos Giant Tortoise Species

机译:基因组对现存加拉帕戈斯巨型乌龟物种之间多样性和分歧的评估

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Genome-wide assessments allow for fuller characterization of genetic diversity, finer-scale population delineation, and better detection of demographically significant units to guide conservation compared with those based on "traditional" markers. Galapagos giant tortoises (Chelonoidis spp.) have long provided a case study for how evolutionary genetics may be applied to advance species conservation. Ongoing efforts to bolster tortoise populations, which have declined by 90%, have been informed by analyses of mitochondrial DNA sequence and microsatellite genotypic data, but could benefit from genome-wide markers. Taking this next step, we used double-digest restriction-site associated DNA sequencing to collect genotypic data at 26000 single nucleotide polymorphisms (SNPs) for 117 individuals representing all recognized extant Galapagos giant tortoise species. We then quantified genetic diversity, population structure, and compared results to estimates from mitochondrial DNA and microsatellite loci. Our analyses detected 12 genetic lineages concordant with the 11 named species as well as previously described structure within one species, C. becki. Furthermore, the SNPs provided increased resolution, detecting admixture in 4 individuals. SNP-based estimates of diversity and differentiation were significantly correlated with those derived from nuclear microsatellite loci and mitochondrial DNA sequences.The SNP toolkit presented here will serve as a resource for advancing efforts to understand tortoise evolution, species radiations, and aid conservation of the Galapagos tortoise species complex.
机译:基因组评估允许遗传多样性的富含遗传分化,更精细的人口划分,以及更好地检测与基于“传统”标记的人相比引导守恒的人口统计学的单位。加拉帕戈斯巨型龟(Chelonoidis SPP。)长期以来一直在案例研究,了解进化遗传如何应用于先进物种保护。通过分析线粒体DNA序列和微卫星基因型数据,已经了解较令人下降了90%的陆上龟的努力,但可以从基因组标记中受益。在下一步中,我们使用了双摘要限制性位点相关的DNA测序来收集基因型数据AT& 117个个人的单核苷酸多态性(SNP),代表所有公认的现存加拉帕戈斯巨型乌龟物种。然后,我们量化遗传多样性,人口结构,并比较了线粒体DNA和微卫星基因座的估计。我们的分析检测到12种遗传谱系,其中11种命名物种以及先前描述的一个物种,C. Becki。此外,SNP提供了增加的分辨率,检测4个体中的混合物。基于SNP的多样性和分化估计与来自核微卫星基因座和线粒体DNA序列的那些显着相关。这里展示的SNP工具包将作为推进迫切努力了解乌龟演化,物种辐射和援助加拉帕戈斯的援助保护的资源乌龟物种复杂。

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