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首页> 外文期刊>Tropical Conservation Science >Diverging Genetic Structure of Coexisting Populations of the Black Storm-Petrel and the Least Storm-Petrel in the Gulf of California
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Diverging Genetic Structure of Coexisting Populations of the Black Storm-Petrel and the Least Storm-Petrel in the Gulf of California

机译:在加利福尼亚州海湾共存黑风中的共存群体的遗传结构和最少的暴风食

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Estimations on the influence of evolutionary and ecological forces as drivers of population gene diversity and genetic structure have been performed on a growing number of colonial seabirds, but many remain poorly studied. In particular, the population genetic structure of storm-petrels (Hydrobatidae) has been evaluated in only a few of the 24 recognized species. We assessed the genetic diversity and population structure of the Black Storm-Petrel ( Hydrobates melania) and the Least Storm-Petrel ( Hydrobates microsoma) in the Gulf of California. The two species were selected because they are pelagic seabirds with comparable ecological traits and breeding grounds. Recent threats such as introduced species of predators and human disturbance have resulted in a decline of many insular vertebrate populations in this region and affected many different aspects of their life histories (ranging from reproductive success to mate selection), with a concomitant loss of genetic diversity. To elucidate to what extent the population genetic structure occurs in H. melania and H. microsoma, we used 719 base pairs from the mitochondrial cytochrome oxidase c subunit I gene. The evaluation of their molecular diversity, genetic structure, and gene flow were performed through diversity indices, analyses of molecular and spatial variance, and isolation by distance (IBD) across sampling sites, respectively. The population genetic structure (via AMOVA and SAMOVA) and isolation by distance (pairwise p-distances and F subST/sub /1– F subST/sub (using Φ subST/sub ) were inferred for H. microsoma. However, for H. melania evidence was inconclusive. We discuss explanations leading to divergent population genetic structure signatures in these species, and the consequences for their conservation.
机译:关于进化和生态力量的影响,作为种群基因多样性和遗传结构的驱动程序的影响已经对越来越多的殖民地海鸟进行了,但许多人仍然很差。特别是,在24种公认的物种中只评估了风暴素(Hydrobatidae)的人口遗传结构。我们评估了加利福尼亚州海湾的黑风暴 - 皮质素(水肼黑素酸盐)和最少的暴风水(水性微笑)的遗传多样性和人口结构。两种物种被选中,因为它们是具有可比生态特征和繁殖场的骨质海鸟。近期威胁引入的捕食者和人类扰动等威胁导致该地区的许多姿态脊椎动物群体下降,影响了他们的生活历史的许多不同方面(从生殖成功到配偶选择),伴随着遗传多样性。为了阐明群体遗传结构在多明岩和H.微笑中发生的程度,我们使用了来自线粒体细胞色素氧化酶C亚基I基因的719碱基对。通过分集指数,分析分析分析,分析分子和空间方差分析,分别通过分别的分析分别进行评估,分别分析横跨采样位点的距离(IBD)。人口遗传结构(通过Amova和Samova)和距离分离(成对p距离和F st / 1-f st (使用φ st )被推断为H.微微瘤。然而,对于H. melania证据是不确定的。我们讨论了导致这些物种中群体遗传结构签名的解释,以及他们保护的后果。

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