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Strong Population Structure and Differentiation within and among Burrowing Bog Crayfish Species of Southern Alabama Wetlands

机译:南阿拉巴马州南部的洞穴沼泽小龙虾种群和差异化的强大人口结构和差异化

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Despite their high diversity and degree of endemism in the southeastern US, little is known about population genetic structure of most crayfishes. This is because of their cryptic morphology and elusive behavior, particularly burrowing species. We compared population genetic structure of 2 burrowing crayfish species (Creaserinus burrisiandC. byersi) from bogs in Washington, Baldwin, and Mobile counties in southern Alabama, USA. Through hand excavation of burrows, we collected individuals from 7 drainage systems, withC. byersiin the southern extent andC. burrisiin the northern extent of the study area. Based on mitochondrial cytochrome oxidase subunit I (COI) gene sequences, tests of pairwise genetic structure approached the upper limit of 1.0, showed that haplotype sharing between and within drainages was nearly non-existent. Large differentiation between and low genetic diversity both between and within drainage systems occurred for both species. Genetic structuring corresponded to subtle hydrologic features such as fine-scale drainage patterns and human development (road crossings). Our data suggest that these species have recently diverged with extremely low vagility and rare dispersal events, resulting in isolated populations. Such population uniqueness from a genetic perspective pose considerable challenges to range-wide management of these and other similar species.
机译:尽管我们在美国东南部具有高度多样性和程度的人民,但对于大多数小龙虾的人群遗传结构而言,毫无疑问。这是因为他们隐秘的形态和难以捉摸的行为,特别是挖洞。我们比较了美国南部阿拉巴马州南部的华盛顿,鲍德温和移动县的Bogs博物馆的群体遗传结构(Creaserinus Burrisiandc。Byersi)。通过手部挖掘挖掘机,我们从7个排水系统中收集了个体。南部范围和南部的历史。 Burrisiin北方学习区的范围。基于线粒体细胞色素氧化酶亚基I(COI)基因序列,对成对遗传结构的试验接近1.0的上限,显示出在排出的单倍型共享几乎不存在。两种物种发生在排水系统之间和排水系统之间的较大差异和低遗传多样性。遗传结构对应于微妙的水文特征,如微量尺度排水模式和人类发展(道路交叉口)。我们的数据表明,这些物种最近伴随着极低的迷茫和罕见的分散事件,导致分离出血。这种种群唯一性从遗传角度来说是对这些和其他类似物种的范围管理的相当大的挑战。

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