首页> 外文期刊>Conservation Genetics >Low genetic diversity and small long-term population sizes in the spring endemic watercress darter, Etheostoma nuchale
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Low genetic diversity and small long-term population sizes in the spring endemic watercress darter, Etheostoma nuchale

机译:春季流行的西洋菜豆ter(Etheostoma nuchale)的遗传多样性低,长期种群少

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Species endemic to coldwater springs in the southeastern United States are some of the rarest and most imperiled in this region, yet little is known about their genetic composition and conservation needs. Here, microsatellite based levels of genetic diversity and estimates of effective population size (N e) were compared between a narrow spring endemic fish, Etheostoma nuchale, and its widespread stream-dwelling relative, E. swaini. We applied several analytical methods to assess how demographic history is reflected in contemporary levels of genetic diversity for populations of E. nuchale. Phylogenetic analyses based on mitochondrial and nuclear DNA sequence data revealed a complex history among E. nuchale and E. swaini, but suggested ancient divergence and historic periods of isolation since colonization of spring habitats by E. nuchale. Populations of E. nuchale have levels of genetic diversity approximately one-half that of E. swaini, a result most likely due to founder effects and recent bottlenecks. Statistically significant F st values (0.05−0.27) and STRUCTURE analyses implied high levels of differentiation among E. nuchale populations. Estimates of current N e suggest relatively consistent levels across populations of E. nuchale, but one population may suffer from habitat degradation. We suggest that high levels of population structure and low levels of genetic diversity may be typical in other spring endemics inhabiting this region. Therefore, effective management planning for these unique species will require a detailed knowledge of the genetic and demographic history of each population.
机译:美国东南部的冷泉特有物种是该地区最稀有和最受威胁的物种,但对其遗传组成和保护需求知之甚少。在这里,比较了狭窄的春季特有鱼类Etheostoma nuchale及其在河中广泛居住的亲缘种E. swaini之间基于微卫星的遗传多样性水平和有效种群大小(N e )的估计值。我们应用了几种分析方法来评估人口历史如何在当代E.nuchale种群遗传多样性水平中得到反映。基于线粒体和核DNA序列数据的系统发育分析揭示了大肠杆菌和n.swaini之间的复杂历史,但暗示了古代歧义和历史性时期,因为该物种在春季栖息地中被定居。 E. nuchale种群的遗传多样性水平约为s。swaini的一半,这一结果很可能归因于创始人的影响和最近的瓶颈。具有统计意义的F st 值(0.05−0.27)和STRUCTURE分析隐含了E.nuchale种群的高分化水平。目前对N e 的估计表明,在整个E. nuchale种群中,其水平相对一致,但其中一个种群可能会遭受栖息地退化的困扰。我们建议在该地区其他春季流行病中,典型的高种群结构和低遗传多样性可能是典型的。因此,对这些独特物种的有效管理规划将需要详细了解每个种群的遗传和人口历史。

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