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Population Structure and Genetic Diversity Within the Endangered Species Pityopsis ruthii (Asteraceae)

机译:濒临灭绝的人口结构和遗传多样性在濒临灭绝的物种猪(Asteraceae)中

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摘要

Pityopsis ruthii (Ruth’s golden aster) is a federally endangered herbaceous perennial endemic to the Hiwassee and Ocoee Rivers in southeastern Tennessee, United States. Comprehensive genetic studies providing novel information to conservationists for preservation of the species are lacking. Genetic variation and gene flow were evaluated for 814 individuals from 33 discrete locations using polymorphic microsatellites: seven chloroplast and twelve nuclear. A total of 198 alleles were detected with the nuclear loci and 79 alleles with the chloroplast loci. Gene flow was estimated, with the Hiwassee River (Nm = 2.16; FST = 0.15) showing higher levels of gene flow and lower levels of population differentiation than the Ocoee River (Nm = 1.28; FST = 0.19). Population structure was examined using Bayesian cluster analyses. Nuclear and chloroplast analyses were incongruent. From the chloroplast microsatellites, three clusters were identified; all were present in sampling sites at both rivers, indicating a lack of allele fixation along rivers. Nuclear markers revealed two clusters and separated by river. When the Hiwassee River locations were analyzed, four clusters were identified for both the chloroplast and nuclear microsatellites, though the individuals clustered differently. Analysis of the Ocoee River revealed two clusters for the chloroplast microsatellites and three for the nuclear microsatellites. We recommend P. ruthii be managed as four populations for the Hiwassee River and three populations for the Ocoee River. Our results provide critical genetic information for P. ruthii that can be used for species management decisions to drive future population augmentation/reintroduction and ex situ conservation efforts.
机译:Pityopsis Ruthii(Ruth's Golden Aster)是美国东南部的Hiwassee和Ocoee河的联邦濒危草本植物。缺乏为保护家具保护家提供新颖的遗传研究。使用多晶型微卫星从33个离散位置评价遗传变异和基因流动:7个叶绿体和十二个核。通过核基因座和79个等位基因与叶绿体基因座进行了总共198个等位基因。 Hiwassee河(NM = 2.16; FST = 0.15)估计基因流动,显示比碳橡胶(NM = 1.28; FST = 0.19)较高水平的基因流量和较低的人口分化。使用贝叶斯聚类分析检查人口结构。核和叶绿体分析是不一致的。从叶绿体微卫星中,鉴定了三种簇;所有这些都存在于两个河流的抽样网站中,表明沿河缺乏等位基因固定。核标志物揭示了两个群集并被河流分开。当分析Hiwassee河位置时,叶绿体和核微卫星的鉴定了四种簇,尽管各自聚集不同。 ocoee河流揭示了叶绿体微卫星的两种簇,三个用于核微卫星。我们建议ruthii管理为Hiwassee River的四个群体,以及ocoee河的三个群体。我们的结果为P. ​​Ruthii提供了可用于物种管理决策的关键遗传信息,以推动未来的人口增强/重新引入和前所保护努力。

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