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海獭有效种群大小的测量揭示了对广泛分布物种的特殊考量。

Measures of effective population size in sea otters reveal special considerations for wide-ranging species.

作者信息

Gagne Roderick B, Tinker M Timothy, Gustafson Kyle D, Ralls Katherine, Larson Shawn, Tarjan L Max, Miller Melissa A, Ernest Holly B

机构信息

Wildlife Genomics and Disease Ecology Laboratory Department of Veterinary Sciences University of Wyoming Laramie Wyoming.

Western Ecological Research Center U.S. Geological Survey Santa Cruz California.

出版信息

Evol Appl. 2018 May 17;11(10):1779-1790. doi: 10.1111/eva.12642. eCollection 2018 Dec.

Abstract

Conservation genetic techniques and considerations of the evolutionary potential of a species are increasingly being applied to species conservation. For example, effective population size ( ) estimates are useful for determining the conservation status of species, yet accurate estimates of current remain difficult to obtain. The effective population size can contribute to setting federal delisting criteria, as was done for the southern sea otter (). After being hunted to near extinction during the North Pacific fur trade, the southern sea otter has recovered over part of its former range, but remains at relatively low numbers, making it desirable to obtain accurate and consistent estimates of . Although theoretical papers have compared the validity of several methods, comparisons of estimators using empirical data in applied conservation settings are limited. We combined thirteen years of demographic and genetic data from 1,006 sea otters to assess multiple estimators, as well as temporal trends in genetic diversity and population genetic structure. Genetic diversity was low and did not increase over time. There was no evidence for distinct genetic units, but some evidence for genetic isolation by distance. In particular, estimates of based on demographic data were much larger than genetic estimates when computed for the entire range of the population, but were similar at smaller spatial scales. The discrepancy between estimates at large spatial scales could be driven by cryptic population structure and/or individual differences in reproductive success. We recommend the development of new delisting criteria for the southern sea otter. We advise the use of multiple estimates of for other wide-ranging species, species with overlapping generations, or with sex-biased dispersal, as well as the development of improved metrics of genetic assessments of populations.

摘要

保护遗传学技术以及对物种进化潜力的考量正越来越多地应用于物种保护。例如,有效种群大小( )估计对于确定物种的保护状况很有用,但目前准确估计 仍然很难获得。有效种群大小有助于设定联邦除名标准,就像对南海獭( )所做的那样。在北太平洋毛皮贸易期间被猎杀至近乎灭绝后,南海獭在其部分先前分布范围内有所恢复,但数量仍然相对较少,因此需要获得准确且一致的 估计值。尽管理论论文比较了几种方法的有效性,但在应用保护环境中使用经验数据对估计器进行比较的情况有限。我们结合了来自1006只海獭的13年人口统计学和遗传学数据,以评估多种 估计器,以及遗传多样性和种群遗传结构的时间趋势。遗传多样性较低且未随时间增加。没有证据表明存在明显的遗传单元,但有一些距离隔离遗传的证据。特别是,当针对整个种群范围计算时,基于人口统计学数据的 估计值比遗传估计值大得多,但在较小空间尺度上相似。大空间尺度估计值之间的差异可能是由隐秘的种群结构和/或繁殖成功率的个体差异驱动的。我们建议为南海獭制定新的除名标准。我们建议对其他分布广泛的物种、具有重叠世代的物种或具有性别偏向扩散的物种使用多种 估计值,以及开发改进的种群遗传评估指标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e874/6231473/c31dd3cf84c6/EVA-11-1779-g001.jpg

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