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遗传监测与复杂种群动态:12 年里奥格兰德银鮈研究的启示。

Genetic monitoring and complex population dynamics: insights from a 12-year study of the Rio Grande silvery minnow.

机构信息

Department of Biology and Museum of Southwestern Biology, University of New Mexico Albuquerque, New Mexico, USA.

出版信息

Evol Appl. 2012 Sep;5(6):553-74. doi: 10.1111/j.1752-4571.2011.00235.x. Epub 2012 Jan 12.

Abstract

The endangered Rio Grande silvery minnow persists as a remnant population in a highly fragmented and regulated arid-land river system. The species is subject to dramatic annual fluctuations in density. Since 2003, the wild population has been supplemented by hatchery-reared fish. We report on a 12-year (1999-2010) monitoring study of genetic diversity and effective population size (N(e)) of wild and hatchery stocks. Our goals were to evaluate how genetic metrics responded to changes in wild fish density and whether they corresponded to the number and levels of diversity of hatchery-reared repatriates. Genetic diversity and all measures of N(e) in the wild population did not correlate with wild fish density until hatchery supplementation began in earnest. Estimates of variance and inbreeding effective size were not correlated. Our results suggest source-sink dynamics where captive stocks form a genetically diverse source and the wild population behaves as a sink. Nevertheless, overall genetic diversity of silvery minnow has been maintained over the last decade, and we attribute this to a well-designed and executed propagation management plan. When multiple factors like environmental fluctuation and hatchery supplementation act simultaneously on a population, interpretation of genetic monitoring data may be equally complex and require considerable ecological data.

摘要

濒危的里奥格兰德银鮈作为一个高度破碎和受管制的干旱地区河流系统中的残余种群而存在。该物种的密度会出现剧烈的年度波动。自 2003 年以来,野生种群一直得到人工养殖鱼类的补充。我们报告了一项为期 12 年(1999-2010 年)的遗传多样性和有效种群大小(N(e))的监测研究,该研究针对野生和人工养殖种群。我们的目标是评估遗传指标如何对野生鱼类密度的变化做出反应,以及它们是否与人工养殖回捕鱼类的数量和多样性水平相对应。直到人工养殖补充开始认真进行,野生种群的遗传多样性和所有 N(e)测量值才与野生鱼类密度相关。方差和近亲繁殖有效大小的估计值不相关。我们的结果表明存在源-汇动态,其中圈养种群形成遗传多样的源,而野生种群则表现为汇。尽管如此,在过去的十年中,银鮈的整体遗传多样性得到了维持,我们将其归因于精心设计和执行的繁殖管理计划。当多个因素(如环境波动和人工养殖补充)同时作用于一个种群时,遗传监测数据的解释可能同样复杂,并需要大量的生态数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2064/3461139/5a296c7506d5/eva0005-0553-f1.jpg

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