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Demographic and genetic consequences of population subdivision in Formosa land-locked salmon Oncorhynchus masou formosanus, the southernmost subspecies of the salmonids

机译:福尔摩沙内陆鲑鱼Oncorhynchus masou formosanus(鲑鱼最南端的亚种)中人口细分的人口统计学和遗传后果

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摘要

A few studies have evaluated demographic and genetic consequences of population subdivision by damming on the population as a whole. Formosa landlocked salmon Oncorhynchus masou formosanus have persisted as a relatively large population that has recently been subdivided into seven subpopulations by erosion-control dams and a natural waterfall. The present study simulated the demographic and genetic dynamics of this subdivided salmon population using VORTEX, an individual-based stochastic model. Although the population as a whole did not experience extinction over 200 simulation years, the loss of genetic variation was often detrimental (10% loss). Isolated headwater subpopulations frequently reached extinction. Even when the subpopulations did persist through the 200 years, they experienced dramatic loss of genetic variation, suggesting short-term genetic threats. Due to the unidirectional dispersal of the fish, the damming puts headwater subpopulations at higher risk of extinction and loss of genetic variation, which affects persistence of the population as a whole, particularly from a genetic perspective.
机译:一些研究通过对整个人口进行封锁来评估人口细分的人口统计和遗传后果。福尔摩沙内陆鲑鱼Oncorhynchus masou formosanus一直作为一个相对较大的种群而存在,最近被侵蚀控制水坝和天然瀑布分为七个亚种群。本研究使用基于个体的随机模型VORTEX模拟了该细分鲑鱼种群的人口统计和遗传动态。尽管整个种群在200年的模拟时间内都没有灭绝,但是遗传变异的损失往往是有害的(损失超过10%)。孤立的上游源头种群经常灭绝。即使亚种群确实持续了200年,他们也经历了遗传变异的剧烈损失,这表明了短期的遗传威胁。由于鱼类的单向扩散,堰塞坝使水源亚种群面临灭绝和遗传变异丧失的更高风险,这特别是从遗传角度影响整个种群的持久性。

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