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The roles of carrying capacity, immigration, and population synchrony on persistence of stream-resident cutthroat trout

机译:承载能力,移民和人口共生对流栖尖嘴鳟鱼持久性的作用

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摘要

Like many other species, cutthroat trout (Oncorhynchus clarki) have declined substantially relative to historic conditions, and many existing populations are isolated. To inform conservation and restoration efforts for stream-resident cutthroat trout, I built a stage-structured stochastic simulation model to explore the dynamics of populations in isolation or connected by immigration. Relatively small increases in carrying capacity substantially reduced extinction risk in small, isolated populations. In the sensitivity matrix, the two most important elements affecting population growth rate were the survival of subadults that became reproductively mature the next year and the survival of young-of-the-year fish. Increasing either of these should allow populations to recover more rapidly from disturbances and reduce extinction risk. When populations were allowed to interact with one another, relatively low immigration rates ((x) over bar = 7 individuals/year) between populations substantially reduced extinction risk to those populations without sufficient space to maintain persistence when isolated. However, higher immigration rates were required to maintain persistence the more synchronous the dynamics of interacting populations became. The results highlight the importance of maintaining adequate space or increasing habitat capacity for isolated populations and the importance of connectivity and large population cores if remnant populations are to be maintained.
机译:像许多其他物种一样,尖嘴鳟鱼(Oncorhynchus clarki)相对于历史条件已大大下降,许多现有种群被隔离。为了为流域杀害鳟鱼的养护和恢复工作提供信息,我建立了一个阶段结构的随机模拟模型,以探索孤立或通过移民连接的种群动态。相对较小的承载力增加大大减少了少数孤立人群的灭绝风险。在敏感性矩阵中,影响种群增长率的两个最重要因素是明年繁殖繁殖的亚成体的存活和年幼鱼的存活。增加其中任何一个都应使种群从干扰中恢复得更快,并减少灭绝的风险。当各种群被允许相互交流时,各种群之间的相对较低的迁徙率(bar(7杆/年)以上(x))极大地降低了这些种群的灭绝风险,而这些种群没有足够的空间在孤立时保持持久性。但是,要保持持久性,就需要更高的移民率,相互作用的人口动态越同步。结果突出了为孤立的人群保持足够的空间或增加栖息地容量的重要性,以及如果要保留剩余的人口,连通性和大人口核心的重要性。

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