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首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Site fidelity of the declining amphibian Rana sierrae (Sierra Nevada yellow-legged frog)
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Site fidelity of the declining amphibian Rana sierrae (Sierra Nevada yellow-legged frog)

机译:下降的两栖动物蛙蛙(内华达山脉的黄腿蛙)的保真度

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摘要

From 1997 to 2006, we used mark-recapture models to estimate the site fidelity of 1250 Sierra Nevada yellow-legged frogs (Rana sierrae) in Kings Canyon National Park, California, USA, during their three main activity periods of overwintering, breeding, and feeding. To quantify site fidelity, the tendency to return to and reuse previously occupied habitats, we used multistrata models (with water bodies as the strata) and potential function analyses. The probability of returning to previously used water bodies during all activity periods was typically greater than 80% and always greater than the probability of moving to other water bodies. Site fidelity models (with lake-specific movement transitions) were favored over those models that held movement transitions equal between lakes. Potential function analyses demonstrated that frogs were most strongly attracted to their original capture lakes rather than moving to the nearest available breeding or overwintering lake. Under current disturbances in high-elevation Sierra Nevada lakes (exotic trout, Climate change), site fidelity is problematic because frogs return to lakes subject to drying or those with fish rather than dispersing to other lakes. Future recovery of declining species will need to focus efforts towards restoring habitats when animals maintain strong site fidelity even when their habitats deteriorate.
机译:从1997年到2006年,我们使用标记捕获模型来估算美国加利福尼亚州金斯峡谷国家公园内华达山脉1250只黄脚蛙(Rana sierrae)在越冬,繁殖和繁殖三个主要活动时期的保真度。喂养。为了量化站点保真度,返回和再利用以前占据的栖息地的趋势,我们使用了多层模型(以水体作为地层)和潜在功能分析。在所有活动期间返回到先前使用过的水体的概率通常大于80%,并且始终大于移至其他水体的概率。站点保真度模型(具有特定于湖泊的运动转换)比那些使湖泊之间的运动转换相等的模型更受青睐。潜在功能分析表明,青蛙被原始捕获湖所吸引最多,而不是移至最近的繁殖湖或越冬湖。在高海拔的内华达山脉湖泊(外来鳟鱼,气候变化)的当前干扰下,场地保真度存在问题,因为青蛙返回到受干燥的湖泊或有鱼的湖泊,而不是散布到其他湖泊。当动物即使在其栖息地恶化的情况下仍保持强大的场地保真度时,日渐下降的物种的恢复将需要集中精力恢复栖息地。

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