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溪流共存:源汇动态是否允许蝾螈与鱼类捕食者共存?

Coexistence in streams: do source-sink dynamics allow salamanders to persist with fish predators?

机构信息

Division of Biological Sciences, University of Montana, Missoula, MT 59812, USA.

出版信息

Oecologia. 2011 Aug;166(4):1043-54. doi: 10.1007/s00442-011-1935-y. Epub 2011 Feb 23.

Abstract

Theory suggests that source-sink dynamics can allow coexistence of intraguild predators and prey, but empirical evidence for this coexistence mechanism is limited. We used capture-mark-recapture, genetic methods, and stable isotopes to test whether source-sink dynamics promote coexistence between stream fishes, the intraguild predator, and stream salamanders (Dicamptodon aterrimus), the intraguild prey. Salamander populations from upstream reaches without fish were predicted to maintain or supplement sink populations in downstream reaches with fish. We found instead that downstream reaches with fish were not sinks even though fish consumed salamander larvae-apparent survival, recruitment, and population growth rate did not differ between upstream and downstream reaches. There was also no difference between upstream and downstream reaches in net emigration. We did find that D. aterrimus moved frequently along streams, but believe that this is a response to seasonal habitat changes rather than intraguild predation. Our study provides empirical evidence that local-scale mechanisms are more important than dispersal dynamics to coexistence of streams salamanders and fish. More broadly, it shows the value of empirical data on dispersal and gene flow for distinguishing between local and spatial mechanisms of coexistence.

摘要

理论表明,源-汇动态可以允许捕食者和猎物的种间共存,但这种共存机制的经验证据有限。我们使用捕获-标记-再捕获、遗传方法和稳定同位素来测试源-汇动态是否促进了溪流鱼类(Dicamptodon aterrimus)这一种内捕食者与溪流蝾螈之间的共存。没有鱼类的上游河段的蝾螈种群预计将维持或补充下游河段有鱼类的汇种群。但我们发现,即使鱼类消耗了蝾螈幼虫,下游河段也不是汇种群——上游和下游河段之间的明显存活率、补充率和种群增长率没有差异。上游和下游河段之间的净迁出率也没有差异。我们确实发现 D. aterrimus 经常在溪流中移动,但我们认为这是对季节性栖息地变化的反应,而不是种内捕食。我们的研究为溪流蝾螈和鱼类共存的局部尺度机制比扩散动态更为重要提供了经验证据。更广泛地说,它展示了有关扩散和基因流的经验数据在区分共存的局部和空间机制方面的价值。

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