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Corridors maintain species richness in the fragmented landscapes of a microecosystem

机译:走廊在微生态系统的零散景观中保持物种丰富度

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摘要

Theory predicts that species richness or single-species populations can be maintained, or at least extinctions minimized, by boosting rates of immigration. One possible way of achieving this is by establishing corridors of suitable habitat between reserves. Using moss patches as model microecosystems, we provide here probably the first field experimental test of the idea that corridors can reduce the rate of loss of species, and therefore help to maintain species richness. Connecting patches of habitat with corridors did indeed slow the rate of extinction of species, preserving species richness for longer periods of time than in disconnected habitat patches. The pattern of γ-diversity, the cumulative species richness of entire connected systems, is similarly higher than that of fragmented systems, despite the homogenizing effects of movement. Predators are predicted to be more susceptible to fragmentation because of their greater mobility and smaller population sizes. Our data are consistent with this prediction: the proportion of predator species declined significantly in disconnected as compared with connected treatments.
机译:理论预测,可以通过提高移民率来维持物种丰富度或单物种种群数量,或至少使灭绝物种数量降至最低。实现这一目标的一种可能方法是在保护区之间建立合适栖息地的走廊。我们使用苔藓斑块作为模型微生态系统,在这里可能提供了关于走廊可以减少物种流失速度并因此有助于维持物种丰富度的想法的首次野外实验测试。将生境斑块与走廊连接起来确实确实减慢了物种的灭绝速度,与不连连的生境斑块相比,将物种丰富度保存了更长的时间。尽管运动具有均质效应,但整个连接系统的累积物种丰富度γ多样性的模式类似地高于碎片系统。捕食者由于具有更大的机动性和较小的种群规模,因此更容易受到破坏。我们的数据与这一预测是一致的:与连接的处理相比,未连接的捕食者物种的比例显着下降。

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