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Extinction Debt in Source-Sink Metacommunities

机译:源汇元社区的灭绝债务

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摘要

In an increasingly modified world, understanding and predicting the consequences of landscape alteration on biodiversity is a challenge for ecologists. To this end, metacommunity theory has developed to better understand the complexity of local and regional interactions that occur across larger landscapes. While metacommunity ecology has now provided several alternative models of species coexistence at different spatial scales, predictions regarding the consequences of landscape alteration have been done exclusively for the competition-colonization trade off model (CC). In this paper we investigate the effects of landscape perturbation on source-sink metacommunities. We show that habitat destruction perturbs the equilibria among species competitive effects within the metacommunity, driving both direct extinctions and an indirect extinction debt. As in CC models, we found a time lag for extinction following habitat destruction that varied in length depending upon the relative importance of direct and indirect effects. However, in contrast to CC models, we found that the less competitive species are more affected by habitat destruction. The best competitors can sometimes even be positively affected by habitat destruction, which corresponds well with the results of field studies. Our results are complementary to those results found in CC models of metacommunity dynamics. From a conservation perspective, our results illustrate that landscape alteration jeopardizes species coexistence in patchy landscapes through complex indirect effects and delayed extinctions patterns.
机译:在一个日新月异的世界中,了解和预测景观改变对生物多样性的后果是生态学家的一项挑战。为此,发展了元社区理论,以更好地理解在较大景观中发生的局部和区域相互作用的复杂性。虽然元社区生态学现在已经提供了几种在不同空间尺度上物种共存的替代模型,但有关景观改变后果的预测仅针对竞争性殖民权衡模型(CC)进行。在本文中,我们研究了景观扰动对源汇元社区的影响。我们表明,栖息地的破坏扰乱了元社区内物种竞争效应之间的平衡,从而导致直接灭绝和间接灭绝债务。与CC模型一样,我们发现栖息地遭到破坏后的物种灭绝的时间长短取决于直接和间接影响的相对重要性。但是,与CC模型相反,我们发现竞争性较低的物种受栖息地破坏的影响更大。最好的竞争者有时甚至会受到栖息地破坏的积极影响,这与实地研究的结果非常吻合。我们的结果与在元社区动力学的CC模型中发现的结果互补。从保护的角度来看,我们的结果表明,景观变化通过复杂的间接影响和延迟的灭绝模式危害斑驳景观中物种的共存。

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