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竞争群落中的生物多样性、稳定性与生产力

Biodiversity, Stability, and Productivity in Competitive Communities.

作者信息

Lehman Clarence L, Tilman David

出版信息

Am Nat. 2000 Nov;156(5):534-552. doi: 10.1086/303402.

Abstract

Three markedly different models of multispecies competition-one mechanistic, one phenomenological, and one statistical-all predict that greater diversity increases the temporal stability of the entire community, decreases the temporal stability of individual populations, and increases community productivity. We define temporal stability as the ratio of mean abundance to its standard deviation. Interestingly, the temporal stability of entire communities is predicted to increase fairly linearly, without clear saturation, as diversity increases. Species composition is predicted to be as important as diversity in affecting community stability and productivity. The greater temporal stability of more diverse communities is caused by higher productivity at higher diversity (the "overyielding" effect), competitive interactions (the "covariance" effect), and statistical averaging (the "portfolio" effect). The relative contribution of each cause of temporal stability changes as diversity increases, but the net effect is that greater diversity stabilizes the community even though it destabilizes individual populations. This theory agrees with recent experiments and provides a degree of resolution to the diversity-stability debate: both sides of the longstanding debate were correct, but one addressed population stability and the other addressed community stability.

摘要

三种截然不同的多物种竞争模型——一种是机械模型,一种是现象学模型,还有一种是统计模型——均预测,更高的多样性会提高整个群落的时间稳定性,降低单个种群的时间稳定性,并提高群落生产力。我们将时间稳定性定义为平均丰度与其标准差的比值。有趣的是,随着多样性增加,整个群落的时间稳定性预计会以相当线性的方式增加,且无明显饱和现象。物种组成预计在影响群落稳定性和生产力方面与多样性同样重要。多样性更高的群落具有更高的时间稳定性,这是由更高多样性下的更高生产力(“超产”效应)、竞争相互作用(“协方差”效应)和统计平均(“投资组合”效应)导致的。随着多样性增加,时间稳定性各成因的相对贡献会发生变化,但净效应是,更高的多样性使群落稳定,尽管它会使单个种群不稳定。该理论与近期实验相符,并为多样性 - 稳定性之争提供了一定程度的解决方案:这场长期争论的双方都是正确的,但一方关注的是种群稳定性,另一方关注的是群落稳定性。

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