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Stochastic Species Turnover and Stable Coexistence in a Species-Rich Fire-Prone Plant Community

机译:物种丰富火种植物群落中的随机物种周转和稳定共存

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摘要

Understanding the mechanisms that maintain diversity is important for managing ecosystems for species persistence. Here we used a long-term data set to understand mechanisms of coexistence at the local and regional scales in the Cape Floristic Region, a global hotspot of plant diversity. We used a dataset comprising 81 monitoring sites, sampled in 1966 and again in 1996, and containing 422 species for which growth form, regeneration mode, dispersal distance and abundances at both the local (site) and meta-community scales are known. We found that species presence and abundance were stable at the meta-community scale over the 30 year period but highly unstable at the local scale, and were not influenced by species' biological attributes. Moreover, rare species were no more likely to go extinct at the local scale than common species, and that alpha diversity in local communities was strongly influenced by habitat. We conclude that stochastic environmental fluctuations associated with recurrent fire buffer populations from extinction, thereby ensuring stable coexistence at the meta-community scale by creating a “neutral-like” pattern maintained by niche-differentiation.
机译:了解维持多样性的机制对于管理生态系统以实现物种持久性至关重要。在这里,我们使用了长期数据集来了解全球植物多样性热点开普植物区(Cape Floristic Region)在地方和区域范围内共存的机制。我们使用了一个数据集,该数据集包括1966年和1996年再次采样的81个监测点,并包含422个物种,已知这些物种的生长形式,再生方式,分散距离和丰度在本地(站点)和超社区尺度上均如此。我们发现,物种的存在和丰度在30年间的超群落规模上是稳定的,但在地方规模上则高度不稳定,并且不受物种的生物学特性的影响。此外,稀有物种在当地范围内绝不会比普通物种灭绝,而且当地社区的α多样性受到栖息地的强烈影响。我们得出的结论是,与消亡的复发性火灾缓冲区种群相关的随机环境波动,从而通过创建由利基分化维持的“中性”模式,确保了元社区规模上的稳定共存。

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