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Species-Specific Traits plus Stabilizing Processes Best Explain Coexistence in Biodiverse Fire-Prone Plant Communities

机译:特定物种的性状和稳定化过程最好地说明了生物多样性火种植物群落中的共存

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摘要

Coexistence in fire-prone Mediterranean-type shrublands has been explored in the past using both neutral and niche-based models. However, distinct differences between plant functional types (PFTs), such as fire-killed vs resprouting responses to fire, and the relative similarity of species within a PFT, suggest that coexistence models might benefit from combining both neutral and niche-based (stabilizing) approaches. We developed a multispecies metacommunity model where species are grouped into two PFTs (fire-killed vs resprouting) to investigate the roles of neutral and stabilizing processes on species richness and rank-abundance distributions. Our results show that species richness can be maintained in two ways: i) strictly neutral species within each PFT, or ii) species within PFTs differing in key demographic properties, provided that additional stabilizing processes, such as negative density regulation, also operate. However, only simulations including stabilizing processes resulted in structurally realistic rank-abundance distributions over plausible time scales. This result underscores the importance of including both key species traits and stabilizing (niche) processes in explaining species coexistence and community structure.
机译:过去,使用中性和利基模型已经探索了易火的地中海型灌木丛中的共存。但是,植物功能类型(PFT)之间的明显差异,例如对火的杀灭响应与重生响应,以及PFT中物种的相对相似性,表明共存模型可能会受益于中性和基于利基的结合(稳定化)方法。我们开发了一种多物种元社区模型,其中将物种分为两个PFT(杀死的与重新萌发的),以研究中性和稳定过程对物种丰富度和等级丰度分布的作用。我们的结果表明,可以通过两种方式维持物种丰富度:i)每个PFT中严格中性的物种,或ii)在关键人口统计特征方面不同的PFT中的物种,前提是还需要进行其他稳定化过程,例如负密度调节。但是,只有模拟(包括稳定过程)才能在合理的时间范围内得出结构上逼真的等级丰度分布。该结果强调了在解释物种共存和群落结构时同时包括关键物种特征和稳定过程的重要性。

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