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群落性状变异通过与捕食者密度的反馈驱动对物种多样性的选择。

Community Trait Variation Drives Selection on Species Diversity Through Feedback With Predator Density.

作者信息

Vu Phuong-Anh, Becks Lutz

机构信息

Aquatic Ecology and Evolution University of Konstanz Konstanz Germany.

出版信息

Ecol Evol. 2024 Oct 23;14(10):e70477. doi: 10.1002/ece3.70477. eCollection 2024 Oct.

Abstract

Identifying the processes underlying community assembly and dynamics remains a central goal in ecology. Although much research has been devoted to analyzing how environments affect species diversity, fewer studies have resolved the link between the fundamental process of ecological selection and species diversity. It has been suggested that identifying ecological selection by estimating changes in community-weighted variance (CWV) and mean (CWM) of functional traits may help to identify more general rules of community assembly. Here, we asked whether and how selection by predation and competition affect species diversity, and how this is determined by the initial CWV and CWM for traits governing species interactions, as in our case: Competitiveness and defense against a predator. We tracked experimental five-species phytoplankton communities in the presence and absence of a rotifer predator over time. We manipulated the initial community composition so that communities shared at least three of the five species but differed in CWV and CWM for defense against predation. We found that species diversity was highest with higher initial trait distributions and that temporal changes in diversity correlated with trait selection. The initial distributions determined the form of selection over time, with directional selection for defense and competitiveness, followed by reduced selection and an increase in niche availability when the initial trait distribution was low or high. For intermediate initial trait distributions, we observed directional selection in only one trait, followed by stabilizing selection. Differences and changes in selection for defense, competitiveness, and species diversity correlated with the changes in predator density over time. This suggests that the initial trait distribution determined species diversity through a feedback loop with changes in selection on traits and predator density. Overall, our study shows that identifying ecological selection on functional traits can provide a mechanistic understanding of community assembly.

摘要

确定群落组装和动态背后的过程仍然是生态学的核心目标。尽管已有大量研究致力于分析环境如何影响物种多样性,但较少有研究阐明生态选择这一基本过程与物种多样性之间的联系。有人提出,通过估计功能性状的群落加权方差(CWV)和均值(CWM)来识别生态选择,可能有助于确定群落组装更普遍的规则。在这里,我们探讨捕食和竞争选择是否以及如何影响物种多样性,以及这如何由控制物种相互作用的性状的初始CWV和CWM决定,就像在我们的案例中:竞争力和对捕食者的防御能力。我们长期跟踪了存在和不存在轮虫捕食者情况下的实验性五物种浮游植物群落。我们操纵了初始群落组成,使得群落共享五个物种中的至少三个,但在防御捕食的CWV和CWM方面存在差异。我们发现,初始性状分布较高时物种多样性最高,并且多样性的时间变化与性状选择相关。初始分布决定了随时间的选择形式,对防御和竞争力进行定向选择,当初始性状分布较低或较高时,随后选择减少,生态位可用性增加。对于中等初始性状分布,我们仅在一个性状中观察到定向选择,随后是稳定选择。防御、竞争力和物种多样性选择的差异与变化,与捕食者密度随时间的变化相关。这表明初始性状分布通过与性状选择和捕食者密度变化的反馈回路决定了物种多样性。总体而言,我们的研究表明,识别功能性状上的生态选择可以为群落组装提供机制性理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b570/11499210/ab828fd7a1ee/ECE3-14-e70477-g002.jpg

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