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特征结构和冗余度决定了海洋鱼类群落对干扰的敏感性。

Trait structure and redundancy determine sensitivity to disturbance in marine fish communities.

机构信息

IFREMER, Unité Halieutique de Manche et mer du Nord, Boulogne-sur-Mer, France.

MARBEC, Université de Montpellier, CNRS, IFREMER, IRD, Montpellier Cedex, France.

出版信息

Glob Chang Biol. 2019 Oct;25(10):3424-3437. doi: 10.1111/gcb.14662. Epub 2019 May 8.

Abstract

Trait diversity is believed to influence ecosystem dynamics through links between organismal traits and ecosystem processes. Theory predicts that key traits and high trait redundancy-large species richness and abundance supporting the same traits-can buffer communities against environmental disturbances. While experiments and data from simple ecological systems lend support, large-scale evidence from diverse, natural systems under major disturbance is lacking. Here, using long-term data from both temperate (English Channel) and tropical (Seychelles Islands) fishes, we show that sensitivity to disturbance depends on communities' initial trait structure and initial trait redundancy. In both ecosystems, we found that increasing dominance by climatically vulnerable traits (e.g., small, fast-growing pelagics/corallivores) rendered fish communities more sensitive to environmental change, while communities with higher trait redundancy were more resistant. To our knowledge, this is the first study demonstrating the influence of trait structure and redundancy on community sensitivity over large temporal and spatial scales in natural systems. Our results exemplify a consistent link between biological structure and community sensitivity that may be transferable across ecosystems and taxa and could help anticipate future disturbance impacts on biodiversity and ecosystem functioning.

摘要

性状多样性被认为通过生物体性状和生态系统过程之间的联系来影响生态系统动态。理论预测,关键性状和高性状冗余——支持相同性状的大物种丰富度和丰度——可以缓冲群落免受环境干扰。虽然来自简单生态系统的实验和数据提供了支持,但在主要干扰下来自多样化、自然系统的大规模证据仍然缺乏。在这里,我们利用来自温带(英吉利海峡)和热带(塞舌尔群岛)鱼类的长期数据,表明对干扰的敏感性取决于群落的初始性状结构和初始性状冗余。在这两个生态系统中,我们发现气候脆弱性状(例如,小型、快速生长的浮游生物/珊瑚礁捕食者)的优势度增加,使鱼类群落对环境变化更加敏感,而具有更高性状冗余的群落则更具抵抗力。据我们所知,这是第一项在自然系统中证明性状结构和冗余度对群落敏感性的影响在大时间和空间尺度上的研究。我们的结果例证了生物结构和群落敏感性之间的一致性联系,这种联系可能在生态系统和分类群之间具有可转移性,并有助于预测未来干扰对生物多样性和生态系统功能的影响。

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