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生物多样性增加了生态系统功能,尽管珊瑚礁受到多种胁迫。

Biodiversity increases ecosystem functions despite multiple stressors on coral reefs.

机构信息

Lancaster Environment Centre, Lancaster University, Lancaster, UK.

Marine Science Program, Department of Biodiversity Conservation and Attractions, Kensington, Western Australia, Australia.

出版信息

Nat Ecol Evol. 2020 Jul;4(7):919-926. doi: 10.1038/s41559-020-1203-9. Epub 2020 May 18.

Abstract

Positive relationships between biodiversity and ecosystem functioning (BEF) highlight the importance of conserving biodiversity to maintain key ecosystem functions and associated services. Although natural systems are rapidly losing biodiversity due to numerous human-caused stressors, our understanding of how multiple stressors influence BEF relationships comes largely from small, experimental studies. Here, using remote assemblages of coral reef fishes, we demonstrate strong, non-saturating relationships of biodiversity with two ecosystem functions: biomass and productivity. These positive relationships were robust both to an extreme heatwave that triggered coral bleaching and to invasive rats which disrupt nutrient subsidies from native seabirds. Despite having only minor effects on BEF relationships, both stressors still decreased ecosystem functioning via other pathways. The extreme heatwave reduced biodiversity, which, due to the strong BEF relationships, ultimately diminished both ecosystem functions. Conversely, the loss of cross-system nutrient subsidies directly decreased biomass. These results demonstrate multiple ways by which human-caused stressors can reduce ecosystem functioning, despite robust BEF relationships, in natural high-diversity assemblages.

摘要

生物多样性与生态系统功能(BEF)之间的积极关系强调了保护生物多样性以维持关键生态系统功能和相关服务的重要性。尽管由于多种人为胁迫,自然系统的生物多样性正在迅速丧失,但我们对多种胁迫如何影响 BEF 关系的理解主要来自于小型实验研究。在这里,我们利用珊瑚礁鱼类的远程集合体证明了生物多样性与两种生态系统功能(生物量和生产力)之间存在强烈的、非饱和的关系。这些积极关系在很大程度上不受引发珊瑚白化的极端热浪和破坏本地海鸟营养物质补贴的入侵鼠类的影响。尽管这两种胁迫源对 BEF 关系只有较小的影响,但它们仍然通过其他途径降低了生态系统功能。极端热浪减少了生物多样性,由于 BEF 关系较强,最终减少了这两种生态系统功能。相反,跨系统营养物质补贴的丧失直接降低了生物量。这些结果表明,尽管存在稳健的 BEF 关系,但在自然高多样性集合体中,人为胁迫源可以通过多种方式降低生态系统功能。

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