功能冗余弥补了优势蚂蚁物种的减少

IF 13.9 1区 生物学 Q1 ECOLOGY
Peter Yeeles, Lori Lach, Richard J. Hobbs, Raphael K. Didham
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引用次数: 0

摘要

越来越多的证据表明,分布广泛、数量丰富的昆虫物种正在减少。据预测,这些物种的减少会对生态系统功能造成严重后果,但在现实世界的生态系统中,这种后果还没有得到很好的检验。在这里,我们测试了功能冗余与互补性在面对优势昆虫物种减少时赋予多功能性能稳定性的相对重要性。我们在澳大利亚自然形成的蚂蚁群落中对功能性状空间占有率进行了实验操作。通过实验抑制蚂蚁群落中多个性状组的优势物种,结果发现多功能性能的提高与物种丰富度的提高相反。常驻蚂蚁群落的功能冗余度很高,这有助于抑制后的快速补偿动态。然而,性状互补性增强的新物种的定殖推动了更高的多功能表现。这种多功能性的提高可能是通过减少种间竞争实现的,但代价是生态系统多功能性对物种进一步丧失的敏感性增加。我们的研究结果表明,功能冗余可以缓冲群落的多功能表现,防止优势昆虫物种的减少,但也表明生态系统多功能性的未来稳定性更多地取决于功能互补性和竞争性相互作用的改变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Functional redundancy compensates for decline of dominant ant species

Functional redundancy compensates for decline of dominant ant species

Evidence is accumulating of declines in widespread, abundant insect species. The consequences of these losses for ecosystem functioning are predicted to be severe but remain poorly tested in real-world ecosystems. Here we tested the relative importance of functional redundancy versus complementarity in conferring stability of multifunctional performance in the face of dominant insect species decline. We conducted an experimental manipulation of functional trait-space occupancy within naturally occurring ant communities in Australia. Experimental suppression of dominant ant species in multiple trait groupings caused a counterintuitive increase in multifunctional performance, which was associated with an increase in species richness. The resident ant community had high functional redundancy, contributing to rapid compensatory dynamics following suppression. However, colonization by new species with increased trait complementarity drove higher multifunctional performance. This increased multifunctionality probably occurred via reduced interspecific competition but at the cost of increased sensitivity of ecosystem multifunctionality to further species loss. Our findings show that functional redundancy can buffer multifunctional performance of a community against decline of dominant insect species but suggest that future stability of ecosystem multifunctionality depends more on functional complementarity and altered competitive interactions.

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来源期刊
Nature ecology & evolution
Nature ecology & evolution Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
22.20
自引率
2.40%
发文量
282
期刊介绍: Nature Ecology & Evolution is interested in the full spectrum of ecological and evolutionary biology, encompassing approaches at the molecular, organismal, population, community and ecosystem levels, as well as relevant parts of the social sciences. Nature Ecology & Evolution provides a place where all researchers and policymakers interested in all aspects of life's diversity can come together to learn about the most accomplished and significant advances in the field and to discuss topical issues. An online-only monthly journal, our broad scope ensures that the research published reaches the widest possible audience of scientists.
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