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种内合作和种间竞争对热性能的拮抗作用。

Antagonistic effects of intraspecific cooperation and interspecific competition on thermal performance.

机构信息

Biodiversity Research Center, Academia Sinica, Taipei, Taiwan.

Institute of Ecology and Evolutionary Biology, College of Life Science, National Taiwan University, Taipei, Taiwan.

出版信息

Elife. 2020 Aug 18;9:e57022. doi: 10.7554/eLife.57022.

Abstract

Understanding how climate-mediated biotic interactions shape thermal niche width is critical in an era of global change. Yet, most previous work on thermal niches has ignored detailed mechanistic information about the relationship between temperature and organismal performance, which can be described by a thermal performance curve. Here, we develop a model that predicts the width of thermal performance curves will be narrower in the presence of interspecific competitors, causing a species' optimal breeding temperature to diverge from that of its competitor. We test this prediction in the Asian burying beetle , confirming that the divergence in actual and optimal breeding temperatures is the result of competition with their primary competitor, blowflies. However, we further show that intraspecific cooperation enables beetles to outcompete blowflies by recovering their optimal breeding temperature. Ultimately, linking abiotic factors and biotic interactions on niche width will be critical for understanding species-specific responses to climate change.

摘要

在全球变化的时代,了解气候介导的生物相互作用如何塑造热生态位宽度是至关重要的。然而,大多数关于热生态位的先前研究都忽略了关于温度与生物体表现之间关系的详细机制信息,这种关系可以用热性能曲线来描述。在这里,我们开发了一个模型,预测在存在种间竞争者的情况下,热性能曲线的宽度将变窄,导致物种的最佳繁殖温度与其竞争者的最佳繁殖温度不同。我们在亚洲埋葬甲虫中测试了这一预测,证实了实际和最佳繁殖温度的差异是与其主要竞争者蝇竞争的结果。然而,我们进一步表明,种内合作使甲虫能够通过恢复其最佳繁殖温度来与蝇竞争。最终,将非生物因素和生物相互作用联系起来,对理解物种对气候变化的特定反应将是至关重要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb07/7442485/25ac4fe47af6/elife-57022-fig1.jpg

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