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首页> 外文期刊>Global change biology >Climate change-mediated temperature extremes and insects: From outbreaks to breakdowns
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Climate change-mediated temperature extremes and insects: From outbreaks to breakdowns

机译:气候变化介导的温度极端和昆虫:从爆发到故障

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摘要

Insects are among the most diverse and widespread animals across the biosphere and are well-known for their contributions to ecosystem functioning and services. Recent increases in the frequency and magnitude of climatic extremes (CE), in particular temperature extremes (TE) owing to anthropogenic climate change, are exposing insect populations and communities to unprecedented stresses. However, a major problem in understanding insect responses to TE is that they are still highly unpredictable both spatially and temporally, which reduces frequency- or direction-dependent selective responses by insects. Moreover, how species interactions and community structure may change in response to stresses imposed by TE is still poorly understood. Here we provide an overview of how terrestrial insects respond to TE by integrating their organismal physiology, multitrophic, and community-level interactions, and building that up to explore scenarios for population explosions and crashes that have ecosystem-level consequences. We argue that TE can push insect herbivores and their natural enemies to and even beyond their adaptive limits, which may differ among species intimately involved in trophic interactions, leading to phenological disruptions and the structural reorganization of food webs. TE may ultimately lead to outbreak-breakdown cycles in insect communities with detrimental consequences for ecosystem functioning and resilience. Lastly, we suggest new research lines that will help achieve a better understanding of insect and community responses to a wide range of CE.
机译:昆虫是整个生物圈中最多样化和最广泛的动物之一,并且众所周知,以其对生态系统运行和服务的贡献。由于人为气候变化,最近的气候极端(CE),特别是极端(TE)的频率和幅度的增加,使昆虫群体和社区暴露于前所未有的压力。然而,了解对TE的昆虫反应中的一个主要问题是它们仍然在空间和时间上仍然非常不可预测,这减少了昆虫的频率或方向依赖的选择性反应。此外,物种相互作用和社区结构如何响应TE施加的应力而变化仍然很差。在这里,我们通过整合他们的有机体生理学,多元妇科和社区层面的互动,并建立探索具有生态系统级后果的人口爆炸和崩溃的方案来概述。我们认为TE可以将昆虫食草动物及其自适应限制推广,甚至超出其自适应限制,这可能在涉及营养性互动的物种中不同,导致诸如食物网的鉴别中断和结构重组。 TE最终可能导致昆虫社区中的爆发崩溃周期,对生态系统运作和弹性的不利影响。最后,我们建议新的研究线,这将有助于更好地了解昆虫和社区对各种CE的反应。

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