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全球变化与火在昆虫生态和进化中的重要性。

Global change and the importance of fire for the ecology and evolution of insects.

机构信息

Department of Biology, Washington University in St. Louis, One Brookings Drive, St. Louis, MO 63130, USA.

Department of Ecology, Montana State University, 310 Lewis Hall, Bozeman, MT 59717, USA.

出版信息

Curr Opin Insect Sci. 2018 Oct;29:110-116. doi: 10.1016/j.cois.2018.07.015. Epub 2018 Jul 31.

Abstract

Climate change is drastically altering global fire regimes, which may affect the structure and function of insect communities. Insect responses to fire are strongly tied to fire history, plant responses, and changes in species interactions. Many insects already possess adaptive traits to survive fire or benefit from post-fire resources, which may result in community composition shifting toward habitat and dietary generalists as well as species with high dispersal abilities. However, predicting community-level resilience of insects is inherently challenging due to the high degree of spatiotemporal and historical heterogeneity of fires, diversity of insect life histories, and potential interactions with other global change drivers. Future work should incorporate experimental approaches that specifically consider spatiotemporal variability and regional fire history in order to integrate eco-evolutionary processes in understanding insect responses to fire.

摘要

气候变化正在极大地改变全球火灾发生规律,这可能会影响昆虫群落的结构和功能。昆虫对火灾的反应强烈地与火灾历史、植物反应以及物种相互作用的变化有关。许多昆虫已经具有适应火灾的特征,以在火灾中存活或受益于火灾后的资源,这可能导致群落组成向生境和食性广化以及具有高扩散能力的物种转移。然而,由于火灾在时空和历史上的高度异质性、昆虫生活史的多样性以及与其他全球变化驱动因素的潜在相互作用,预测昆虫群落的恢复力具有内在的挑战性。未来的工作应该结合实验方法,特别考虑时空变异性和区域火灾历史,以便在理解昆虫对火灾的反应时整合生态进化过程。

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