Department of Biological Sciences, University of Alberta, Edmonton, AB T6G 2E9, Canada; Department of Biological Sciences, University of Toronto Scarborough, 1265 Military Trail, Canada.
Department of Biological Sciences, University of Alberta, Edmonton, AB T6G 2E9, Canada; Department of Biological Sciences, University of Cincinnati, Cincinnati, OH 45221, United States of America.
Sci Total Environ. 2021 May 15;769:145161. doi: 10.1016/j.scitotenv.2021.145161. Epub 2021 Jan 15.
Extreme climate events are predicted to increase in the future, which will have significant effects on insect biodiversity. Research into this area has been rapidly expanding, but knowledge gaps still exist. We conducted a review of the literature to provide a synthesis of extreme climate events on insects and identify future areas of research. In our review, we asked the following questions: 1) What are the direct and indirect mechanisms that extreme climate events affect individual insects? 2) What are the effects of extreme climate events on insect populations and demography? 3) What are the implications of the extreme climate events effects on insect communities? Drought was among the most frequently described type of extreme climate event affecting insects, as well as the effects of temperature extremes and extreme temperature variation. Our review explores the factors that determine the sensitivity or resilience to climate extremes for individuals, populations, and communities. We also identify areas of future research to better understand the role of extreme climate events on insects including effects on non-trophic interactions, alteration of population dynamics, and mediation of the functional the trait set of communities. Many insect species are under threat from global change and extreme climate events are a contributing factor. Biologists and policy makers should consider the role of extreme events in their work to mitigate the loss of biodiversity and delivery of ecosystem services by insects.
未来预计极端气候事件将会增加,这将对昆虫生物多样性产生重大影响。该领域的研究正在迅速扩展,但仍存在知识空白。我们对文献进行了综述,以综合论述极端气候事件对昆虫的影响,并确定未来的研究领域。在我们的综述中,我们提出了以下问题:1)极端气候事件影响个体昆虫的直接和间接机制是什么?2)极端气候事件对昆虫种群和动态有什么影响?3)极端气候事件对昆虫群落有什么影响?干旱是影响昆虫的最常见的极端气候事件类型之一,还有极端温度和极端温度变化的影响。我们的综述探讨了决定个体、种群和群落对气候极端的敏感性或弹性的因素。我们还确定了未来研究的领域,以更好地了解极端气候事件对昆虫的作用,包括对非营养相互作用的影响、种群动态的改变以及对群落功能特征的调节。许多昆虫物种受到全球变化的威胁,而极端气候事件是一个促成因素。生物学家和政策制定者应该在他们的工作中考虑到极端事件的作用,以减轻生物多样性的丧失和昆虫提供的生态系统服务。