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气候驱动成虫活动的因素受到生活史特征的影响。

Climate drivers of adult insect activity are conditioned by life history traits.

机构信息

Florida Museum of Natural History, University of Florida, Gainesville, Florida, USA.

Department of Entomology, Purdue University, West Lafayette, Indiana, USA.

出版信息

Ecol Lett. 2021 Dec;24(12):2687-2699. doi: 10.1111/ele.13889. Epub 2021 Oct 11.

Abstract

Insect phenological lability is key for determining which species will adapt under environmental change. However, little is known about when adult insect activity terminates and overall activity duration. We used community-science and museum specimen data to investigate the effects of climate and urbanisation on timing of adult insect activity for 101 species varying in life history traits. We found detritivores and species with aquatic larval stages extend activity periods most rapidly in response to increasing regional temperature. Conversely, species with subterranean larval stages have relatively constant durations regardless of regional temperature. Species extended their period of adult activity similarly in warmer conditions regardless of voltinism classification. Longer adult durations may represent a general response to warming, but voltinism data in subtropical environments are likely underreported. This effort provides a framework to address the drivers of adult insect phenology at continental scales and a basis for predicting species response to environmental change.

摘要

昆虫物候的不稳定性是决定哪些物种将在环境变化下适应的关键。然而,对于成虫活动的终止时间和总活动持续时间,我们知之甚少。我们使用社区科学和博物馆标本数据,调查了气候和城市化对 101 种具有不同生活史特征的成虫活动时间的影响。我们发现,食碎屑动物和具有水生幼虫阶段的物种在应对区域温度升高时,活动期延长最快。相反,具有地下幼虫阶段的物种无论区域温度如何,其持续时间相对稳定。无论变温类型如何,物种在温暖条件下都会以相似的方式延长成虫活动期。成虫活动时间的延长可能代表了对变暖的普遍反应,但亚热带环境中的变温数据可能报告不足。这项工作提供了一个在大陆尺度上解决成虫物候驱动因素的框架,并为预测物种对环境变化的反应提供了基础。

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