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Terrestrial insects and climate change: adaptive responses in key traits

机译:地面昆虫和气候变化:关键特征的适应性反应

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摘要

Understanding and predicting how adaptation will contribute to species' resilience to climate change will be paramount to successfully managing biodiversity for conservation, agriculture, and human health-related purposes. Making predictions that capture how species will respond to climate change requires an understanding of how key traits and environmental drivers interact to shape fitness in a changing world. Current trait-based models suggest that low- to mid-latitude populations will be most at risk, although these models focus on upper thermal limits, which may not be the most important trait driving species' distributions and fitness under climate change. In this review, we discuss how different traits (stress, fitness and phenology) might contribute and interact to shape insect responses to climate change. We examine the potential for adaptive genetic and plastic responses in these key traits and show that, although there is evidence of range shifts and trait changes, explicit consideration of what underpins these changes, be that genetic or plastic responses, is largely missing. Despite little empirical evidence for adaptive shifts, incorporating adaptation into models of climate change resilience is essential for predicting how species will respond under climate change. We are making some headway, although more data are needed, especially from taxonomic groups outside of Drosophila, and across diverse geographical regions. Climate change responses are likely to be complex, and such complexity will be difficult to capture in laboratory experiments. Moving towards well designed field experiments would allow us to not only capture this complexity, but also study more diverse species.
机译:理解和预测适应如何为物种对气候变化的恢复性贡献将是成功管理保护,农业和人类健康相关目的的生物多样性。制定捕获物种如何应对气候变化的预测需要了解关键特征和环境司机如何在不断变化的世界中互动。基于目前的特质模型表明,低于中纬度的人群将大多为风险,尽管这些模型集中在上部热限制,这可能不是最重要的特质驾驶物种分布和气候变化的适应性。在这篇综述中,我们讨论了如何不同的特征(压力,健身和候选)可能会有所贡献和互动,以形成气候变化的昆虫反应。我们在这些关键特征中检查了适应性遗传和塑料反应的潜力,并表明,虽然存在范围变化和特性变化的证据,但明确考虑了这些变化的基础,即遗传或塑料响应在很大程度上。尽管适应性转变的实证证据很少,但将适应性纳入气候变化的模型,这对于预测物种在气候变化下如何应对。我们正在进行一条前往,虽然需要更多的数据,尤其是果蝇外的分类群,以及各种地理区域。气候变化响应可能是复杂的,并且在实验室实验中难以捕获这些复杂性。走向精心设计的田野实验将使我们不仅捕获这种复杂性,而且还研究了更多不同的物种。

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