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当代气候变化与陆地无脊椎动物:进化与可塑性变化。

Contemporary climate change and terrestrial invertebrates: evolutionary versus plastic changes.

机构信息

Naturalis Biodiversity Center Leiden, The Netherlands ; Centre for Ecological and Evolutionary Studies, Rijksuniversiteit Groningen Groningen, The Netherlands ; Institute Biology Leiden, Leiden University Leiden, The Netherlands.

School of Biological Sciences, Monash University Clayton, Vic., Australia.

出版信息

Evol Appl. 2014 Jan;7(1):56-67. doi: 10.1111/eva.12116. Epub 2013 Nov 6.

Abstract

To forecast the responses of species to future climate change, an understanding of the ability of species to adapt to long-term shifts in temperature is crucial. We present a review on evolutionary adaptation and phenotypic plasticity of temperature-related traits in terrestrial invertebrates. The evidence for adaptive evolution in melanization is good, but we caution that genetic determination needs to be tested in each individual species, and complex genetic correlations may exist. For phenological traits allochronic data sets provide powerful means to track climate-induced changes; however, rarely are responses deconstructed into evolutionary and plastic responses. Laboratory studies suggest climate change responses in these traits will be driven by both. For stress resistance, the evidence for shifts in traits is poor. Studies leaning heavily on Drosophila have demonstrated potential limits to evolutionary responses in desiccation and heat resistance. Quantifying the capacity for these species to respond plastically and extending this work to other taxa will be an important next step. We also note that, although not strictly speaking a species trait, the response of endosymbionts to heat stress requires further study. Finally, while clearly genetic, and possibly adaptive, the anonymous nature of latitudinal shifts in clines of genetic markers in Drosophila prevents further interpretation.

摘要

为了预测物种对未来气候变化的响应,了解物种适应温度长期变化的能力至关重要。我们对陆地无脊椎动物中与温度相关的特征的进化适应和表型可塑性进行了综述。黑化的适应性进化证据很好,但我们警告说,需要在每个物种中测试遗传决定因素,并且可能存在复杂的遗传相关性。对于物候学特征,异时数据提供了跟踪气候引起的变化的有力手段;然而,很少有将响应分解为进化和可塑性响应的情况。实验室研究表明,这些特征的气候变化响应将由两者共同驱动。对于抗逆性,特征变化的证据很少。严重依赖果蝇的研究表明,在干旱和耐热性方面的进化响应可能存在局限性。量化这些物种的可塑性响应能力,并将这项工作扩展到其他分类群,将是下一步的重要工作。我们还注意到,尽管不是严格意义上的物种特征,但内共生体对热应激的反应需要进一步研究。最后,虽然明确是遗传的,并且可能是适应性的,但在果蝇中遗传标记的纬度梯度的匿名性质阻止了进一步的解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b59/3894898/10bed36572f6/eva0007-0056-f1.jpg

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