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理解季节性的进化影响:研讨会介绍

Understanding Evolutionary Impacts of Seasonality: An Introduction to the Symposium.

作者信息

Williams Caroline M, Ragland Gregory J, Betini Gustavo, Buckley Lauren B, Cheviron Zachary A, Donohue Kathleen, Hereford Joe, Humphries Murray M, Lisovski Simeon, Marshall Katie E, Schmidt Paul S, Sheldon Kimberly S, Varpe Øystein, Visser Marcel E

机构信息

Department of Integrative Biology, University of California, 3040 Valley Life Sciences Building, Berkeley, CA 94705, USA.

Department of Integrative Biology, University of Colorado, Denver, CO, USA.

出版信息

Integr Comp Biol. 2017 Nov 1;57(5):921-933. doi: 10.1093/icb/icx122.

Abstract

Seasonality is a critically important aspect of environmental variability, and strongly shapes all aspects of life for organisms living in highly seasonal environments. Seasonality has played a key role in generating biodiversity, and has driven the evolution of extreme physiological adaptations and behaviors such as migration and hibernation. Fluctuating selection pressures on survival and fecundity between summer and winter provide a complex selective landscape, which can be met by a combination of three outcomes of adaptive evolution: genetic polymorphism, phenotypic plasticity, and bet-hedging. Here, we have identified four important research questions with the goal of advancing our understanding of evolutionary impacts of seasonality. First, we ask how characteristics of environments and species will determine which adaptive response occurs. Relevant characteristics include costs and limits of plasticity, predictability, and reliability of cues, and grain of environmental variation relative to generation time. A second important question is how phenological shifts will amplify or ameliorate selection on physiological hardiness. Shifts in phenology can preserve the thermal niche despite shifts in climate, but may fail to completely conserve the niche or may even expose life stages to conditions that cause mortality. Considering distinct environmental sensitivities of life history stages will be key to refining models that forecast susceptibility to climate change. Third, we must identify critical physiological phenotypes that underlie seasonal adaptation and work toward understanding the genetic architectures of these responses. These architectures are key for predicting evolutionary responses. Pleiotropic genes that regulate multiple responses to changing seasons may facilitate coordination among functionally related traits, or conversely may constrain the expression of optimal phenotypes. Finally, we must advance our understanding of how changes in seasonal fluctuations are impacting ecological interaction networks. We should move beyond simple dyadic interactions, such as predator prey dynamics, and understand how these interactions scale up to affect ecological interaction networks. As global climate change alters many aspects of seasonal variability, including extreme events and changes in mean conditions, organisms must respond appropriately or go extinct. The outcome of adaptation to seasonality will determine responses to climate change.

摘要

季节性是环境变化的一个极其重要的方面,它强烈地塑造了生活在高度季节性环境中的生物体生活的各个方面。季节性在生物多样性的产生中发挥了关键作用,并推动了极端生理适应和行为(如迁徙和冬眠)的进化。夏季和冬季之间生存和繁殖力的波动选择压力提供了一个复杂的选择格局,适应性进化的三种结果——遗传多态性、表型可塑性和风险对冲——的组合可以应对这一格局。在这里,我们确定了四个重要的研究问题,目的是增进我们对季节性进化影响的理解。首先,我们要问环境和物种的特征将如何决定发生哪种适应性反应。相关特征包括可塑性的成本和限制、线索的可预测性和可靠性,以及相对于世代时间的环境变化粒度。第二个重要问题是物候变化将如何放大或改善对生理耐寒性的选择。物候变化尽管会随着气候的变化而发生,但可以保持热生态位,但可能无法完全保护该生态位,甚至可能使生命阶段暴露于导致死亡的条件下。考虑到生命史阶段不同的环境敏感性将是完善预测气候变化易感性模型的关键。第三,我们必须确定构成季节性适应基础的关键生理表型,并努力理解这些反应的遗传结构。这些结构是预测进化反应的关键。调节对季节变化的多种反应的多效基因可能有助于功能相关性状之间的协调,或者相反,可能会限制最优表型的表达。最后,我们必须增进对季节性波动变化如何影响生态相互作用网络的理解。我们应该超越简单的二元相互作用,如捕食者-猎物动态,理解这些相互作用如何扩大规模以影响生态相互作用网络。随着全球气候变化改变了季节性变化的许多方面,包括极端事件和平均条件的变化,生物体必须做出适当反应否则就会灭绝。对季节性的适应结果将决定对气候变化的反应。

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