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季节性变化环境中热反应规范的演变

Evolution of Thermal Reaction Norms in Seasonally Varying Environments.

作者信息

Amarasekare Priyanga, Johnson Christopher

出版信息

Am Nat. 2017 Mar;189(3):E31-E45. doi: 10.1086/690293. Epub 2017 Feb 1.

Abstract

Thermal reaction norms of ectotherms exhibit a distinctive latitudinal pattern: the temperature at which performance is maximized coincides with the mean habitat temperature in tropical ectotherms but exceeds the mean temperature in temperate ectotherms. We hypothesize, on the basis of Jensen's inequality, that this pattern is driven by latitudinal variation in seasonal temperature fluctuations. We test this hypothesis with an eco-evolutionary model that integrates the quantitative genetics of reaction norm evolution with stage-structured population dynamics, which we parameterize with data from insects. We find that thermal optima of temperate and Mediterranean species evolve to exceed the mean habitat temperature if seasonal fluctuations are strong, while the thermal optimum of tropical species evolves to coincide with the mean habitat temperature if fluctuations are weak. Importantly, ecological dynamics can impose a constraint on reaction norm evolution. Tropical species cannot tolerate an increase in seasonal fluctuations at the high mean habitat temperature it experiences, while the temperate species cannot tolerate a reduction in seasonal fluctuations if the mean temperature is higher. In both cases, stochastic extinction during periods of low abundances precludes adaptation to a novel thermal environment. Our findings suggest a potential directionality in colonization success. Tropical ectotherms, because of their high thermal optima, can successfully colonize temperate habitats, while temperate ectotherms, because of their low optima, are less successful in colonizing tropical habitats.

摘要

变温动物的热反应规范呈现出一种独特的纬度模式

表现最大化时的温度在热带变温动物中与平均栖息地温度一致,但在温带变温动物中超过平均温度。基于詹森不等式,我们假设这种模式是由季节性温度波动的纬度变化驱动的。我们用一个生态进化模型来检验这个假设,该模型将反应规范进化的数量遗传学与阶段结构种群动态相结合,并用昆虫数据进行参数化。我们发现,如果季节性波动强烈,温带和地中海物种的热最优值会进化到超过平均栖息地温度,而如果波动较弱,热带物种的热最优值会进化到与平均栖息地温度一致。重要的是,生态动态可以对反应规范进化施加限制。热带物种在其经历的高平均栖息地温度下无法忍受季节性波动的增加,而温带物种如果平均温度较高则无法忍受季节性波动的减少。在这两种情况下,低丰度时期的随机灭绝排除了对新热环境的适应。我们的研究结果表明了定殖成功的一个潜在方向性。热带变温动物由于其高热最优值,可以成功定殖温带栖息地,而温带变温动物由于其低热最优值,在定殖热带栖息地方面不太成功。

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