Plasticity cannot fully compensate evolutionary differences in heat tolerance across fish species.

IF 3.1 2区 环境科学与生态学 Q2 ECOLOGY Evolution Pub Date : 2024-09-11 DOI:10.1093/evolut/qpae126
Andrés N Molina,Mauricio J Carter,Enrico L Rezende
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Abstract

Understanding how evolution and phenotypic plasticity contribute to variation in heat tolerance is crucial to predict responses to warming. Here we analyze 272 thermal death time curves of 53 fish species acclimated to different temperatures and quantify their relative contributions. Analyses show that evolution and plasticity account, respectively, for 80.5 % and 12.4 % of the variation in elevation across curves, whereas their slope remained invariant. Evolutionary and plastic adaptive responses differ in magnitude, with heat tolerance increasing 0.54 ºC between species and 0.32 ºC within species for every 1 ºC increase in environmental temperatures. After successfully predicting critical temperatures under ramping conditions to validate these estimates, we show that fish populations can only partly ameliorate the impact of warming waters via thermal acclimation and this deficit in plasticity could increase as the warming accelerates.
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可塑性无法完全弥补不同鱼类在耐热性方面的进化差异。
了解进化和表型可塑性如何导致耐热性的变化,对于预测对气候变暖的反应至关重要。在这里,我们分析了 53 种适应不同温度的鱼类的 272 条热死亡时间曲线,并量化了它们的相对贡献。分析表明,进化和可塑性分别占各曲线升高变化的80.5%和12.4%,而它们的斜率保持不变。进化和可塑性适应性反应的幅度不同,环境温度每升高 1 ºC,物种间的耐热性增加 0.54 ºC,物种内的耐热性增加 0.32 ºC。在成功预测了升温条件下的临界温度以验证这些估计值之后,我们表明鱼类种群只能通过热适应来部分改善水域变暖的影响,而且随着变暖速度加快,这种可塑性的不足可能会加剧。
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来源期刊
Evolution
Evolution 环境科学-进化生物学
CiteScore
5.00
自引率
9.10%
发文量
0
审稿时长
3-6 weeks
期刊介绍: Evolution, published for the Society for the Study of Evolution, is the premier publication devoted to the study of organic evolution and the integration of the various fields of science concerned with evolution. The journal presents significant and original results that extend our understanding of evolutionary phenomena and processes.
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