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气候变化驱动的蝴蝶季节可塑性进化在不同的生命阶段存在差异。

Evolution of butterfly seasonal plasticity driven by climate change varies across life stages.

机构信息

Zoology Department, Stockholm University, Stockholm, Sweden.

出版信息

Ecol Lett. 2023 Sep;26(9):1548-1558. doi: 10.1111/ele.14280. Epub 2023 Jun 27.

Abstract

Photoperiod is a common cue for seasonal plasticity and phenology, but climate change can create cue-environment mismatches for organisms that rely on it. Evolution could potentially correct these mismatches, but phenology often depends on multiple plastic decisions made during different life stages and seasons that may evolve separately. For example, Pararge aegeria (Speckled wood butterfly) has photoperiod-cued seasonal life history plasticity in two different life stages: larval development time and pupal diapause. We tested for climate change-associated evolution of this plasticity by replicating common garden experiments conducted on two Swedish populations 30 years ago. We found evidence for evolutionary change in the contemporary larval reaction norm-although these changes differed between populations-but no evidence for evolution of the pupal reaction norm. This variation in evolution across life stages demonstrates the need to consider how climate change affects the whole life cycle to understand its impacts on phenology.

摘要

光周期是季节可塑性和物候的常见线索,但气候变化可能会为依赖光周期的生物创造线索-环境不匹配。进化有可能纠正这些不匹配,但物候往往取决于在不同的生命阶段和季节做出的多个塑性决策,这些决策可能会分别进化。例如,Pararge aegeria(斑纹木蝴蝶)在两个不同的生命阶段具有光周期诱发的季节性生命史可塑性:幼虫发育时间和蛹滞育。我们通过复制 30 年前在两个瑞典种群中进行的普通花园实验,测试了这种可塑性与气候变化相关的进化。我们发现了当代幼虫反应规范进化的证据——尽管这些变化在种群之间存在差异——但没有证据表明蛹反应规范发生了进化。这种跨生命阶段的进化变化表明,需要考虑气候变化如何影响整个生命周期,以了解其对物候的影响。

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