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Seasonal variation in basal and plastic cold tolerance: Adaptation is influenced by both long‐ and short‐term phenotypic plasticity

机译:基础和塑料耐寒性的季节性变化:适应受长期和短期表型可塑性的影响

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摘要

Understanding how thermal selection affects phenotypic distributions across different time scales will allow us to predict the effect of climate change on the fitness of ectotherms. We tested how seasonal temperature variation affects basal levels of cold tolerance and two types of phenotypic plasticity in Drosophila melanogaster. Developmental acclimation occurs as developmental stages of an organism are exposed to seasonal changes in temperature and its effect is irreversible, while reversible short‐term acclimation occurs daily in response to diurnal changes in temperature. We collected wild flies from a temperate population across seasons and measured two cold tolerance metrics (chill‐coma recovery and cold stress survival) and their responses to developmental and short‐term acclimation. Chill‐coma recovery responded to seasonal shifts in temperature, and phenotypic plasticity following both short‐term and developmental acclimation improved cold tolerance. This improvement indicated that both types of plasticity are adaptive, and that plasticity can compensate for genetic variation in basal cold tolerance during warmer parts of the season when flies tend to be less cold tolerant. We also observed a significantly stronger trade‐off between basal cold tolerance and short‐term acclimation during warmer months. For the longer‐term developmental acclimation, a trade‐off persisted regardless of season. A relationship between the two types of plasticity may provide additional insight into why some measures of thermal tolerance are more sensitive to seasonal variation than others.
机译:了解热选择如何影响不同时间尺度上的表型分布,将使我们能够预测气候变化对等温线适应度的影响。我们测试了季节性温度变化如何影响果蝇的基础耐寒性和两种类型的表型可塑性。当生物的发育阶段暴露于温度的季节性变化时,就会发生发育适应,其作用是不可逆的,而随着温度的昼夜变化,每天都会发生可逆的短期适应。我们跨季节从温带种群中采集野生蝇,并测量了两个耐寒性指标(寒冷昏迷恢复和寒冷应激存活)及其对发育和短期适应的响应。寒冷昏迷的恢复响应温度的季节性变化,短期和发育适应后的表型可塑性提高了耐寒性。这种改善表明,两种类型的可塑性都具有适应性,并且在苍蝇的耐寒性较差的季节,较温暖的季节中,可塑性可以补偿基础耐寒性的遗传变异。我们还观察到在温暖的月份中,基础耐寒性和短期适应之间的权衡明显增强。对于长期的发展适应,无论季节如何,都需要进行权衡。两种类型的可塑性之间的关系可能会提供额外的见解,以了解为什么某些热耐受性度量标准比其他方法对季节变化更敏感。

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