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Changes in Selection Regime Cause Loss of Phenotypic Plasticity in Planktonic Freshwater Copepods

机译:选择制度的变化导致浮游生物淡水Co足类表型可塑性的丧失

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摘要

Rapid phenotypic adaptation is critical for populations facing environmental changes and can be facilitated by phenotypic plasticity in the selected traits. Whereas recurrent environmental fluctuations can favour the maintenance or de novo evolution of plasticity, strong selection is hypothesized to decrease plasticity or even fix the trait (genetic assimilation). Despite advances in the theoretical understanding of the impact of plasticity on diversification processes, comparatively little empirical data of populations undergoing diversification mediated by plasticity are available. Here we use the planktonic freshwater copepod Acanthodiaptomus denticornis from two lakes as model system to study UV stress responses of two phenotypically different populations under laboratory conditions. Our study reveals heritable lake- and sex-specific differences of behaviour, physiological plasticity, and mortality. We discuss specific selective scenarios causing these differences and argue that phenotypic plasticity will be higher when selection pressure is moderate, but will decrease or even be lost under stronger pressure.
机译:快速的表型适应对于面临环境变化的人群至关重要,并且可以通过所选性状的表型可塑性来促进。反复出现的环境波动可能有利于维持或从头开始产生可塑性,但据推测,强烈选择会降低可塑性甚至修复性状(遗传同化)。尽管在理论上对可塑性对多样化过程的影响的理解有了进步,但是相对较少的关于可塑性介导的经历多样化的人口的经验数据。在这里,我们使用来自两个湖泊的浮游淡水co足类刺五加A作为模型系统,以研究在实验室条件下两个表型不同的种群的紫外线胁迫响应。我们的研究揭示了在行为,生理可塑性和死亡率方面可遗传的湖泊和性别特异性差异。我们讨论了导致这些差异的特定选择性方案,并认为当选择压力适中时,表型可塑性会更高,但在更大的压力下会降低甚至丧失。

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