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Rapid local adaptation of zooplankton behavior to changes in predation pressure in the absence of neutral genetic changes

机译:快速局部地适应浮游动物行为以适应其变化 没有中性遗传变化的捕食压力

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摘要

Organisms producing resting stages provide unique opportunities for reconstructing the genetic history of natural populations. Diapausing seeds and eggs often are preserved in large numbers, representing entire populations captured in an evolutionary inert state for decades and even centuries. Starting from a natural resting egg bank of the waterflea Daphnia, we compare the evolutionary rates of change in an adaptive quantitative trait with those in selectively neutral DNA markers, thus effectively testing whether the observed genetic changes in the quantitative trait are driven by natural selection. The population studied experienced variable and well documented levels of fish predation over the past 30 years and shows correlated genetic changes in phototactic behavior, a predator-avoidance trait that is related to diel vertical migration. The changes mainly involve an increased plasticity response upon exposure to predator kairomone, the direction of the changes being in agreement with the hypothesis of adaptive evolution. Genetic differentiation through time was an order of magnitude higher for the studied behavioral trait than for neutral markers (DNA microsatellites), providing strong evidence that natural selection was the driving force behind the observed, rapid, evolutionary changes.
机译:产生静止阶段的生物为重建自然种群的遗传历史提供了独特的机会。滞育性高的种子和卵子通常被大量保存,代表着处于进化惰性状态的整个种群长达数十年甚至几个世纪。从水蚤水蚤的天然卵卵库开始,我们比较了适应性数量性状与选择性中性DNA标记的进化变化率,从而有效地检验了观察到的数量性状遗传变化是否受自然选择的驱动。在过去的30年中,研究的种群经历了可变的且有据可查的鱼类捕食水平,并且显示了光战术行为的相关遗传变化,这种行为与diel垂直迁移有关,是一种避免捕食者的特征。这些变化主要涉及在暴露于捕食者海洛酮后增加的可塑性响应,变化的方向与适应性进化的假设一致。随时间变化的遗传分化比 研究的行为特征要比中性标志物(DNA 微卫星),提供了强有力的证据证明自然选择是 观察到的,快速的,进化的变化背后的驱动力。

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