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ADAPTATION TO DIFFERENT RATES OF ENVIRONMENTAL CHANGE IN CHLAMYDOMONAS

机译:适应绿藻中不同环境变化的速率

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We investigate how different rates of environmental change affect adaptive outcomes and dynamics by selecting Chlamydomonas populations for over 200 generations in environments where the rate of change varies. We find that slower rates of environmental change result in end populations that grow faster and pay a lower cost of adaptation than populations that adapt to a sudden change of the same magnitude. We detected partial selective sweeps in adapting populations by monitoring changes in marker frequency in each population. Although populations adapting to a sudden environmental change showed evidence of mutations of large effect segregating early on, populations adapting to slow rates of change showed patterns that were consistent with mutations of relatively small effect occurring at less predictable times. This work suggests that rates of environmental change may fundamentally alter adaptive dynamics and outcomes of adaptation by changing the size and timing of fitness increases. We suggest that using mutations of smaller effect during adaptation may result in lower levels of pleiotropy and historical constraints, which could in turn result in higher fitness by the end of the experiment.
机译:我们通过选择变化率变化的环境中超过200代的衣藻种群来调查不同的环境变化率如何影响适应性结果和动态。我们发现,与适应相同程度的突然变化的人群相比,较慢的环境变化速率导致最终种群的增长更快,适应成本更低。我们通过监测每个人群中标记频率的变化,检测了适应人群的部分选择性扫描。尽管适应突然的环境变化的种群显示了早期分离出大效应突变的证据,但是适应缓慢变化速率的种群显示出与在较小的可预测时间发生的相对较小的突变相一致的模式。这项工作表明,环境变化率可以通过改变适应度的大小和时机从根本上改变适应性动力学和适应性结果。我们建议在适应过程中使用效果较小的突变可能会导致多效性水平降低和历史限制,从而可能在实验结束时提高适应性。

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