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THE DYNAMICS OF NICHE EVOLUTION UPON ABRUPT ENVIRONMENTAL CHANGE

机译:环境突变的生态位演化动力学。

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Abrupt environmental changes are of particular interest to understand how species can quickly evolve at the boundary of their current niche. In particular the "sliding niche" model, wherein a niche shifts globally toward the new condition, has been used in understanding and modeling this process. Here, we investigate the dynamics of relative fitness change in four evolutionary replicates of Escherichia coli populations exposed to an extreme pH shift. We analyzed these changes at generations 500, 1000, and 2000 to determine whether niche global deformations fully capture the temporal dynamics of niche evolution. Strikingly, this analysis reveals that fitness variations can indeed be attributed to simple and global deformation of an underlying simple niche template. Analysis from two experimental replicates displays a transient increase in niche width, consistent with recent theory considering plasticity evolution in the context of an abrupt environmental change. We term this scenario the "sidestep niche model."
机译:突然的环境变化对于了解物种如何在其当前利基边界迅速发展尤为重要。特别地,“利基滑动”模型已经被用于理解和建模该过程,其中利基在全球范围内向新的状况转移。在这里,我们调查暴露于极端pH值变化的大肠杆菌种群的四个进化复制中相对适应性变化的动力学。我们分析了第500、1000和2000代的这些变化,以确定生态位整体变形是否完全捕获了生态位演化的时间动态。引人注目的是,该分析表明,适应度变化的确可以归因于基础简单利基模板的简单和整体变形。来自两个实验重复的分析显示,利基宽度的瞬时增加,这与考虑到环境突然变化的情况下可塑性演变的最新理论一致。我们将此场景称为“避险利基模型”。

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