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进化适应的确定顺序:实验证据

Defined order of evolutionary adaptations: experimental evidence.

作者信息

Oxman Erez, Alon Uri, Dekel Erez

机构信息

Department of Molecular Cell Biology and Department of Physics of Complex Systems, The Weizmann Institute of Science, Rehovot 76100, Israel.

E-mail:

出版信息

Evolution. 2008 Jul;62(7):1547-1554. doi: 10.1111/j.1558-5646.2008.00397.x.

Abstract

Organisms often adapt to new conditions by means of beneficial mutations that become fixed in the population. Often, full adaptation requires several different mutations in the same cell, each of which may affect a different aspect of the behavior. Can one predict order in which these mutations become fixed? To address this, we experimentally studied evolution of Escherichia coli in a growth medium in which the effects of different adaptations can be easily classified as affecting growth rate or the lag-phase duration. We find that adaptations are fixed in a defined and reproducible order: first reduction of lag phase, and then an increase of the exponential growth rate. A population genetics theory explains this order, and suggests growth conditions in which the order of adaptations is reversed. We experimentally find this order reversal under the predicted conditions. This study supports a view in which the evolutionary path to adaptation in a new environment can be captured by theory and experiment.

摘要

生物体通常通过在种群中固定下来的有益突变来适应新环境。通常,完全适应需要同一个细胞发生几种不同的突变,每种突变可能会影响行为的不同方面。能否预测这些突变固定的顺序呢?为了解决这个问题,我们通过实验研究了大肠杆菌在一种生长培养基中的进化情况,在这种培养基中,不同适应的影响可以很容易地归类为影响生长速率或延迟期持续时间。我们发现适应是以一种确定且可重复的顺序固定下来的:首先是延迟期的缩短,然后是指数生长速率的增加。一种群体遗传学理论解释了这种顺序,并提出了适应顺序会颠倒的生长条件。我们通过实验发现在预测的条件下这种顺序会颠倒。这项研究支持了一种观点,即新环境中适应的进化路径可以通过理论和实验来捕捉。

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