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首页> 外文期刊>Annual Review of Ecology and Systematics >MUTATION AND ADAPTATION: The Directed Mutation Controversy in Evolutionary Perspective
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MUTATION AND ADAPTATION: The Directed Mutation Controversy in Evolutionary Perspective

机译:突变与适应:进化视角下的定向突变争议

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A central tenet of evolutionary theory is that mutation is random with respect to its adaptive consequences for individual organisms; that is, the production of variation precedes and does not cause adaptation. Several recent experimen-tal reports have challenged this tenet by suggesting that bacteria (and yeast) "may have mechanisms for choosing which mutations will occur" (6, p. 142). The phenomenon of nonrandom mutation claimed in these experiments was initially called "directed mutation" but has undergone several name changes during its brief and controversial history. The directed mutation hypothesis has not fared well; many examples of apparently directed mutation have been rejected in favor of more conventional explanations, and several reviews ques-tioning the validity of directed mutation have appeared (53, 54, 59-61, 79, 80). Nonetheless, directed mutation has recently been reincarnated under the confusing label "adaptive mutation" (5, 23, 24, 27, 35, 74). Here we discuss the many experimental and conceptual problems with directed/adaptive mutation, and we argue that the most plausible molecular models proposed to explain "adaptive mutation" are entirely consistent with the modern Darwinian concept of adaptation by natural selection on randomly occurring variation. In the concluding section of the paper, we discuss the importance of an informed evolutionary approach in the study of the potential adaptive signifi-cance of mutan'onal phenomena. Knowledge of the molecular bases of muta-tion is increasing rapidly, but rigorous evolutionary understanding lags behind. We note that ascribing adaptive significance to mutational phenomena (for example, "adaptive mutation") is beset with some of the same difficulties as ascribing adaptive significance to features of whole organisms (29). We consider some examples of mutational phenomena along with possible adaptive and nonadaptive explanations.
机译:进化论的中心原则是,突变对个体生物的适应性后果是随机的。就是说,变化的产生先于而不会引起适应。最近的一些实验报告通过暗示细菌(和酵母)“可能具有选择将发生哪些突变的机制”来挑战这一原则(6,第142页)。这些实验中声称的非随机突变现象最初被称为“定向突变”,但在其简短而有争议的历史中却经历了几次名称变更。定向突变假说进展不佳。许多明显的定向突变的例子已被拒绝,以支持更常规的解释,并且出现了一些有关定向突变有效性的评论(53、54、59-61、79、80)。尽管如此,最近在具有混淆性的标签“自适应突变”下重新定向了突变(5、23、24、27、35、74)。在这里,我们讨论了定向/自适应突变的许多实验和概念问题,并且我们认为,提出的解释“自适应突变”的最合理的分子模型与现代达尔文主义的自然选择概念完全一致,后者是通过对随机发生的变异进行自然选择来进行的。在本文的最后一节中,我们讨论了知情进化方法在研究变种现象的潜在适应性意义中的重要性。关于诱变的分子基础的知识正在迅速增加,但是对进化的严格理解却落在后面。我们注意到,将对突变现象(例如“适应性突变”)的适应性重要性归因于与对整个生物体特征的适应性重要性归因于相同的困难(29)。我们考虑一些突变现象的例子,以及可能的适应性和非适应性解释。

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