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大肠杆菌长期实验中的基因组进化与适应

Genome evolution and adaptation in a long-term experiment with Escherichia coli.

作者信息

Barrick Jeffrey E, Yu Dong Su, Yoon Sung Ho, Jeong Haeyoung, Oh Tae Kwang, Schneider Dominique, Lenski Richard E, Kim Jihyun F

机构信息

Department of Microbiology and Molecular Genetics, Michigan State University, East Lansing, Michigan 48824, USA.

出版信息

Nature. 2009 Oct 29;461(7268):1243-7. doi: 10.1038/nature08480. Epub 2009 Oct 18.

Abstract

The relationship between rates of genomic evolution and organismal adaptation remains uncertain, despite considerable interest. The feasibility of obtaining genome sequences from experimentally evolving populations offers the opportunity to investigate this relationship with new precision. Here we sequence genomes sampled through 40,000 generations from a laboratory population of Escherichia coli. Although adaptation decelerated sharply, genomic evolution was nearly constant for 20,000 generations. Such clock-like regularity is usually viewed as the signature of neutral evolution, but several lines of evidence indicate that almost all of these mutations were beneficial. This same population later evolved an elevated mutation rate and accumulated hundreds of additional mutations dominated by a neutral signature. Thus, the coupling between genomic and adaptive evolution is complex and can be counterintuitive even in a constant environment. In particular, beneficial substitutions were surprisingly uniform over time, whereas neutral substitutions were highly variable.

摘要

尽管备受关注,但基因组进化速率与生物体适应性之间的关系仍不明确。从实验性进化群体中获取基因组序列的可行性为以新的精确性研究这种关系提供了机会。在此,我们对来自大肠杆菌实验室群体历经40000代抽样的基因组进行了测序。尽管适应性急剧减速,但基因组进化在20000代中几乎保持恒定。这种类似时钟的规律性通常被视为中性进化的标志,但几条证据表明几乎所有这些突变都是有益的。同一群体后来进化出了更高的突变率,并积累了数百个以中性特征为主的额外突变。因此,基因组进化与适应性进化之间的耦合是复杂的,甚至在恒定环境中也可能违反直觉。特别是,有益替换随时间的变化惊人地一致,而中性替换则高度可变。

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