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转座元件的进化:IS10插入增加大肠杆菌的适应性。

Evolution of transposable elements: an IS10 insertion increases fitness in Escherichia coli.

作者信息

Chao L, McBroom S M

机构信息

Department of Ecology and Evolutionary Biology, Northwestern University, Evanston, Illinois 60201.

出版信息

Mol Biol Evol. 1985 Sep;2(5):359-69. doi: 10.1093/oxfordjournals.molbev.a040356.

Abstract

Strains of Escherichia coli carrying Tn10, a transposon consisting of two IS10 insertion sequences flanking a segment encoding for a tetracycline-resistance determinant, gain a competitive advantage in chemostat cultures. All Tn10-bearing strains that increase in frequency during competition have a new IS10 insertion that is found in the same location in the genome of those strains. We mapped, by a gradient of transmission, the position of the new IS10 insertion. We examined 11 isolates whose IS10 insertion was deleted by recombinational crossing-over, and in all cases the competitive fitness of the isolates was decreased. These results show that the IS10-generated insertion increases fitness in chemostat cultures. We named the insertion fit::IS10 and suggest that transposable elements may speed the rate of evolution by promoting nonhomologous recombination between preexisting variations within a genome and thereby generating adaptive variation.

摘要

携带Tn10(一种转座子,由两个IS10插入序列侧翼包围着一个编码四环素抗性决定簇的片段组成)的大肠杆菌菌株在恒化器培养中获得竞争优势。在竞争过程中频率增加的所有携带Tn10的菌株都有一个新的IS10插入,该插入位于这些菌株基因组的相同位置。我们通过传递梯度绘制了新IS10插入的位置。我们检查了11个通过重组交换删除了IS10插入的分离株,在所有情况下,这些分离株的竞争适应性都降低了。这些结果表明,IS10产生的插入增加了在恒化器培养中的适应性。我们将该插入命名为fit::IS10,并认为转座元件可能通过促进基因组内预先存在的变异之间的非同源重组,从而产生适应性变异,来加快进化速度。

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