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The joys and terrors of fast adaptation: new findings elucidate antibiotic resistance and natural selection.

机译:快速适应的喜悦与恐惧:新发现阐明了抗生素的抗药性和自然选择。

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摘要

Experiments of Pranting and Andersson demonstrate how bacteria adapt to the growth limitation caused by antibiotic resistance mutations. The process of adaptation relies on gene copy number changes that arise at high rates, including duplications (10(-4) per cell per generation), amplifications (10(-2) per cell per generation) and mutant copy loss (10(-2) per cell per division). Reversible increases in copy number improve growth by small steps and provide more targets for rare sequence alterations (10(-9) per cell per division) that can stably improve growth. After sequence alteration, selection favours loss of the still mutant gene copies that accelerated adaptation. The results strongly support the amplification-reversion model for fast adaptation and argue against the alternative idea of 'stress-induced mutagenesis'.
机译:Pranting和Andersson的实验证明了细菌如何适应由抗生素抗性突变引起的生长限制。适应过程依赖于高频率出现的基因拷贝数变化,包括重复(每代每细胞10(-4)个,扩增(每代每个细胞10(-2)个)和突变体复制丢失(10(- 2)每个单元的每个格)。拷贝数的可逆增加通过小步提高生长,并为稀有序列改变(每个细胞每分裂10(-9)个)提供更多目标,从而可以稳定地改善生长。序列改变后,选择有利于丢失仍然突变的基因拷贝,从而加速适应。结果强烈支持扩增-回复模型的快速适应,并反对“压力诱导诱变”的替代思想。

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