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具有可调节突变率的进化实验。

with a Tunable Point Mutation Rate for Evolution Experiments.

机构信息

Department of Physics and.

Center for the Physics of Living Cells, University of Illinois at Urbana-Champaign, Urbana, IL 61801, and.

出版信息

G3 (Bethesda). 2020 Aug 5;10(8):2671-2681. doi: 10.1534/g3.120.401124.

Abstract

The mutation rate and mutations' effects on fitness are crucial to evolution. Mutation rates are under selection due to linkage between mutation rate modifiers and mutations' effects on fitness. The linkage between a higher mutation rate and more beneficial mutations selects for higher mutation rates, while the linkage between a higher mutation rate and more deleterious mutations selects for lower mutation rates. The net direction of selection on mutations rates depends on the fitness landscape, and a great deal of work has elucidated the fitness landscapes of mutations. However, tests of the effect of varying a mutation rate on evolution in a single organism in a single environment have been difficult. This has been studied using strains of antimutators and mutators, but these strains may differ in additional ways and typically do not allow for continuous variation of the mutation rate. To help investigate the effects of the mutation rate on evolution, we have genetically engineered a strain of with a point mutation rate that can be smoothly varied over two orders of magnitude. We did this by engineering a strain with inducible control of the mismatch repair proteins MutH and MutL. We used this strain in an approximately 350 generation evolution experiment with controlled variation of the mutation rate. We confirmed the construct and the mutation rate were stable over this time. Sequencing evolved strains revealed a higher number of single nucleotide polymorphisms at higher mutations rates, likely due to either the beneficial effects of these mutations or their linkage to beneficial mutations.

摘要

突变率和突变对适应性的影响对进化至关重要。由于突变率修饰因子与突变对适应性的影响之间存在连锁关系,因此突变率受到选择的影响。更高的突变率和更多有益突变之间的连锁关系选择更高的突变率,而更高的突变率和更多有害突变之间的连锁关系选择更低的突变率。突变率选择的净方向取决于适应性景观,并且大量工作已经阐明了突变的适应性景观。然而,在单一环境中单一生物体中改变突变率对进化的影响的测试一直很困难。这是使用抗突变体和突变体菌株进行研究的,但是这些菌株可能在其他方面有所不同,并且通常不允许突变率连续变化。为了帮助研究突变率对进化的影响,我们通过基因工程构建了一个具有点突变率的菌株,该突变率可以在两个数量级上平滑变化。我们通过对 MutH 和 MutL 错配修复蛋白进行诱导控制来构建具有这种能力的菌株。我们在一个大约 350 代的进化实验中使用这种菌株,以控制突变率的变化。我们确认了该构建体和突变率在这段时间内是稳定的。对进化菌株的测序揭示了更高的突变率下有更多的单核苷酸多态性,这可能是由于这些突变的有益影响或它们与有益突变的连锁。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3662/7407472/63df67b9bb0d/2671f1.jpg

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