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Adaptive Mutations in RNA Polymerase and the Transcriptional Terminator Rho Have Similar Effects on Escherichia coli Gene Expression

机译:RNA聚合酶的自适应突变和转录终止子RHO对大肠杆菌基因表达具有类似的影响

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摘要

Modifications to transcriptional regulators play a major role in adaptation. Here, we compared the effects of multiple beneficial mutations within and between Escherichia coli rpoB, the gene encoding the RNA polymerase β subunit, and rho, which encodes a transcriptional terminator. These two genes have harbored adaptive mutations in numerous E. coli evolution experiments but particularly in our previous large-scale thermal stress experiment, where the two genes characterized alternative adaptive pathways. To compare the effects of beneficial mutations, we engineered four advantageous mutations into each of the two genes and measured their effects on fitness, growth, gene expression and transcriptional termination at 42.2 °C. Among the eight mutations, two rho mutations had no detectable effect on relative fitness, suggesting they were beneficial only in the context of epistatic interactions. The remaining six mutations had an average relative fitness benefit of ~20%. The rpoB mutations affected the expression of ~1,700 genes; rho mutations affected the expression of fewer genes but most (83%) were a subset of those altered by rpoB mutants. Across the eight mutants, relative fitness correlated with the degree to which a mutation restored gene expression back to the unstressed, 37.0 °C state. The beneficial mutations in the two genes did not have identical effects on fitness, growth or gene expression, but they caused parallel phenotypic effects on gene expression and genome-wide transcriptional termination.
机译:对转录监管机构的修改在适应方面发挥了重要作用。在这里,我们比较了大肠杆菌rpob内部和之间的多种有益突变的影响,编码了RNA聚合酶β亚基的基因,以及编码转录终止子的rhO。这两种基因在许多大肠杆菌演化实验中具有患者的适应性突变,但特别是在我们以前的大规模热应力实验中,其中两个基因表征了替代的适应性途径。为了比较有益突变的效果,我们将四种有利突变设计为两个基因中的每一个,并测量它们对42.2℃的42.2℃的健身,生长,基因表达和转录终止的影响。在八个突变中,两种Rho突变对相对适应性没有可检测的影响,表明它们仅在认证相互作用的背景下有益。其余的六个突变平均相对适应性效率约为20%。 RPOB突变影响了〜1,700个基因的表达; rho突变影响了较少的基因的表达,但大多数(83%)是RPOB突变体改变的那些子集。横跨八个突变体,相对适应性与突变恢复基因表达回到未经拘结的37.0°C状态的程度相关。两种基因的有益突变对健身,生长或基因表达没有相同的影响,但它们对基因表达和基因组的转录终止导致了平行的表型作用。

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