Worthan Sarah B, McCarthy Robert D P, Delaleau Mildred, Stikeleather Ryan, Bratton Benjamin P, Boudvillain Marc, Behringer Megan G
Department of Biological Sciences, Vanderbilt University, Nashville, TN.
Evolutionary Studies Initiative, Vanderbilt University, Nashville, TN.
bioRxiv. 2024 Mar 1:2024.03.01.582989. doi: 10.1101/2024.03.01.582989.
Fluctuating environments that consist of regular cycles of co-occurring stress are a common challenge faced by cellular populations. For a population to thrive in constantly changing conditions, an ability to coordinate a rapid cellular response is essential. Here, we identify a mutation conferring an arginine-to-histidine (Arg to His) substitution in the transcription terminator Rho. The R109H mutation frequently arose in populations experimentally evolved under repeated long-term starvation conditions, during which feast and famine result in drastic environmental pH fluctuations. Metagenomic sequencing revealed that populations containing the mutation also possess putative loss-of-function mutations in , which encodes a recently characterized transcription factor associated with pH homeostasis. Genetic reconstructions of these mutations show that the allele confers a plastic alkaline-induced reduction of Rho function that, when found in tandem with a Δ allele, leads to intracellular alkalinization and genetic assimilation of Rho mutant function. We further identify Arg to His substitutions at analogous sites in alleles from species originating from fluctuating alkaline environments. Our results suggest that Arg to His substitutions in global regulators of gene expression can serve to rapidly coordinate complex responses through pH sensing and shed light on how cellular populations across the tree of life use environmental cues to coordinate rapid responses to complex, fluctuating environments.
由共同出现的应激的规律循环组成的波动环境是细胞群体面临的常见挑战。为了使群体在不断变化的条件下蓬勃发展,协调快速细胞反应的能力至关重要。在这里,我们鉴定出一种在转录终止因子Rho中赋予精氨酸到组氨酸(Arg到His)替换的突变。R109H突变经常出现在在反复长期饥饿条件下实验进化的群体中,在此期间,饱足和饥饿会导致剧烈的环境pH波动。宏基因组测序显示,含有该突变的群体在编码与pH稳态相关的最近表征的转录因子的基因中也具有推定的功能丧失突变。这些突变的遗传重建表明,该等位基因赋予了一种可塑性的碱性诱导的Rho功能降低,当与Δ等位基因同时出现时,会导致细胞内碱化和Rho突变体功能的遗传同化。我们进一步在来自波动碱性环境的物种的等位基因的类似位点鉴定出Arg到His的替换。我们的结果表明,基因表达全局调节因子中的Arg到His替换可以通过pH传感快速协调复杂反应,并揭示生命之树上的细胞群体如何利用环境线索来协调对复杂波动环境的快速反应。