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Non-social adaptation defers a tragedy of the commons in Pseudomonas aeruginosa quorum sensing

机译:非社会适应延缓了铜绿假单胞菌群体感应中的公地悲剧

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摘要

In a process termed quorum sensing (QS), the opportunistic bacterial pathogen Pseudomonas aeruginosa uses diffusible signaling molecules to regulate the expression of numerous secreted factors or public goods that are shared within the population. But not all cells respond to QS signals. These social cheaters typically harbor a mutation in the QS receptor gene lasR and exploit the public goods produced by cooperators. Here we show that non-social adaptation under growth conditions that require QS-dependent public goods increases tolerance to cheating and defers a tragedy of the commons. The underlying mutation is in the transcriptional repressor gene psdR. This mutation has no effect on public goods expression but instead increases individual fitness by derepressing growth-limiting intracellular metabolism. Even though psdR mutant populations remain susceptible to invasion by isogenic psdR lasR cheaters, they bear a lower cheater load than do wild-type populations, and they are completely resistant to invasion by lasR cheaters with functional psdR. Mutations in psdR also sustain growth near wild-type levels when paired with certain partial loss-of-function lasR mutations. Targeted sequencing of multiple evolved isolates revealed that mutations in psdR arise before mutations in lasR, and rapidly sweep through the population. Our results indicate that a QS-favoring environment can lead to adaptations in non-social, intracellular traits that increase the fitness of cooperating individuals and thereby contribute to population-wide maintenance of QS and associated cooperative behaviors.
机译:在称为群体感应(QS)的过程中,机会细菌病原体铜绿假单胞菌使用可扩散的信号分子来调节种群内共有的许多分泌因子或公共物品的表达。但是,并非所有细胞都对QS信号作出响应。这些社交作弊者通常在QS受体基因lasR中携带一个突变,并利用合作者生产的公共物品。在这里,我们表明,在需要依赖QS的公共产品的增长条件下,非社会适应会增加对作弊的容忍度,并延缓公地的悲剧。潜在的突变是在转录抑制基因psdR中。这种突变对公共物品的表达没有影响,但是通过抑制生长受限的细胞内代谢来提高个体适应性。即使psdR突变体种群仍然易受同基因psdR lasR作弊者的侵袭,但与野生型种群相比,它们承受的作弊者负担要低,并且它们对具有功能性psdR的lasR作弊者的入侵具有完全的抵抗力。当与某些部分功能丧失的lasR突变配对时,psdR中的突变还可以维持接近野生型水平的生长。多个进化分离株的靶向测序表明,psdR中的突变先于lasR中的突变出现,然后迅速席卷整个种群。我们的结果表明,有利于QS的环境可以导致适应非社会性,细胞内性状,从而增加合作个体的适应性,从而有助于在全族范围内维持QS和相关的合作行为。

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