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Integration of Metabolic and Quorum Sensing Signals Governing the Decision to Cooperate in a Bacterial Social Trait

机译:代谢和群体感应信号的整合决定了细菌社会特征中合作的决定

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摘要

Many unicellular organisms live in multicellular communities that rely on cooperation between cells. However, cooperative traits are vulnerable to exploitation by non-cooperators (cheaters). We expand our understanding of the molecular mechanisms that allow multicellular systems to remain robust in the face of cheating by dissecting the dynamic regulation of cooperative rhamnolipids required for swarming in Pseudomonas aeruginosa. We combine mathematical modeling and experiments to quantitatively characterize the integration of metabolic and population density signals (quorum sensing) governing expression of the rhamnolipid synthesis operon rhlAB. The combined computational/experimental analysis reveals that when nutrients are abundant, rhlAB promoter activity increases gradually in a density dependent way. When growth slows down due to nutrient limitation, rhlAB promoter activity can stop abruptly, decrease gradually or even increase depending on whether the growth-limiting nutrient is the carbon source, nitrogen source or iron. Starvation by specific nutrients drives growth on intracellular nutrient pools as well as the qualitative rhlAB promoter response, which itself is modulated by quorum sensing. Our quantitative analysis suggests a supply-driven activation that integrates metabolic prudence with quorum sensing in a non-digital manner and allows P. aeruginosa cells to invest in cooperation only when the population size is large enough (quorum sensing) and individual cells have enough metabolic resources to do so (metabolic prudence). Thus, the quantitative description of rhlAB regulatory dynamics brings a greater understating to the regulation required to make swarming cooperation stable.
机译:许多单细胞生物生活在依赖细胞之间合作的多细胞群落中。但是,合作特征容易受到非合作者(欺诈者)的剥削。我们通过剖析铜绿假单胞菌蜂拥而至的群体鼠李糖脂的动态调节,从而扩展了对使多细胞系统在作弊面前保持强大功能的分子机制的理解。我们结合数学建模和实验来定量表征代谢和种群密度信号(群体感应)的整合,这些信号控制鼠李糖脂合成操纵子rhlAB的表达。组合的计算/实验分析表明,当营养丰富时,rhAB启动子活性以密度依赖性方式逐渐增加。当由于营养限制而生长减慢时,rhlAB启动子活性可能突然停止,逐渐降低甚至增加,这取决于生长限制营养物是碳源,氮源还是铁。特定营养物的饥饿会驱动细胞内营养物池的生长以及定性的rhlAB启动子反应,而该反应本身受群体感应调节。我们的定量分析表明,供应驱动的激活以非数字方式将代谢审慎性与群体感应整合在一起,并且仅当种群数量足够大(群体感应)并且单个细胞具有足够的代谢时,铜绿假单胞菌细胞才能进行合作投资。资源(谨​​慎行事)。因此,rhABA调控动力学的定量描述大大降低了使群体合作稳定所需的调控。

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