Department of Microbiology, University of Washington School of Medicine, Seattle, WA, USA.
ISME J. 2012 Dec;6(12):2219-28. doi: 10.1038/ismej.2012.69. Epub 2012 Jul 5.
Many Proteobacteria use acyl-homoserine lactone (AHL)-mediated quorum sensing to activate the production of antibiotics at high cell density. Extracellular factors like antibiotics can be considered public goods shared by individuals within a group. Quorum-sensing control of antibiotic production may be important for protecting a niche or competing for limited resources in mixed bacterial communities. To begin to investigate the role of quorum sensing in interspecies competition, we developed a dual-species co-culture model using the soil saprophytes Burkholderia thailandensis (Bt) and Chromobacterium violaceum (Cv). These bacteria require quorum sensing to activate the production of antimicrobial factors that inhibit growth of the other species. We demonstrate that quorum-sensing-dependent antimicrobials can provide a competitive advantage to either Bt or Cv by inhibiting growth of the other species in co-culture. Although the quorum-sensing signals differ for each species, we show that the promiscuous signal receptor encoded by Cv can sense signals produced by Bt, and that this ability to eavesdrop on Bt can provide Cv an advantage in certain situations. We use an in silico approach to investigate the effect of eavesdropping in competition, and show conditions where early activation of antibiotic production resulting from eavesdropping can promote competitiveness. Our work supports the idea that quorum sensing is important for interspecies competition and that promiscuous signal receptors allow eavesdropping on competitors in mixed microbial habitats.
许多变形菌门通过酰基高丝氨酸内酯(AHL)介导的群体感应在高细胞密度下激活抗生素的产生。抗生素等细胞外因子可以被视为群体内个体共享的公共物品。抗生素产生的群体感应控制可能对保护小生境或在混合细菌群落中竞争有限资源很重要。为了开始研究群体感应在种间竞争中的作用,我们使用土壤腐生菌泰国伯克霍尔德氏菌(Bt)和紫色色杆菌(Cv)开发了一种双物种共培养模型。这些细菌需要群体感应来激活抑制其他物种生长的抗菌因子的产生。我们证明,依赖群体感应的抗生素可以通过抑制共培养中其他物种的生长,为 Bt 或 Cv 提供竞争优势。尽管每种物种的群体感应信号不同,但我们表明,Cv 编码的混杂信号受体可以感知 Bt 产生的信号,并且这种偷听 Bt 的能力在某些情况下可以为 Cv 提供优势。我们使用一种计算机模拟方法来研究在竞争中偷听的影响,并展示了由于偷听而导致的抗生素早期产生可以促进竞争力的条件。我们的工作支持这样一种观点,即群体感应对种间竞争很重要,并且混杂的信号受体允许在混合微生物栖息地中偷听竞争对手。