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Interspecies signalling via the Stenotrophomonas maltophilia diffusible signal factor influences biofilm formation and polymyxin tolerance in Pseudomonas aeruginosa

机译:通过嗜麦芽寡养单胞菌扩散信号因子的种间信号传导影响铜绿假单胞菌的生物膜形成和多粘菌素耐受性

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摘要

Interspecies signalling through the action of diffusible signal molecules can influence the behaviour of organisms growing in polymicrobial communities. Stenotrophomonas maltophilia and Pseudomonas aeruginosa occur ubiquitously in the environment and can be found together in diverse niches including the rhizosphere of plants and the cystic fibrosis lung. In mixed species biofilms, S. maltophilia substantially influenced the architecture of P. aeruginosa structures, which developed as extended filaments. This effect depended upon the synthesis of the diffusible signal factor (DSF) by S. maltophilia and could be mimicked by the addition of synthetic DSF. This response of P. aeruginosa to DSF required PA1396, a sensor kinase with an input domain of related amino acid sequence to the sensory input domain of RpfC, which is responsible for DSF perception in xanthomonads. Mutation of PA1396 or addition of DSF to P. aeruginosa led to increased levels of a number of proteins with roles in bacterial stress tolerance, including those implicated in resistance to cationic antimicrobial peptides. This effect was associated with increased tolerance to polymyxins. Homologues of PA1396 occur in a number of phytopathogenic and plant-associated pseudomonads, suggesting that modulation of bacterial behaviour through DSF-mediated interspecies signalling with xanthomonads is a phenomenon that occurs widely.
机译:种间信号通过可扩散信号分子的作用可以影响在微生物群落中生长的生物的行为。嗜麦芽窄食单胞菌和铜绿假单胞菌普遍存在于环境中,并且可以在包括植物的根际和囊性纤维化肺在内的各种生态位中一起发现。在混合物种生物膜中,嗜麦链球菌极大地影响了铜绿假单胞菌结构的结构,该结构发展为延长的细丝。这种作用取决于嗜麦芽孢杆菌对可扩散信号因子(DSF)的合成,并且可以通过添加合成DSF来模仿。铜绿假单胞菌对DSF的这种反应需要PA1396,一种具有与RpfC的感觉输入域相关的氨基酸序列输入域的传感器激酶,该传感器域负责Xanthomonads中的DSF感知。 PA1396的突变或铜绿假单胞菌的DSF添加导致增加了许多蛋白质的水平,这些蛋白质在细菌的胁迫耐受性中起作用,包括与对阳离子抗菌肽有抗性有关的蛋白质。该作用与对多粘菌素的耐受性增加有关。 PA1396的同源物存在于许多致植物病原和与植物相关的假单胞菌中,这表明通过DSF介导的种间信号传导黄单胞菌来调节细菌行为是一种广泛发生的现象。

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