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Surface-Growing Communities of Pseudomonas aeruginosa Exhibit Distinct Alkyl Quinolone Signatures

机译:铜绿假单胞菌表面生长的群落表现出独特的烷基喹诺酮特征

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摘要

A cascade of events leads to the development of microbial biofilm communities that are thought to be responsible for over 80% of infections in humans. However, not all surface-growing bacteria reside in a stationary biofilm state. Here, we have employed confocal Raman microscopy to analyze and compare variations in the alkyl quinolone (AQ) family of molecules during the transition between surface-attached motile-swarming and stationary biofilm communities. The AQs have been established previously as important to Pseudomonas aeruginosa biofilms, interspecies competition, and virulence. The AQ Pseudomonas quinolone signal (PQS) is also a known quorum-sensing signal. We detail spatial identification of AQ, PQS, and 2-alkyl-4-hydroxyquinoline N-oxide (AQNO) metabolites in both swarm and biofilm communities. We find that AQNO metabolites are abundant signatures in active swarming communities.
机译:一系列事件导致微生物生物膜群落的发展,这些生物膜被认为是造成人类80%以上感染的原因。但是,并非所有表面生长的细菌都以固定的生物膜状态存在。在这里,我们采用了共聚焦拉曼显微镜来分析和比较在表面附着的能动群和固定生物膜群落之间的过渡过程中,烷基喹诺酮(AQ)分子家族的变化。先前已经确定了AQ对于铜绿假单胞菌生物膜,种间竞争和毒力很重要。 AQ假单胞菌喹诺酮信号(PQS)也是已知的群体感应信号。我们详细说明了群体和生物膜群落中AQ,PQS和2-烷基-4-羟基喹啉N-氧化物(AQNO)代谢产物的空间识别。我们发现,在活跃的蜂群中,AQNO代谢产物是丰富的标志。

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