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Examining c-di-GMP and possible quorum sensing regulation in Pseudomonas fluorescens SBW25: links between intra- and inter-cellular regulation benefits community cooperative activities such as biofilm formation

机译:检查荧光荧光素SBW25中的C-Di-GMP和可能的Quorum检测调节:内部间和间间调节之间的联系益处群体合作活动,如生物膜形成

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摘要

Bacterial success in colonizing complex environments requires individual response to micro-scale conditions as well as community-level cooperation to produce large-scale structures such as biofilms. Connecting individual and community responses could be achieved by linking the intracellular sensory and regulatory systems mediated by bis-(3′-5′)-cyclic dimeric guanosine monophosphate (c-di-GMP) and other compounds of individuals with intercellular quorum sensing (QS) regulation controlling populations. There is growing evidence to suggest that biofilm formation by many pseudomonads is regulated by both intra and intercellular systems, though in the case of the model Pseudomonas fluorescens SBW25 Wrinkly Spreader in which mutations increasing c-di-GMP levels result in the production of a robust cellulose-based air-liquid interface biofilm, no evidence for the involvement of QS regulation has been reported. However, our recent review of the P. fluorescens SBW25 genome has identified a potential QS regulatory pathway and other QS–associated genes linked to c-di-GMP homeostasis, and QS signal molecules have also been identified in culture supernatants. These findings suggest a possible link between c-di-GMP and QS regulation in P. fluorescens SBW25 which might allow a more sophisticated and responsive control of cellulose production and biofilm formation when colonising the soil and plant-associated environments P. fluorescens SBW25 normally inhabits.
机译:在殖民化复杂环境中的细菌成功需要对微观条件以及社区级合作的个人反应,以产生大规模结构,如生物膜。通过将细胞内的感官和调节系统与细胞间批量传感(QS(QS)连接(C-DI-GMP)和其他细胞的单个胞质化合物(QS )监管控制群体。越来越有证据表明,许多假单胞菌的生物膜形成由内细胞和细胞内系统进行调节,但在模型荧光荧光型SBW25碎屑伴侣的情况下,其中突变增加了C-Di-GMP水平的突变导致生产稳健的生产基于纤维素的空气液体界面生物膜,没有报告QS调节的累及证据。然而,我们最近的审查荧光SBW25基因组已鉴定出潜在的QS调节途径和与C-Di-GMP稳态相关的其他QS相关基因,并且还在培养上清液中鉴定出QS信号分子。这些发现表明,在荧光荧光型SBW25中的C-Di-GMP和QS调节之间可能的链接,其在殖民化土壤和植物相关环境中,可以允许更复杂和响应于纤维素生产和生物膜的形成。荧光型SBW25通常栖息地。

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