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首页> 外文期刊>Environmental microbiology >Non-native acylated homoserine lactones reveal that LuxIR quorum sensing promotes symbiont stability
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Non-native acylated homoserine lactones reveal that LuxIR quorum sensing promotes symbiont stability

机译:非天然酰化高丝氨酸内酯显示LuxIR群体感应促进共生体稳定性

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Quorum sensing, a group behaviour coordinated by a diffusible pheromone signal and a cognate receptor, is typical of bacteria that form symbioses with plants and animals. LuxIR-type N-acyl L-homoserine (AHL) quorum sensing is common in Gram-negative Proteobacteria, and many members of this group have additional quorum-sensing networks. The bioluminescent symbiont Vibrio fischeri encodes two AHL signal synthases: AinS and LuxI. AinS-dependent quorum sensing converges with LuxI-dependent quorum sensing at the LuxR regulatory element. Both AinS- and LuxI-mediated signalling are required for efficient and persistent colonization of the squid host, Euprymna scolopes. The basis of the mutualism is symbiont bioluminescence, which is regulated by both LuxI- and AinS-dependent quorum sensing, and is essential for maintaining a colonization of the host. Here, we used chemical and genetic approaches to probe the dynamics of LuxI- and AinS-mediated regulation of bioluminescence during symbiosis. We demonstrate that both native AHLs and non-native AHL analogues can be used to non-invasively and specifically modulate induction of symbiotic bioluminescence via LuxI-dependent quorum sensing. Our data suggest that the first day of colonization, during which symbiont bioluminescence is induced by LuxIR, is a critical period that determines the stability of the V. fischeri population once symbiosis is established.
机译:群体感知是由可扩散的信息素信号和关联受体协调的一种群体行为,是细菌与植物和动物形成共生体的典型特征。 LuxIR型N-酰基L-高丝氨酸(AHL)群体感应在革兰氏阴性变形杆菌中很常见,并且该组的许多成员还具有其他群体感应网络。生物发光共生弧菌弧菌编码两种AHL信号合酶:AinS和LuxI。依赖于AinS的群体感应与依赖于LuxI的群体感应在LuxR调控元件处融合。 AinS和LuxI介导的信号传递都是鱿鱼宿主Euprymna efficient有效和持续定居的必要条件。共生的基础是共生生物发光,它受LuxI和AinS依赖的群体感应调节,并且对于维持宿主的定居至关重要。在这里,我们使用化学和遗传方法来探讨共生过程中LuxI和AinS介导的生物发光调控的动力学。我们证明,无论是本地AHLs还是非本地AHL类似物都可以用于非侵入性,并通过LuxI依赖的群体感应特异性调节共生生物发光的诱导。我们的数据表明,在第一天定居,即共生建立后,LuxIR诱导共生生物发光的关键时期就是决定费氏弧菌种群稳定性的关键时期。

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