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钙作为发光弧菌生物膜促进信号的发现揭示了新的表型和潜在的调控复杂性。

Discovery of Calcium as a Biofilm-Promoting Signal for Vibrio fischeri Reveals New Phenotypes and Underlying Regulatory Complexity.

机构信息

Loyola University Chicago, Maywood, Illinois, USA.

Loyola University Chicago, Maywood, Illinois, USA

出版信息

J Bacteriol. 2018 Jul 10;200(15). doi: 10.1128/JB.00016-18. Print 2018 Aug 1.

Abstract

uses biofilm formation to promote symbiotic colonization of its squid host, Control over biofilm formation is exerted at the level of transcription of the symbiosis polysaccharide () locus by a complex set of two-component regulators. Biofilm formation can be induced by overproduction of the sensor kinase RscS, which requires the activities of the hybrid sensor kinase SypF and the response regulator SypG and is negatively regulated by the sensor kinase BinK. Here, we identify calcium as a signal that promotes biofilm formation by biofilm-competent strains under conditions in which biofilms are not typically observed (growth with shaking). This was true for RscS-overproducing cells as well as for strains in which only the negative regulator was deleted. The latter results provided, for the first time, an opportunity to induce and evaluate biofilm formation without regulator overexpression. Using these conditions, we determined that calcium induces both -dependent and bacterial cellulose synthesis ()-dependent biofilms at the level of transcription of these loci. The calcium-induced biofilms were dependent on SypF, but SypF's Hpt domain was sufficient for biofilm formation. These data suggested the involvement of another sensor kinase(s) and led to the discovery that both RscS and a previously uncharacterized sensor kinase, HahK, functioned in this pathway. Together, the data presented here reveal both a new signal and biofilm phenotype produced by cells, the coordinate production of two polysaccharides involved in distinct biofilm behaviors, and a new regulator that contributes to control over these processes. Biofilms, or communities of surface-attached microorganisms adherent via a matrix that typically includes polysaccharides, are highly resistant to environmental stresses and are thus problematic in the clinic and important to study. forms biofilms to colonize its symbiotic host, making this organism useful for studying biofilms. Biofilm formation depends on the polysaccharide locus and its regulators. Here, we identify a signal, calcium, that induces both SYP-PS and cellulose-dependent biofilms. We also identify a new regulator, the sensor kinase HahK, and discover a mutant phenotype for the sensor kinase RscS. This work thus reveals a specific biofilm-inducing signal that coordinately controls two polysaccharides, identifies a new regulator, and clarifies the regulatory control over biofilm formation by .

摘要

利用生物膜形成来促进与其鱿鱼宿主的共生定植,通过一组复杂的双组分调节剂对共生多糖()基因座的转录水平进行生物膜形成的控制。生物膜形成可以通过传感器激酶 RscS 的过表达来诱导,这需要混合传感器激酶 SypF 和响应调节剂 SypG 的活性,并受传感器激酶 BinK 的负调控。在这里,我们确定钙作为一种信号,在通常不会观察到生物膜的情况下(摇动生长)促进具有生物膜形成能力的菌株的生物膜形成。这对于过表达 RscS 的细胞以及仅缺失负调节剂的菌株都是如此。后一种结果首次提供了在没有调节剂过表达的情况下诱导和评估生物膜形成的机会。使用这些条件,我们确定钙在这些基因座的转录水平上诱导依赖于和依赖于细菌纤维素合成()的生物膜。钙诱导的生物膜依赖于 SypF,但 SypF 的 Hpt 结构域足以形成生物膜。这些数据表明涉及另一个传感器激酶(多个),并导致发现传感器激酶 RscS 和以前未表征的传感器激酶 HahK 在该途径中起作用。总之,这里呈现的数据揭示了由细胞产生的新信号和生物膜表型,两种多糖的协调产生涉及不同的生物膜行为,以及一种新的调节剂,有助于控制这些过程。生物膜或表面附着的微生物群落通过通常包括多糖的基质附着,对环境压力具有很强的抵抗力,因此在临床上是有问题的,并且值得研究。通过形成生物膜来定植其共生宿主,使该生物体成为研究生物膜的有用工具。生物膜形成取决于多糖基因座及其调节剂。在这里,我们确定了一种信号,钙,它诱导 SYP-PS 和纤维素依赖性生物膜。我们还确定了一个新的调节剂,传感器激酶 HahK,并发现了传感器激酶 RscS 的突变表型。因此,这项工作揭示了一种特定的生物膜诱导信号,该信号协调控制两种多糖,确定了一个新的调节剂,并阐明了通过对生物膜形成的调节控制。

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