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高水平的环二鸟苷酸会干扰有益细菌的定植。

High Levels of Cyclic Diguanylate Interfere with Beneficial Bacterial Colonization.

机构信息

Department of Medical Microbiology and Immunology, University of Wisconsin-Madison, Madison, Wisconsin, USA.

Microbiology Doctoral Training Program, University of Wisconsin-Madison, Madison, Wisconsin, USA.

出版信息

mBio. 2022 Aug 30;13(4):e0167122. doi: 10.1128/mbio.01671-22. Epub 2022 Aug 2.

Abstract

During colonization of the Hawaiian bobtail squid (), Vibrio fischeri bacteria undergo a lifestyle transition from a planktonic motile state in the environment to a biofilm state in host mucus. Cyclic diguanylate (c-di-GMP) is a cytoplasmic signaling molecule that is important for regulating motility-biofilm transitions in many bacterial species. V. fischeri encodes 50 proteins predicted to synthesize and/or degrade c-di-GMP, but a role for c-di-GMP regulation during host colonization has not been investigated. We examined strains exhibiting either low or high levels of c-di-GMP during squid colonization and found that while a low-c-di-GMP strain had no colonization defect, a high c-di-GMP strain was severely impaired. Expression of a heterologous c-di-GMP phosphodiesterase restored colonization, demonstrating that the effect is due to high c-di-GMP levels. In the constitutive high-c-di-GMP state, colonizing V. fischeri exhibited reduced motility, altered biofilm aggregate morphology, and a regulatory interaction where transcription of one polysaccharide locus is inhibited by the presence of the other polysaccharide. Our results highlight the importance of proper c-di-GMP regulation during beneficial animal colonization, illustrate multiple pathways regulated by c-di-GMP in the host, and uncover an interplay of multiple exopolysaccharide systems in host-associated aggregates. There is substantial interest in studying cyclic diguanylate (c-di-GMP) in pathogenic and environmental bacteria, which has led to an accepted paradigm in which high c-di-GMP levels promote biofilm formation and reduce motility. However, considerably less focus has been placed on understanding how this compound contributes to beneficial colonization. Using the Vibrio fischeri-Hawaiian bobtail squid study system, we took advantage of recent genetic advances in the bacterium to modulate c-di-GMP levels and measure colonization and track c-di-GMP phenotypes in a symbiotic interaction. Studies in the animal host revealed a c-di-GMP-dependent genetic interaction between two distinct biofilm polysaccharides, Syp and cellulose, that was not evident in culture-based studies: elevated c-di-GMP altered the composition and abundance of the biofilm by decreasing transcription due to increased cellulose synthesis. This study reveals important parallels between pathogenic and beneficial colonization and additionally identifies c-di-GMP-dependent regulation that occurs specifically in the squid host.

摘要

在夏威夷短尾乌贼()的定殖过程中,弧菌()细菌经历了从环境中的浮游运动状态到宿主黏液中的生物膜状态的生活方式转变。环二鸟苷酸(c-di-GMP)是一种细胞质信号分子,对于调节许多细菌物种的运动-生物膜转变非常重要。V. fischeri 编码 50 种预测合成和/或降解 c-di-GMP 的蛋白质,但 c-di-GMP 调节在宿主定殖过程中的作用尚未得到研究。我们检查了在鱿鱼定殖过程中表现出低或高水平 c-di-GMP 的菌株,发现低 c-di-GMP 菌株没有定植缺陷,而高 c-di-GMP 菌株则严重受损。表达异源 c-di-GMP 磷酸二酯酶恢复了定植,表明这种效应是由于 c-di-GMP 水平高。在组成型高 c-di-GMP 状态下,定植的 V. fischeri 表现出运动能力降低、生物膜聚集体形态改变以及一种调节相互作用,其中一个多糖基因座的转录受到另一个多糖基因座的抑制。我们的结果强调了在有益的动物定殖过程中适当的 c-di-GMP 调节的重要性,说明了 c-di-GMP 在宿主中的多种调节途径,并揭示了宿主相关聚集体中多种胞外多糖系统的相互作用。

在致病性和环境细菌中研究环二鸟苷酸(c-di-GMP)的兴趣很大,这导致了一个公认的范式,即高 c-di-GMP 水平促进生物膜形成并降低运动性。然而,人们对理解这种化合物如何有助于有益的定植的关注要少得多。利用 Vibrio fischeri-夏威夷短尾乌贼研究系统,我们利用细菌的最新遗传进展来调节 c-di-GMP 水平并在共生相互作用中测量定植和跟踪 c-di-GMP 表型。在动物宿主中的研究揭示了两种不同生物膜多糖 Syp 和纤维素之间依赖 c-di-GMP 的遗传相互作用,这在基于培养的研究中并不明显:由于纤维素合成增加,c-di-GMP 升高会降低 转录,从而改变生物膜的组成和丰度。这项研究揭示了致病性和有益定植之间的重要相似之处,并额外确定了仅在鱿鱼宿主中发生的 c-di-GMP 依赖性调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02ad/9426504/a5119ef7afeb/mbio.01671-22-f001.jpg

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