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宿主样条件是 T6SS 介导的费氏弧菌发光器官共生体竞争所必需的。

Host-Like Conditions Are Required for T6SS-Mediated Competition among Vibrio fischeri Light Organ Symbionts.

机构信息

Department of Earth, Marine, and Environmental Sciences, University of North Carolina at Chapel Hillgrid.10698.36, Chapel Hill, North Carolina, USA.

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

出版信息

mSphere. 2021 Aug 25;6(4):e0128820. doi: 10.1128/mSphere.01288-20. Epub 2021 Jul 21.

Abstract

Bacteria employ diverse competitive strategies to enhance fitness and promote their own propagation. However, little is known about how symbiotic bacteria modulate competitive mechanisms as they compete for a host niche. The bacterium Vibrio fischeri forms a symbiotic relationship with marine animals and encodes a type VI secretion system (T6SS), which is a contact-dependent killing mechanism used to eliminate competitors during colonization of the Euprymna scolopes squid light organ. Like other horizontally acquired symbionts, V. fischeri experiences changes in its physical and chemical environment during symbiosis establishment. Therefore, we probed both environmental and host-like conditions to identify ecologically relevant cues that control T6SS-dependent competition during habitat transition. Although the T6SS did not confer a competitive advantage for V. fischeri strain ES401 under planktonic conditions, a combination of both host-like pH and viscosity was necessary for T6SS competition. For ES401, high viscosity activates T6SS expression and neutral/acidic pH promotes cell-cell contact for killing, and this pH-dependent phenotype was conserved in the majority of T6SS-encoding strains examined. We also identified a subset of V. fischeri isolates that engaged in T6SS-mediated competition at high viscosity under both planktonic and host-like pH conditions. T6SS phylogeny revealed that strains with pH-dependent phenotypes cluster together to form a subclade within the pH-independent strains, suggesting that V. fischeri may have recently evolved to limit competition to the host niche. Bacteria have evolved diverse strategies to compete for limited space and resources. Because these mechanisms can be costly to use, their expression and function are often restricted to specific environments where the benefits outweigh the costs. However, little is known about the specific cues that modulate competitive mechanisms as bacterial symbionts transition between free-living and host habitats. Here, we used the bioluminescent squid and fish symbiont Vibrio fischeri to probe for host and environmental conditions that control interbacterial competition via the type VI secretion system. Our findings identify a new host-specific cue that promotes competition among many but not all V. fischeri isolates, underscoring the utility of studying multiple strains to reveal how competitive mechanisms may be differentially regulated among closely related populations as they evolve to fill distinct niches.

摘要

细菌采用多种竞争策略来提高适应性并促进自身繁殖。然而,对于共生菌如何在竞争宿主小生境时调节竞争机制知之甚少。细菌 Vibrio fischeri 与海洋动物形成共生关系,并编码一种 VI 型分泌系统 (T6SS),这是一种接触依赖性杀伤机制,用于在殖民 Euprymna scolopes 鱿鱼光器官时消除竞争者。像其他水平获得的共生体一样,V. fischeri 在共生体建立过程中经历其物理和化学环境的变化。因此,我们探测了环境和宿主样条件,以确定控制栖息地转换过程中 T6SS 依赖性竞争的生态相关线索。尽管 T6SS 并没有为 Vibrio fischeri 菌株 ES401 在浮游条件下提供竞争优势,但宿主样 pH 和粘度的组合对于 T6SS 竞争是必要的。对于 ES401,高粘度激活 T6SS 表达,中性/酸性 pH 促进细胞间接触以进行杀伤,这种 pH 依赖性表型在大多数检查的 T6SS 编码菌株中都得到了保留。我们还鉴定了一小部分 Vibrio fischeri 分离株,它们在浮游和宿主样 pH 条件下的高粘度下进行 T6SS 介导的竞争。T6SS 系统发育表明,具有 pH 依赖性表型的菌株聚集在一起形成 pH 独立菌株中的一个亚分支,这表明 V. fischeri 可能最近进化为将竞争限制在宿主小生境中。

细菌已经进化出多种策略来争夺有限的空间和资源。由于这些机制的使用代价高昂,因此它们的表达和功能通常限于特定的环境中,在这些环境中,收益超过成本。然而,对于调节竞争机制的具体线索知之甚少,因为细菌共生体在自由生活和宿主栖息地之间过渡。在这里,我们使用发光鱿鱼和鱼类共生菌 Vibrio fischeri 来探测宿主和环境条件,这些条件通过 VI 型分泌系统控制细菌间竞争。我们的发现确定了一种新的宿主特异性线索,该线索促进了许多但不是所有 Vibrio fischeri 分离株之间的竞争,这突显了研究多个菌株的实用性,以揭示竞争机制如何在相关种群中差异调节,因为它们进化以填补不同的小生境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74d6/8386388/3dd7345cfaf3/msphere.01288-20-f001.jpg

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