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在与 Euprymna scolopes 共生期间,Vibrio fischeri 会导入和同化硫酸盐。

Vibrio fischeri imports and assimilates sulfate during symbiosis with Euprymna scolopes.

机构信息

Department of Biochemistry and Molecular Biology, Pennsylvania State University, University Park, PA, USA.

Department of Biology, Kalamazoo College, Kalamazoo, MI, USA.

出版信息

Mol Microbiol. 2021 Sep;116(3):926-942. doi: 10.1111/mmi.14780. Epub 2021 Jul 17.

Abstract

Sulfur is in cellular components of bacteria and is, therefore, an element necessary for growth. However, mechanisms by which bacteria satisfy their sulfur needs within a host are poorly understood. Vibrio fischeri is a bacterial symbiont that colonizes, grows, and produces bioluminescence within the light organ of the Hawaiian bobtail squid, which provides an experimental platform for investigating sulfur acquisition in vivo. Like other γ-proteobacteria, V. fischeri fuels sulfur-dependent anabolic processes with intracellular cysteine. Within the light organ, the abundance of a ΔcysK mutant, which cannot synthesize cysteine through sulfate assimilation, is attenuated, suggesting sulfate import is necessary for V. fischeri to establish symbiosis. Genes encoding sulfate-import systems of other bacteria that assimilate sulfate were not identified in the V. fischeri genome. A transposon mutagenesis screen implicated YfbS as a sulfate importer. YfbS is necessary for growth on sulfate and in the marine environment. During symbiosis, a ΔyfbS mutant is attenuated and strongly expresses sulfate-assimilation genes, which is a phenotype associated with sulfur-starved cells. Together, these results suggest V. fischeri imports sulfate via YfbS within the squid light organ, which provides insight into the molecular mechanisms by which bacteria harvest sulfur in vivo.

摘要

硫是细菌细胞成分的一部分,因此是生长所必需的元素。然而,细菌在宿主内满足其硫需求的机制还知之甚少。发光弧菌是一种细菌共生体,它在夏威夷短尾乌贼的光器官中定植、生长和产生生物发光,为体内研究硫的获取提供了一个实验平台。像其他γ-变形菌一样,V. fischeri 通过细胞内半胱氨酸为依赖硫的合成代谢过程提供燃料。在光器官中,不能通过硫酸盐同化合成半胱氨酸的ΔcysK 突变体的丰度降低,表明硫酸盐的导入对于 V. fischeri 建立共生关系是必要的。在 V. fischeri 基因组中未鉴定出其他同化硫酸盐的细菌硫酸盐导入系统的基因。转座子诱变筛选表明 YfbS 是一种硫酸盐进口商。YfbS 是在硫酸盐和海洋环境中生长所必需的。在共生过程中,ΔyfbS 突变体衰减并强烈表达硫酸盐同化基因,这是与硫饥饿细胞相关的表型。这些结果表明,V. fischeri 通过 YfbS 在鱿鱼光器官中导入硫酸盐,这为了解细菌在体内获取硫的分子机制提供了线索。

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