The fitness of host-associated microbes depends on their ability to access nutrients in vivo. Identifying these mechanisms is significant for understanding how microbes have evolved to fill specific ecological niches within a host. Vibrio fischeri is a bioluminescent bacterium that colonizes and proliferates within the light organ of the Hawaiian bobtail squid, which provides an opportunity to study how bacteria grow in vivo. Here, the transcription factor CysB is shown to be necessary for V. fischeri both to grow on several sulfur sources in vitro and to establish symbiosis with juvenile squid. CysB is also found to regulate several genes involved in sulfate assimilation and to contribute to the growth of V. fischeri on cystine, which is the oxidized form of cysteine. A mutant that grows on cystine but not sulfate could establish symbiosis, suggesting that V. fischeri acquires nutrients related to this compound within the host. Finally, CysB-regulated genes are shown to be differentially expressed among the V. fischeri populations occupying the various colonization sites found within the light organ. Together, these results suggest the biogeography of V. fischeri populations within the squid light organ impacts the physiology of this symbiotic bacterium in vivo through CysB-dependent gene regulation.
Sulfur availability for Vibrio fischeri growth during symbiosis establishment depends on biogeography within the squid light organ.
在共生建立过程中,费氏弧菌生长所需的硫的可用性取决于鱿鱼发光器官内的生物地理分布
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作者:Wasilko Nathan P, Larios-Valencia Jessie, Steingard Caroline H, Nunez Briana M, Verma Subhash C, Miyashiro Tim
| 期刊: | Molecular Microbiology | 影响因子: | 2.600 |
| 时间: | 2019 | 起止号: | 2019 Mar;111(3):621-636 |
| doi: | 10.1111/mmi.14177 | 研究方向: | 微生物学 |
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