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在希瓦氏菌属 MR-1 中,鉴定出一种胞外功能 σ 因子,该因子有助于 c 型细胞色素的成熟和在电解质流条件下的电流产生。

Identification of an extracytoplasmic function sigma factor that facilitates c-type cytochrome maturation and current generation under electrolyte-flow conditions in Shewanella oneidensis MR-1.

机构信息

School of Life Sciences, Tokyo University of Pharmacy and Life Sciences, 1432-1 Horinouchi, Hachioji, Tokyo, 192-0392, Japan.

出版信息

Environ Microbiol. 2020 Sep;22(9):3671-3684. doi: 10.1111/1462-2920.15131. Epub 2020 Jul 22.

DOI:10.1111/1462-2920.15131
PMID:32548878
Abstract

Shewanella oneidensis MR-1 was cultured on electrodes in electrochemical flow cells (EFCs), and transcriptome profiles of electrode-attached cells grown under electrolyte-flow conditions were compared with those under static (nonflow) conditions. Results revealed that, along with genes related to c-type cytochrome maturation (e.g., dsbD), the SO_3096 gene encoding a putative extracytoplasmic function (ECF) sigma factor was significantly upregulated under electrolyte-flow conditions. Compared to wild-type MR-1 (WT), an SO_3096-deletion mutant (∆SO_3096) showed impaired biofilm formation and decreased current generation in EFCs, suggesting that SO_3096 plays critical roles in the interaction of MR-1 cells with electrodes under electrolyte-flow conditions. We also compared transcriptome profiles of WT and ∆SO_3096 grown in EFCs, confirming that many genes upregulated under the electrolyte-flow conditions, including dsbD, are regulated by SO_3096. LacZ reporter assays showed that transcription from a promoter upstream of dsbD is activated by SO_3096. Measurement of current generated by a dsbD-deletion mutant revealed that this gene is essential for the transfer of electrons to electrodes. These results indicate that the SO_3096 gene product facilitates c-type cytochrome maturation and current generation under electrolyte-flow conditions. The results also offer ecophysiological insights into how Shewanella regulates extracellular electron transfer to solid surfaces in the natural environment.

摘要

希瓦氏菌属 MR-1 被培养在电化学流动池 (EFC) 的电极上,并且比较了在电解质流动条件下生长的附着细胞的转录组图谱与在静态(非流动)条件下的转录组图谱。结果表明,与与 c 型细胞色素成熟相关的基因(例如 dsbD)一起,编码假定的细胞外功能(ECF)σ因子的 SO_3096 基因在电解质流动条件下显著上调。与野生型 MR-1 (WT) 相比,SO_3096 缺失突变体 (∆SO_3096) 在 EFC 中表现出生物膜形成受损和电流生成减少,表明 SO_3096 在电解质流动条件下 MR-1 细胞与电极的相互作用中发挥关键作用。我们还比较了 WT 和 ∆SO_3096 在 EFC 中生长的转录组图谱,证实了许多在电解质流动条件下上调的基因,包括 dsbD,受 SO_3096 调控。LacZ 报告基因实验表明,dsbD 上游启动子的转录被 SO_3096 激活。dsbD 缺失突变体产生的电流测量表明,该基因对于电子向电极的传递是必需的。这些结果表明,SO_3096 基因产物促进了 c 型细胞色素在电解质流动条件下的成熟和电流生成。这些结果还为希瓦氏菌在自然环境中如何调节细胞外电子向固体表面的转移提供了生态生理学见解。

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