West Elizabeth A, Jain Abhiney, Gralnick Jeffrey A
BioTechnology Institute and ‡Department of Plant and Microbial Biology, University of Minnesota - Twin Cities , St. Paul, Minnesota 55108, United States.
ACS Synth Biol. 2017 Sep 15;6(9):1627-1634. doi: 10.1021/acssynbio.6b00349. Epub 2017 Jun 5.
Shewanella oneidensis MR-1 is a model organism for understanding extracellular electron transport, in which cells transfer intracellular electrons to an extracellular terminal electron acceptor such as insoluble minerals or poised electrodes. Biotechnological applications exploiting the respiratory capabilities of Shewanella species have led to their proposed use in wastewater treatment, bioremediation, and remote sensors. Transcriptional regulation tools can be used to rationally engineer S. oneidensis, optimizing performance in biotechnological applications, introducing new capabilities, or investigating physiology. Engineered gene expression in S. oneidensis has primarily involved the use of foreign regulatory systems from Escherichia coli. Here we characterize a native S. oneidensis pathway that can be used to induce gene expression with trimethylamine N-oxide, then engineer strains in which extracellular electron transfer is controlled by this compound. The ability to induce this pathway was assessed by measuring iron reduction over time and by analyzing anodic current produced by cells grown in bioreactors.
奥奈达希瓦氏菌MR-1是用于理解细胞外电子传递的模式生物,在这种生物中,细胞将细胞内电子传递给细胞外终端电子受体,如不溶性矿物质或 poised 电极。利用希瓦氏菌属呼吸能力的生物技术应用已促使人们提议将其用于废水处理、生物修复和远程传感器。转录调控工具可用于合理改造奥奈达希瓦氏菌,优化其在生物技术应用中的性能、引入新能力或研究其生理学。奥奈达希瓦氏菌中的基因工程表达主要涉及使用来自大肠杆菌的外源调控系统。在此,我们表征了一条天然的奥奈达希瓦氏菌途径,该途径可用于用三甲胺 N-氧化物诱导基因表达,然后构建细胞外电子传递受该化合物控制的菌株。通过测量随时间的铁还原以及分析在生物反应器中生长的细胞产生的阳极电流来评估诱导该途径的能力。