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利用工程化的恶臭假单胞菌(Ralstonia eutropha)通过气体发酵结合水电解从二氧化碳生产聚羟基烷酸酯共聚物。

Gas fermentation combined with water electrolysis for production of polyhydroxyalkanoate copolymer from carbon dioxide by engineered Ralstonia eutropha.

机构信息

School of Life Science and Technology, Tokyo Institute of Technology, 4259 Nagatsuta, Midori-ku, Yokohama 226-8501, Japan.

Earth-Life Science Institute, Tokyo Institute of Technology, 2-12-1-IE-1 Ookayama, Meguro-ku, Tokyo 152-8550, Japan; Biofunctional Catalyst Research Team, RIKEN Center for Sustainable Resource Science (CSRS), 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.

出版信息

Bioresour Technol. 2024 Feb;394:130266. doi: 10.1016/j.biortech.2023.130266. Epub 2023 Dec 28.

Abstract

A recycled-gas closed-circuit culture system was developed for safe autotrophic cultivation of a hydrogen-oxidizing, polyhydroxyalkanoate (PHA)-producing Ralstonia eutropha, using a non-combustible gas mixture with low-concentration of H supplied by water electrolysis. Automated feedback regulation of gas flow enabled input of H, CO, and O well balanced with the cellular demands, leading to constant gas composition throughout the cultivation. The engineered strain of R. eutropha produced 1.71 g/L of poly(3-hydroxybutyrate-co-12.5 mol% 3-hydroxyhexanoate) on a gas mixture of H/CO/O/N = 4:12:7:77 vol% with a 69.2 wt% cellular content. Overexpression of can encoding cytosolic carbonic anhydrase increased the 3HHx fraction up to 19.6 mol%. The yields of biomass and PHA on input H were determined to be 72.9 % and 63.1 %, corresponding to 51.0 % and 44.2 % yield on electricity, respectively. The equivalent solar-to-biomass/PHA efficiencies were estimated to be 2.1-3.8 %, highlighting the high energy conversion capability of R. eutropha.

摘要

开发了一种再循环气体闭路培养系统,用于使用由水电解供应的低浓度 H 的不可燃气体混合物安全地自养培养氧化氢的聚羟基烷酸酯 (PHA) 产生菌 Ralstonia eutropha。气体流量的自动反馈调节使 H、CO 和 O 的输入与细胞需求很好地平衡,从而在整个培养过程中保持恒定的气体组成。工程化的 R. eutropha 菌株在 H/CO/O/N = 4:12:7:77 vol%的气体混合物上生产 1.71 g/L 的聚(3-羟基丁酸酯-共-12.5 mol%3-羟基己酸酯),细胞含量为 69.2 wt%。过表达编码胞质碳酸酐酶的 can 基因将 3HHx 分数提高到 19.6 mol%。输入 H 的生物质和 PHA 的产率分别确定为 72.9%和 63.1%,分别相当于电力的 51.0%和 44.2%。估计等效的太阳能到生物质/PHA 的效率为 2.1-3.8%,突出了 R. eutropha 的高能量转换能力。

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