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解析梭状芽孢杆菌属菌株WK独特的丁酸盐再同化机制以及通过独特的酸解预处理从红藻石花菜生产丁醇的应用。

Unraveling the unique butyrate re-assimilation mechanism of Clostridium sp. strain WK and the application of butanol production from red seaweed Gelidium amansii through a distinct acidolytic pretreatment.

作者信息

Zhang Kan, Hong Ying, Chen Chaoyang, Wu Yi-Rui

机构信息

Department of Biology, Shantou University, Shantou, Guangdong 515063, China.

Department of Biology, Shantou University, Shantou, Guangdong 515063, China; Beijing Tidetron Bioworks Company, Beijing 100190, China.

出版信息

Bioresour Technol. 2021 Dec;342:125939. doi: 10.1016/j.biortech.2021.125939. Epub 2021 Sep 14.

Abstract

Exploration of the algae-derived biobutanol synthesis has become one of the hotspots due to its highly cost-effective and environment-friendly features. In this study, a solventogenic strain Clostridium sp. strain WK produced 13.96 g/L butanol with a maximal yield of 0.41 g/g from glucose in the presence of 24 g/L butyrate. Transcriptional analysis indicated that the acid re-assimilation of this strain was predominantly regulated by genes buk-ptb rather than ctfAB, explaining its special phenotypes including high butyrate tolerance and the pH-independent fermentation. In addition, a butyric acid-mediated hydrolytic system was established for the first time to release a maximal yield of 0.35 g/g reducing sugars from the red algal biomass (Gelidium amansii). Moreover, 4.48 g/L of butanol was finally achieved with a significant enhancement by 29.9 folds. This work reveals an unconventional metabolic pathway for butanol synthesis in strain WK, and demonstrates the feasibility to develop renewable biofuels from marine resources.

摘要

由于藻类衍生生物丁醇合成具有高性价比和环境友好的特点,对其的探索已成为研究热点之一。在本研究中,产溶剂梭菌属菌株WK在24 g/L丁酸盐存在的情况下,从葡萄糖中产生了13.96 g/L丁醇,最大产量为0.41 g/g。转录分析表明,该菌株的酸再同化主要受基因buk-ptb而非ctfAB调控,这解释了其特殊表型,包括高丁酸盐耐受性和与pH无关的发酵。此外,首次建立了丁酸介导的水解系统,从红藻生物质(石花菜)中释放出最大产量为0.35 g/g的还原糖。此外,最终获得了4.48 g/L的丁醇,产量显著提高了29.9倍。这项工作揭示了菌株WK中丁醇合成的非常规代谢途径,并证明了从海洋资源开发可再生生物燃料的可行性。

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