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开放式微生物群落主要由梭菌属和真杆菌属组成,可将甲醇转化为异丁酸酯和正丁酸酯。

Open microbiome dominated by Clostridium and Eubacterium converts methanol into i-butyrate and n-butyrate.

机构信息

Centre for Microbial Ecology and Technology (CMET), Faculty of Bioscience Engineering, Ghent University, Coupure Links 653, B-9000, Ghent, Belgium.

Department of Biotechnology, Delft University of Technology, Van der Maasweg 9, 2629 HZ, Delft, Netherlands.

出版信息

Appl Microbiol Biotechnol. 2020 Jun;104(11):5119-5131. doi: 10.1007/s00253-020-10551-w. Epub 2020 Apr 4.

Abstract

Isobutyrate (i-butyrate) is a versatile platform chemical, whose acid form is used as a precursor of plastic and emulsifier. It can be produced microbially either using genetically engineered organisms or via microbiomes, in the latter case starting from methanol and short-chain carboxylates. This opens the opportunity to produce i-butyrate from non-sterile feedstocks. Little is known on the ecology and process conditions leading to i-butyrate production. In this study, we steered i-butyrate production in a bioreactor fed with methanol and acetate under various conditions, achieving maximum i-butyrate productivity of 5.0 mM day, with a concurrent production of n-butyrate of 7.9 mM day. The production of i-butyrate was reversibly inhibited by methanogenic inhibitor 2-bromoethanesulfonate. The microbial community data revealed the co-dominance of two major OTUs during co-production of i-butyrate and n-butyrate in two distinctive phases throughout a period of 54 days and 28 days, respectively. The cross-comparison of product profile with microbial community composition suggests that the relative abundance of Clostridium sp. over Eubacterium sp. is correlated with i-butyrate productivity over n-butyrate productivity.

摘要

异丁酸(i-butyrate)是一种多功能的平台化学品,其酸形式可用作塑料和乳化剂的前体。它可以通过基因工程生物体或微生物组来微生物生产,在后一种情况下,它可以从甲醇和短链羧酸酯开始生产。这为使用非无菌原料生产 i-butyrate 提供了机会。关于导致 i-butyrate 生产的生态学和工艺条件,人们知之甚少。在这项研究中,我们在生物反应器中用甲醇和醋酸盐在各种条件下引导 i-butyrate 的生产,实现了 5.0 mM/day 的最大 i-butyrate 生产力,同时生产了 7.9 mM/day 的 n-butyrate。产甲烷抑制剂 2-溴乙磺酸盐可逆地抑制 i-butyrate 的产生。微生物群落数据显示,在为期 54 天和 28 天的两个不同阶段,两种主要 OTU 在 i-butyrate 和 n-butyrate 共同生产过程中的共同优势。产物特征与微生物群落组成的交叉比较表明,Clostridium sp.的相对丰度与 i-butyrate 生产力相对于 n-butyrate 生产力的相关性。

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