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利用萃取双相发酵强化对香豆酸的异源生产

Intensification of p-coumaric acid heterologous production using extractive biphasic fermentation.

作者信息

Combes Jeanne, Imatoukene Nabila, Couvreur Julien, Godon Blandine, Brunissen Fanny, Fojcik Clémentine, Allais Florent, Lopez Michel

机构信息

URD Agro-Biotechnologies Industrielles (ABI), CEBB, AgroParisTech, Pomacle 51110, France.

Abolis Biotechnologies, Genopole Campus 1, Evry 91030, France.

出版信息

Bioresour Technol. 2021 Oct;337:125436. doi: 10.1016/j.biortech.2021.125436. Epub 2021 Jun 19.

Abstract

p-coumaric acid (p-CA) can be produced from D-glucose by an engineered S. cerevisiae strain. p-CA has antimicrobial properties and retro-inhibition activity. Moreover, p-CA is a hydrophobic compound, limiting its accumulation in fermentation broth. To overcome these issues all at once, a liquid-liquid extraction in-situ product recovery process using oleyl alcohol as extractant has been implemented in order to continuously extract p-CA from the broth. Media and pH impacts on strain metabolism were assessed, highlighting p-CA decarboxylase endogenous activity. Biphasic fermentations allowed an increase in p-CA respiratory production rates at both pH assessed (13.65 and 9.45 mg L.h at pH 6 and 4.5, respectively) compared to control ones (10.5 and 7.5 mg L.h at pH 6 and 4.5, respectively). Biphasic fermentation effects on p-CA decarboxylation were studied showing that continuous removal of p-CA decreased its decarboxylation into 4-vinylphenol at pH 4.5 (57 mg L in biphasic fermentation vs 173 mg L in control one).

摘要

对香豆酸(p-CA)可由工程改造的酿酒酵母菌株从D-葡萄糖生产而来。p-CA具有抗菌特性和反馈抑制活性。此外,p-CA是一种疏水性化合物,这限制了其在发酵液中的积累。为了一次性克服所有这些问题,已实施了一种以油醇为萃取剂的液-液萃取原位产物回收工艺,以便从发酵液中连续萃取p-CA。评估了培养基和pH对菌株代谢的影响,突出了p-CA脱羧酶的内源活性。与对照发酵(pH 6和4.5时分别为10.5和7.5 mg L·h)相比,双相发酵使在两个评估pH值(pH 6和4.5时分别为13.65和9.45 mg L·h)下p-CA的呼吸产生速率都有所提高。研究了双相发酵对p-CA脱羧作用的影响,结果表明,在pH 4.5时,连续去除p-CA可降低其脱羧生成4-乙烯基苯酚的量(双相发酵中为57 mg L,对照发酵中为173 mg L)。

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