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与……共培养及2-苯乙醇的产物回收

Co-culture of and with Product Recovery of 2-Phenylethanol.

作者信息

Lukito Benedict Ryan, Basri Nurhidayah, Thong Aaron, Hermansen Christian, Weingarten Melanie, Peterson Eric Charles

机构信息

Singapore Institute of Food and Biotechnology Innovation (SIFBI), Agency for Science, Technology, and Research (A*STAR), 31 Biopolis Way, Level 6, Nanos, Singapore 138669, Republic of Singapore.

Institut National de la Recherche Scientifique - Eau Terre Environnement (INRS-ETE), 490 Couronne St, Quebec City, QC G1K 9A9, Canada.

出版信息

J Agric Food Chem. 2023 Jun 14;71(23):8991-8997. doi: 10.1021/acs.jafc.3c01356. Epub 2023 Jun 5.

Abstract

Production of 2-phenylethanol (2-PE) via is well-established. However, co-culture with other microbes in combination with product recovery (ISPR) yields improved selectivity and volumetric productivity. Fermentation of (MUCL 53775) with direct inclusion of absorptive polymer Hytrel3548 achieved ISPR, but accumulation of the byproduct phenylethyl acetate (PEA) was strongly favored. Co-culture of (MUCL 53775) with (MUCL 28072) with ISPR limited PEA production, thereby improving the 2-PE selectivity from 13 to 90%, compared to a pure culture of (MUCL 53775) under similar conditions. This improved the volumetric productivity by 85% compared to 2-PE ISPR with a pure culture of . This is the first report of co-culture in a two-phase fermentation for 2-PE bioproduction and demonstrates that interactions between co-culture and ISPR techniques can modulate bioproduction between 2-PE and byproduct PEA, and this technique will be explored for other strain combinations and for other high-value molecules of interest.

摘要

通过[具体方式]生产2-苯乙醇(2-PE)已得到充分确立。然而,与其他微生物共培养并结合产物回收(ISPR)可提高选择性和体积产率。将[微生物名称](MUCL 53775)与直接包含吸收性聚合物Hytrel3548进行发酵实现了ISPR,但副产物苯乙酸乙酯(PEA)的积累受到强烈促进。在ISPR条件下,将[微生物名称](MUCL 53775)与[微生物名称](MUCL 28072)共培养限制了PEA的产生,因此与在类似条件下[微生物名称](MUCL 53775)的纯培养相比,2-PE的选择性从13%提高到了90%。与[微生物名称]纯培养的2-PE ISPR相比,这使体积产率提高了85%。这是关于两阶段发酵中共培养用于2-PE生物生产的首次报道,并证明了共培养与ISPR技术之间的相互作用可以调节2-PE和副产物PEA之间的生物生产,并且将针对其他菌株组合和其他感兴趣的高价值分子探索该技术。

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