首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Bacterial production of short-chain organic acids and trehalose from levulinic acid: A potential cellulose-derived building block as a feedstock for microbial production
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Bacterial production of short-chain organic acids and trehalose from levulinic acid: A potential cellulose-derived building block as a feedstock for microbial production

机译:从乙酰丙酸细菌生产短链有机酸和海藻糖:潜在的纤维素衍生构件,作为微生物生产的原料

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Levulinic acid (LA) is a platform chemical derived from cellulosic biomass, and the expansion of LA utilization as a feedstock is important for production of a wide variety of chemicals. To investigate the potential of LA as a substrate for microbial conversion to chemicals, we isolated and identified LA-utilizing bacteria. Among the six isolated strains, Pseudomonas sp. LA18T and Rhodococcus hoagie LA6W degraded up to 70 g/L LA in a high-cell-density system. The maximal accumulation of acetic acid by strain LA18T and propionic acid by strain LA6W was 13.6 g/L and 9.1 g/L, respectively, after a 4-day incubation. Another isolate, Burkholderia stabilis LA20W, produced trehalose extracellularly in the presence of 40 g/L LA to approximately 2 g/L. These abilities to produce useful compounds supported the potential of microbial LA conversion for future development and cellulosic biomass utilization. (C) 2014 Elsevier Ltd. All rights reserved.
机译:乙酰丙酸(LA)是衍生自纤维素生物质的一种平台化学品,因此扩大LA作为原料的利用对于生产多种化学品至关重要。为了研究洛杉矶作为微生物向化学物质转化的底物的潜力,我们分离并鉴定了利用洛杉矶的细菌。在六个分离的菌株中,假单胞菌属sp。在高细胞密度系统中,LA18T和红球菌LA6W的LA降解高达70 g / L。孵育4天后,菌株LA18T的乙酸最大积累量和菌株LA6W的丙酸最大积累量分别为13.6 g / L和9.1 g / L。在40 g / L LA至大约2 g / L的存在下,另一种分离株稳定的伯克霍尔德菌LA20W在细胞外产生了海藻糖。这些产生有用化合物的能力支持了微生物LA转化对于未来发展和纤维素生物质利用的潜力。 (C)2014 Elsevier Ltd.保留所有权利。

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