Department of Bioscience & Biotechnology, Banasthali Vidyapith, Rajasthan 304022, India.
Department of Bioscience & Biotechnology, Banasthali Vidyapith, Rajasthan 304022, India.
Bioresour Technol. 2022 May;351:126903. doi: 10.1016/j.biortech.2022.126903. Epub 2022 Feb 25.
The present study demonstrates a novel strategy involving two-step fermentation of lignocellulosic hydrolysate for the integrated production of ethanol and xylitol using a newly isolated yeast strain, Candida sojae JCM 1644. The isolated strain was characterised by its carbohydrate assimilation efficiency and tolerance towards inhibitors generated during pretreatment and fermentation of lignocellulosic biomass. In brief, the study comprised alkali treatment of Brassica juncea followed by its saccharification with cellulase consortia. An isolated strain was used for the co-production of xylitol and ethanol from sugar hydrolysate, and several parameters were systematically optimised for maximum co-production of ethanol and xylitol. Out of total glucose (149.72 g/L) and xylose (84.21 g/L) present in biomass hydrolysate, a product yield of 0.45 g/g (ethanol) and 0.62 g/g (xylitol) was achieved for a two-step fermentation process, which was 15.57% and 11.78% higher than the yield achieved for ethanol and xylitol, respectively, in a one-step fermentation process.
本研究提出了一种两步发酵策略,利用新分离的酵母菌株大豆假丝酵母 JCM 1644,从木质纤维素水解液中同时生产乙醇和木糖醇。该分离菌株的特点是对碳水化合物的同化效率高,并且对木质纤维素生物质预处理和发酵过程中产生的抑制剂具有耐受性。简而言之,该研究包括油菜的碱处理,然后用纤维素酶混合物进行糖化。利用一株分离菌从糖水解液中同时生产木糖醇和乙醇,并对几个参数进行了系统优化,以实现乙醇和木糖醇的最大联产。从生物质水解液中的总葡萄糖(149.72 g/L)和木糖(84.21 g/L)中,两步发酵过程的产物得率为 0.45 g/g(乙醇)和 0.62 g/g(木糖醇),分别比一步发酵过程中乙醇和木糖醇的得率高 15.57%和 11.78%。