首页> 外文期刊>Journal of industrial microbiology & biotechnology >A strategy to prevent the occurrence of Lactobacillus strains using lactate-tolerant yeast Candida glabrata in bioethanol production.
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A strategy to prevent the occurrence of Lactobacillus strains using lactate-tolerant yeast Candida glabrata in bioethanol production.

机译:一种在生物乙醇生产中使用耐乳酸的酵母假丝酵母念珠菌防止乳杆菌菌株发生的策略。

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摘要

Contamination of Lactobacillus sp. in the fermentation broth of bioethanol production decreases ethanol production efficiency. Although the addition of lactate to the broth can effectively inhibit the growth of Lactobacillus sp., it also greatly reduces the fermentation ability of Saccharomyces cerevisiae. To overcome this conflict, lactate-tolerant yeast strains were screened. Candida glabrata strain NFRI 3164 was found to exhibit both higher levels of lactate tolerance and fermentation ability. Co-cultivation of C. glabrata was performed with Lactobacillus brevis and Lb. fermentum, which were reported as major contaminating bacteria during bioethanol production, in culture medium containing 2% lactate. Under these culture conditions, the growth of Lactobacillus strains was greatly inhibited, but the ethanol production of C. glabrata was not significantly affected. Our data show the possibility of designing an effective fuel ethanol production process that eliminates contamination by Lactobacillus strains through the combined use of lactate addition and C. glabrata.
机译:乳酸杆菌的污染。在生物乙醇生产的发酵液中降低乙醇生产效率。尽管向肉汤中添加乳酸可以有效地抑制乳酸杆菌的生长,但是它也大大降低了酿酒酵母的发酵能力。为了克服这种冲突,筛选了耐乳酸的酵母菌株。发现光滑念珠菌菌株NFRI 3164表现出较高水平的乳酸耐受性和发酵能力。与短乳杆菌和Lb共同进行了光滑念珠菌的共培养。在含2%乳酸的培养基中,发酵菌是生物乙醇生产过程中的主要污染细菌。在这些培养条件下,乳酸菌菌株的生长受到了极大的抑制,但是光滑毛囊梭菌的乙醇产量没有受到明显的影响。我们的数据显示了设计一种有效的燃料乙醇生产工艺的可能性,该工艺可以通过结合使用乳酸和玻璃假丝酵母来消除乳酸杆菌菌株的污染。

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