INHIBITION OF THE GROWTH OF TOLERANT YEAST Saccharomyces cerevisiae STRAIN I136 BY A MIXTURE OF SYNTHETIC INHIBITORS

Q4 Agricultural and Biological Sciences
E. I. Riyanti, E. Listanto
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引用次数: 2

Abstract

Biomass from lignocellulosic wastes is a potential source for biobased products.  However, one of the constraints in utilization of biomass hydrolysate is the presence of inhibitors. Therefore, the use of inhibitor-tolerant microorganisms in the fermentation is required. The study aimed to investigate the effect of a mixture of inhibitors on the growth of Saccharomyces cerevisiae strain I136 grown in medium containing synthetic inhibitors (acetic acid, formic acid, furfural, 5-hydroxymethyl furfural/5-HMF, and levulinic acid) in four different concentrations with a mixture of carbon sources, glucose  (50 g.l-1) and xylose (50 g.l-1) at 30oC. The parameters related to growth and fermentation products were observed. Results showed that the strain was able to grow in media containing natural inhibitors (BSL medium) with µmax of 0.020/h. Higher level of synthetic inhibitors prolonged the lag phase, decreased the cell biomass and ethanol production, and specific growth rate. The strain could detoxify furfural and 5-HMF and produced the highest ethanol (Y(p/s) of 0.32 g.g-1) when grown in BSL. Glucose was utilized as its level decreased in a result of increase in cell biomass, in contrast to xylose which was not consumed. The highest cell biomass was produced in YNB with Y (x/s) value of 0.25 g.g-1. The strain produced acetic acid as a dominant side product and could convert furfural into a less toxic compound, hydroxyl furfural. This robust tolerant strain provides basic information on resistance mechanism and would be useful for bio-based cell factory using lignocellulosic materials.
多种合成抑制剂对耐除草剂酿酒酵母I136菌株生长的抑制作用
木质纤维素废料中的生物质是生物基产品的潜在来源。然而,生物质水解产物利用的制约因素之一是抑制剂的存在。因此,需要在发酵过程中使用耐抑制剂微生物。本研究旨在研究抑制剂混合物对酿酒酵母菌株I136生长的影响,该菌株生长在含有四种不同浓度的合成抑制剂(乙酸、甲酸、糠醛、5-羟甲基糠醛/5-HMF和乙酰丙酸)的培养基中,碳源、葡萄糖(50 g.l-1)和木糖(50 g.l-1)的混合物在30℃下。观察了与生长和发酵产物相关的参数。结果表明,该菌株能够在含有天然抑制剂的培养基(BSL培养基)中生长,µmax为0.020/h。较高水平的合成抑制剂延长了滞后期,降低了细胞生物量和乙醇产量,并降低了比生长率。该菌株在BSL中生长时能解毒糠醛和5-HMF,产生最高的乙醇(Y(p/s)为0.32g.g-1)。葡萄糖被利用,因为它的水平由于细胞生物量的增加而降低,而木糖没有被消耗。YNB中产生的细胞生物量最高,Y(x/s)值为0.25g.g-1。该菌株产生乙酸作为主要副产物,可以将糠醛转化为毒性较小的化合物羟基糠醛。这种强大的耐受菌株提供了关于抗性机制的基本信息,并将对使用木质纤维素材料的生物基细胞工厂有用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Indonesian Journal of Agricultural Science
Indonesian Journal of Agricultural Science Agricultural and Biological Sciences-Soil Science
CiteScore
1.00
自引率
0.00%
发文量
5
审稿时长
12 weeks
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