Literature DB >> 24615517

Ethanol production from galactose by a newly isolated Saccharomyces cerevisiae KL17.

Jae Hyung Kim1, Jayoung Ryu, In Young Huh, Soon-Kwang Hong, Hyun Ah Kang, Yong Keun Chang.   

Abstract

A wild-type yeast strain with a good galactose-utilization efficiency was newly isolated from the soil, and identified and named Saccharomyces cerevisiae KL17 by 18s RNA sequencing. Its performance of producing ethanol from galactose was investigated in flask cultures with media containing various combination and concentrations of galactose and glucose. When the initial galactose concentration was 20 g/L, it showed 2.2 g/L/h of substrate consumption rate and 0.63 g/L/h of ethanol productivity. Although they were about 70 % of those with glucose, such performance of S. cerevisiae KL17 with galactose was considered to be quite high compared with other strains reported to date. Its additional merit was that its galactose metabolism was not repressed by the existence of glucose. Its capability of ethanol production under a high ethanol concentration was demonstrated by fed-batch fermentation in a bioreactor. A high ethanol productivity of 3.03 g/L/h was obtained with an ethanol concentration and yield of 95 and 0.39 g/L, respectively, when the cells were pre-cultured on glucose. When the cells were pre-cultured on galactose instead of glucose, fermentation time could be reduced significantly, resulting in an improved ethanol productivity of 3.46 g/L/h. The inhibitory effects of two major impurities in a crude galactose solution obtained from acid hydrolysis of galactan were assessed. Only 5-Hydroxymethylfurfural (5-HMF) significantly inhibited ethanol fermentation, while levulinic acid (LA) was benign in the range up to 10 g/L.

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Year:  2014        PMID: 24615517     DOI: 10.1007/s00449-014-1161-1

Source DB:  PubMed          Journal:  Bioprocess Biosyst Eng        ISSN: 1615-7591            Impact factor:   3.210


  5 in total

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Review 4.  Saccharomyces cerevisiae and its industrial applications.

Authors:  Maria Parapouli; Anastasios Vasileiadis; Amalia-Sofia Afendra; Efstathios Hatziloukas
Journal:  AIMS Microbiol       Date:  2020-02-11

5.  Effect of post-treatment process of microalgal hydrolysate on bioethanol production.

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Journal:  Sci Rep       Date:  2020-10-07       Impact factor: 4.379

  5 in total

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