Literature DB >> 32388689

Simultaneous liquefaction, saccharification, and fermentation of L-lactic acid using aging paddy rice with hull by an isolated thermotolerant Enterococcus faecalis DUT1805.

Yaqin Sun1, Yong Yang1, Huihui Liu1, Chuanxiang Wei1, Wenbin Qi1, Zhilong Xiu2.   

Abstract

Simultaneous liquefaction, saccharification, and fermentation (SLSF) has attracted much attention for the production of bio-based chemicals, including L-lactic acid, due to its high efficiency and low cost. In this study, a lactic acid-producing bacterium with high tolerance of temperature up to 55 °C was isolated and characterized as Enterococcus faecalis DUT1805. Various strategies of stepwise controlled temperature were proposed and investigated for glucose utilization. The results indicated that E. faecalis DUT 1805 exhibited an optimal temperature at 50 °C, which could achieve temperature compatibility of enzyme, saccharification, and fermentation, and decrease the possibility of contamination by the other microorganisms during the large-scale fermentation. To reduce the cost of raw material and operation for lactic acid production, aging paddy rice with hull (APRH) was used in L-lactic acid production by simultaneous liquefaction, saccharification, and fermentation (SLSF). An open SLSF operation at 50 °C and pH 6.5, and 17% (w/v) solid loading in 5 L bioreactors was demonstrated with the lactic acid titer, yield, and productivity of 73.75 g/L, 87% to initial starch, and 2.17 g/(L h), respectively.

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Keywords:  Aging paddy rice with hull (APRH); Corn steep liquor powder (CSLP); High-thermotolerance; Lactic acid; Saccharification and fermentation (SLSF); Simultaneous liquification

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Year:  2020        PMID: 32388689     DOI: 10.1007/s00449-020-02364-y

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


  3 in total

1.  An aptly industrialized bioprocess for lactic acid production from corn stover using thermotolerant microbial consortia.

Authors:  Yaqin Sun; Xiaoying Li; Chuanxiang Wei; Wenbin Qi; Zhilong Xiu
Journal:  Bioprocess Biosyst Eng       Date:  2021-07-25       Impact factor: 3.210

2.  Transcriptome profile of carbon catabolite repression in an efficient l-(+)-lactic acid-producing bacterium Enterococcus mundtii QU25 grown in media with combinations of cellobiose, xylose, and glucose.

Authors:  Yuh Shiwa; Haruko Fujiwara; Mao Numaguchi; Mohamed Ali Abdel-Rahman; Keisuke Nabeta; Yu Kanesaki; Yukihiro Tashiro; Takeshi Zendo; Naoto Tanaka; Nobuyuki Fujita; Hirofumi Yoshikawa; Kenji Sonomoto; Mariko Shimizu-Kadota
Journal:  PLoS One       Date:  2020-11-17       Impact factor: 3.240

3.  The advanced performance of microbial consortium for simultaneous utilization of glucose and xylose to produce lactic acid directly from dilute sulfuric acid pretreated corn stover.

Authors:  Yaqin Sun; Xiaoying Li; Lida Wu; Yi Li; Fan Li; Zhilong Xiu; Yi Tong
Journal:  Biotechnol Biofuels       Date:  2021-12-07       Impact factor: 6.040

  3 in total

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