Largely enhanced bioethanol production through the combined use of lignin-modified sugarcane and xylose fermenting yeast strain

Authors
Ko, Ja KyongJung, Je HyeongAltpeter, FredyKannan, BaskaranKim, Ha EunKim, Kyoung HeonAlper, Hal S.Um, YoungsoonLee, Sun-Mi
Issue Date
2018-05
Publisher
Elsevier BV
Citation
Bioresource Technology, v.256, pp.312 - 320
Abstract
The recalcitrant structure of lignocellulosic biomass is a major barrier in efficient biomass-to-ethanol bioconversion processes. The combination of feedstock engineering via modification in the lignin synthesis pathway of sugarcane and co-fermentation of xylose and glucose with a recombinant xylose utilizing yeast strain produced 148% more ethanol compared to that of the wild type biomass and control strain. The lignin reduced biomass led to a substantially increased release of fermentable sugars (glucose and xylose). The engineered yeast strain efficiently co-utilized glucose and xylose for fermentation, elevating ethanol yields. In this study, it was experimentally demonstrated that the combined efforts of engineering both feedstock and microorganisms largely enhances the bioconversion of lignocellulosic feedstock to bioethanol. This strategy will significantly improve the economic feasibility of lignocellulosic biofuels production.
Keywords
IMPROVES ETHANOL-PRODUCTION; SACCHAROMYCES-CEREVISIAE; BIOFUEL PRODUCTION; SIMULTANEOUS SACCHARIFICATION; DIRECTED EVOLUTION; ACETIC-ACID; FERMENTATION; PRETREATMENT; LIGNOCELLULOSE; RECALCITRANCE; Lignocellulosic bioethanol; Biomass recalcitrance; Lignin modification; Xylose utilizing strain; Co-fermentation
ISSN
0960-8524
URI
https://pubs.kist.re.kr/handle/201004/121437
DOI
10.1016/j.biortech.2018.01.123
Appears in Collections:
KIST Article > 2018
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