木质纤维素生物量
纤维素酶
重组DNA
酿酒酵母
酵母
木质素
化学
生物量(生态学)
生物化学
细胞外
细胞壁
纤维素
食品科学
生物
生物技术
基因
有机化学
农学
作者
Jie Li,Yu Zeng,Weibin Wang,Qing-Qing Wan,Chen‐Guang Liu,Riaan den Haan,Willem H. van Zyl,Xin‐Qing Zhao
标识
DOI:10.1016/j.biortech.2022.128132
摘要
Sustainable bioproduction usingcarbon neutral feedstocks, especially lignocellulosic biomass, has attracted increasing attention due to concern over climate change and carbon reduction. Consolidated bioprocessing (CBP) of lignocellulosic biomass using recombinantyeast of Saccharomyces cerevisiaeis a promising strategy forlignocellulosic biorefinery. However, the economic viability is restricted by low enzyme secretion levels.For more efficient CBP, MIG1spsc01isolated from the industrial yeast which encodes the glucose repression regulator derivative was overexpressed. Increased extracellular cellobiohydrolase (CBH) activity was observed with unexpectedly decreased cell wall integrity. Further studies revealed that disruption ofCWP2, YGP1, andUTH1,which are functionally related toMIG1spsc01, also enhanced CBH secretion. Subsequently, improved cellulase production was achieved by simultaneous disruption ofYGP1and overexpression ofSED5, which remarkably increased extracellular CBH activity of 2.2-fold over the control strain. These results provide a novel strategy to improve the CBP yeast for bioconversion of carbon neutral biomass.
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