Heterozygous diploid structure of Amorphotheca resinae ZN1 contributes efficient biodetoxification on solid pretreated corn stover
Autor: | Zhihua Zhou, Gen Zou, Xia Yi, Xia Wang, Yanqing He, Jian Zhang, Qiuqiang Gao, Fengxian Hu, Lei Zhang, Jie Bao, Shihui Yang |
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Jazyk: | angličtina |
Rok vydání: | 2019 |
Předmět: |
0106 biological sciences
lcsh:Biotechnology Management Monitoring Policy and Law 01 natural sciences Applied Microbiology and Biotechnology DNA sequencing lcsh:Fuel Coordinate expression Transcriptome 03 medical and health sciences Synthetic biology lcsh:TP315-360 010608 biotechnology lcsh:TP248.13-248.65 Amorphotheca resinae ZN1 Gene 030304 developmental biology 0303 health sciences Heterozygous diploid Renewable Energy Sustainability and the Environment Chemistry Biorefinery Biodetoxification General Energy Corn stover Biochemistry Cellulosic ethanol Fermentation Biotechnology Gene pair |
Zdroj: | Biotechnology for Biofuels, Vol 12, Iss 1, Pp 1-18 (2019) |
ISSN: | 1754-6834 |
DOI: | 10.1186/s13068-019-1466-z |
Popis: | Background Fast, complete, and ultimate removal of inhibitory compounds derived from lignocellulose pretreatment is the prerequisite for efficient production of cellulosic ethanol and biochemicals. Biodetoxification is the most promising method for inhibitor removal by its unique advantages. The biodetoxification mechanisms of a unique diploid fungus responsible for highly efficient biodetoxification in solid-state culture was extensively investigated in the aspects of cellular structure, genome sequencing, transcriptome analysis, and practical biodetoxification. Results The inborn heterozygous diploid structure of A. resinae ZN1 uniquely contributed to the enhancement of inhibitor tolerance and conversion. The co-expression of gene pairs contributed to the enhancement of the degradation of lignocellulose-derived model inhibitors. The ultimate inhibitors degradation pathways and sugar conservation were elucidated by microbial degradation experimentation as well as the genomic and transcriptomic sequencing analysis. Conclusions The finding of the heterozygous diploid structure in A. resinae ZN1 on biodetoxification took the first insight into the global overview of biodetoxification mechanism of lignocellulose-derived inhibitors. This study provided a unique and practical biodetoxification biocatalyst of inhibitor compounds for lignocellulose biorefinery processing, as well as the synthetic biology tools on biodetoxification of biorefinery fermenting strains. |
Databáze: | OpenAIRE |
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