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题名

Genetic, transcriptional, and regulatory landscape of monolignol biosynthesis pathway in Miscanthus × giganteus

作者
通讯作者Diao,Ying
发表日期
2020-12-01
DOI
发表期刊
ISSN
1754-6834
EISSN
1754-6834
卷号13期号:1
摘要

Background: Miscanthus × giganteus is widely recognized as a promising lignocellulosic biomass crop due to its advantages of high biomass production, low environmental impacts, and the potential to be cultivated on marginal land. However, the high costs of bioethanol production still limit the current commercialization of lignocellulosic bioethanol. The lignin in the cell wall and its by-products released in the pretreatment step is the main component inhibiting the enzymatic reactions in the saccharification and fermentation processes. Hence, genetic modification of the genes involved in lignin biosynthesis could be a feasible strategy to overcome this barrier by manipulating the lignin content and composition of M. × giganteus. For this purpose, the essential knowledge of these genes and understanding the underlying regulatory mechanisms in M. × giganteus is required. Results: In this study, MgPAL1, MgPAL5, Mg4CL1, Mg4CL3, MgHCT1, MgHCT2, MgC3′H1, MgCCoAOMT1, MgCCoAOMT3, MgCCR1, MgCCR2, MgF5H, MgCOMT, and MgCAD were identified as the major monolignol biosynthetic genes in M. × giganteus based on genetic and transcriptional evidence. Among them, 12 genes were cloned and sequenced. By combining transcription factor binding site prediction and expression correlation analysis, MYB46, MYB61, MYB63, WRKY24, WRKY35, WRKY12, ERF021, ERF058, and ERF017 were inferred to regulate the expression of these genes directly. On the basis of these results, an integrated model was summarized to depict the monolignol biosynthesis pathway and the underlying regulatory mechanism in M. × giganteus. Conclusions: This study provides a list of potential gene targets for genetic improvement of lignocellulosic biomass quality of M. × giganteus, and reveals the genetic, transcriptional, and regulatory landscape of the monolignol biosynthesis pathway in M. × giganteus.[Figure not available: see fulltext.]

关键词
相关链接[Scopus记录]
收录类别
SCI ; EI
语种
英语
学校署名
其他
资助项目
National Natural Science Foundation of China[31571740] ; National High-tech RD Program[2012AA101801] ; Natural Science Foundation of Hubei Province[2013CFA103]
WOS研究方向
Biotechnology & Applied Microbiology ; Energy & Fuels
WOS类目
Biotechnology & Applied Microbiology ; Energy & Fuels
WOS记录号
WOS:000589821500002
出版者
EI入藏号
20204409419152
EI主题词
Cloning ; Bioethanol ; Saccharification ; Biomass ; Environmental impact ; Enzyme activity ; Biochemistry ; Biosynthesis ; Ethanol ; Transcription
EI分类号
Environmental Impact and Protection:454.2 ; Biotechnology:461.8 ; Genetic Engineering:461.8.1 ; Biology:461.9 ; Liquid Fuels:523 ; Biochemistry:801.2 ; Chemical Reactions:802.2 ; Organic Compounds:804.1 ; Cellulose, Lignin and Derivatives:811.3
Scopus记录号
2-s2.0-85094099732
来源库
Scopus
引用统计
被引频次[WOS]:12
成果类型期刊论文
条目标识符http://sustech.caswiz.com/handle/2SGJ60CL/209098
专题南方科技大学医学院
作者单位
1.School of Biology and Pharmaceutical Engineering,Wuhan Polytechnic University,Wuhan,430023,China
2.School of Medicine,Southern University of Science and Technology,Shenzhen,518055,China
3.School of Life Sciences,Nantong University,Nantong,226019,China
4.State Key Laboratory of Hybrid Rice,College of Life Sciences,Hubei Lotus Engineering Center,Wuhan University,Wuhan,430072,China
5.School of Chemistry,Chemical Engineering and Life Sciences,Wuhan University of Technology,Wuhan,430070,China
第一作者单位南方科技大学医学院
推荐引用方式
GB/T 7714
Zeng,Xiaofei,Sheng,Jiajing,Zhu,Fenglin,et al. Genetic, transcriptional, and regulatory landscape of monolignol biosynthesis pathway in Miscanthus × giganteus[J]. Biotechnology for Biofuels,2020,13(1).
APA
Zeng,Xiaofei.,Sheng,Jiajing.,Zhu,Fenglin.,Wei,Tianzi.,Zhao,Lingling.,...&Jin,Surong.(2020).Genetic, transcriptional, and regulatory landscape of monolignol biosynthesis pathway in Miscanthus × giganteus.Biotechnology for Biofuels,13(1).
MLA
Zeng,Xiaofei,et al."Genetic, transcriptional, and regulatory landscape of monolignol biosynthesis pathway in Miscanthus × giganteus".Biotechnology for Biofuels 13.1(2020).
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