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微生物耐受糠醛机制的研究进展
Alternative TitleResearch and Development on the Microbial Furfural-Tolerance Mechanism
张小欢1,2,3,4; 张宇1,2,3; 王琼1,2,3; 亓伟1,2,3; 许敬亮1,2,3; 王忠铭1,2,3; 袁振宏1,2,3,5
2017-06
Source Publication新能源进展
ISSN2095-560X
Volume5Issue:3Pages:189-196
Abstract由木糖脱水生成的糠醛会严重抑制微生物的生长与后续发酵过程。高温液态水和稀酸处理等是去除生物质中半纤维素较好的方法,却不可避免地会导致大量糠醛产生。本文简述糠醛的产生和降解途径及糠醛对微生物危害的研究进展,对糠醛耐受过程中涉及到的细胞形态分析与氧化胁迫、蛋白响应、基因响应和氧化还原平衡等进行了概述。
Other AbstractFurfural from xylose dehydration inhibits the microbial cell growth and subsequent fermentation.Hightemperature liquid water and dilute sulfuric acid are excellent ways to remove semi-cellulose from biomass,while furfuralwould be inevitably produced.In this paper,the studies on the microbial furfural-resistance mechanism were summarized.The production/degradation pathway of furfural and its negative impact on microorganism were described.The proteinresponse,gene response and redox balance involved in the furfural degradation process were analyzed and the effects offurfural on the cellular morphology and oxidative stress were studied.
Keyword糠醛 耐受机制 降解路径 氧化还原平衡 响应分析 furfural tolerance mechanism degradation pathway redox balance response analysis
DOI10.3969/j.issn.2095-560X.2017.03.005
Language中文
Citation statistics
Document Type期刊论文
Identifierhttp://ir.giec.ac.cn/handle/344007/16680
Collection中国科学院广州能源研究所
Corresponding Author张宇
Affiliation1.中国科学院广州能源研究所,广州510640;
2.中国科学院可再生能源重点实验室,广州510640;
3.广东省新能源和可再生能源研究开发与应用重点实验室,广州510640;
4.中国科学院大学,北京100049;
5.生物质能源河南省协同创新中心,郑州450002
First Author AffilicationGuangZhou Institute of Energy Conversion,Chinese Academy of Sciences
Recommended Citation
GB/T 7714
张小欢,张宇,王琼,等. 微生物耐受糠醛机制的研究进展[J]. 新能源进展,2017,5(3):189-196.
APA 张小欢.,张宇.,王琼.,亓伟.,许敬亮.,...&袁振宏.(2017).微生物耐受糠醛机制的研究进展.新能源进展,5(3),189-196.
MLA 张小欢,et al."微生物耐受糠醛机制的研究进展".新能源进展 5.3(2017):189-196.
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