微生物法降解木质素的研究进展  被引量:7

Microbial degradation of lignin: a review

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作  者:刘瑞 张丽[2] 孙鹏[2] 徐刚[1] 曹颖[1] 胡尚连[1] 赵博[1] LIU Rui;ZHANG Li;SUN Peng;XU Gang;CAO Ying;HU Shanglian;ZHAO Bo(Bamboo Research Institute,School of Life Science and Engineering,Southwest University of Science and Technology,Mianyang 621010,Sichuan,China;Sichuan Academy of Forestry,Chengdu 610081,Sichuan,China)

机构地区:[1]西南科技大学生命科学与工程学院竹类研究所,四川绵阳621010 [2]四川省林业科学研究院,四川成都610081

出  处:《微生物学通报》2023年第7期3232-3244,共13页Microbiology China

基  金:国家重点研发计划(2021YFD2200500);四川省“十四五”农作物及畜禽育种攻关计划(2021YFYZ0006)。

摘  要:生物质是代替石化资源生产能源和化学品的关键资源,木质素作为植物细胞壁的主要成分已经在很多行业中得到了广泛的应用。然而,由于木质素结构复杂且难以降解,成为生物质资源利用的最大障碍,因此,去除或者降解木质素是利用细胞壁中其他成分的关键步骤。许多行业使用有害化学物质降解木质素,严重危害了生态环境,自然界中木质素经常被包括真菌和细菌在内的微生物降解,因此,研究微生物降解木质素的机制为解决这一问题提供了可能性。本文讨论了木质素的化学组成成分,重点讨论了自然界降解木质素的微生物种类及其降解机制,包括各种真菌和细菌的木质素降解活性,描述了由各种微生物特别是白腐真菌、褐腐真菌和细菌产生的木质素降解酶,并展望了今后木质素生物降解的研究和应用的可能方向。Lignocellulosic biomass represents a crucial resource for sustainable development by replacing petroleum-based production systems.Lignin,a major component of plant cell walls,has been widely used in many industries.However,it poses a challenge to the utilization of lignocellulosic biomass due to the recalcitrance and complex structure.Therefore,decomposition or removal of lignin is the key to the utilization of other cell wall components.Lignin is naturally degraded by many different species of microorganisms,including fungi and bacteria,and the mechanisms underlying the degradation of lignin by microorganisms provide a host of possibilities to overcome the challenges of using harmful chemicals to degrade lignin biowaste in many industries.This review discussed the chemical constituents of lignin,the lignin-degrading microbial species,such as fungi and bacteria,and the mechanisms,and the lignin-degrading enzymes produced by a variety of microorganisms,especially the white-rot fungi,brown-rot fungi,and bacteria.Finally,the possible trends of research and applications of lignin biodegradation were prospected.

关 键 词:生物质 木质素 微生物 生物降解 木质素降解酶 

分 类 号:TK6[动力工程及工程热物理—生物能]

 

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