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首页> 外文期刊>Indian Journal of Experimental Biology >Degradation of xenobiotic compounds by lignin-degrading white-rot fungi: enzymology and mechanisms involved
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Degradation of xenobiotic compounds by lignin-degrading white-rot fungi: enzymology and mechanisms involved

机译:木质素降解白腐真菌降解异种生物化合物:酶学和涉及的机制

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White-rot fungi (WRF) are ubiquitous in nature with their natural ability to compete and survive. WRF are the only organisms known to have the ability to degrade and mineralize recalcitrant plant polymer lignin. Their potential to degrade second most abundant carbon reserve material lignin on the earth make them important link in global carbon cycle. WRF degrade lignin by its unique ligninolytic enzymatic machinery including lignin peroxidase, manganese peroxidase, laccase, cellobiose dehydrogenase, H2O2-generating enzymes, etc. The ligninolytic enzymes system is non-specific, extracellular and free radical based that allows them to degrade structurally diverse range of xenobiotic compounds. Lignin peroxidase and manganese peroxidase carry out direct and indirect oxidation as well as reduction of xenobiotic compounds. Indirect reactions involved redox mediators such as veratryl alcohol and Mn2+. Reduction reactions are carried out by carboxyl, superoxide and semiquinone radicals, etc. Methylation is used as detoxification mechanism by WRF. Highly oxidized chemicals are reduced by transmembrane redox potential. Degradation of a number of environmental pollutants by ligninolytic system of white rot fungi is described in the present review.
机译:白腐真菌(WRF)在自然界中无处不在,具有竞争和生存的天然能力。 WRF是已知唯一具有降解和矿化顽固植物聚合物木质素能力的生物。它们具有降解地球上第二大储碳物质木质素的潜力,使其成为全球碳循环的重要纽带。 WRF通过其独特的木质素分解酶机制降解木质素,包括木质素过氧化物酶,锰过氧化物酶,漆酶,纤维二糖脱氢酶,H2O2生成酶等。木质素分解酶系统是基于细胞外和自由基的非特异性酶,可使其降解结构多样的范围异生物化合物。木质素过氧化物酶和锰过氧化物酶进行直接和间接氧化以及异生物质化合物的还原。间接反应涉及氧化还原介体,如藜芦醇和Mn2 +。还原反应通过羧基,超氧化物和半醌自由基等进行。甲基化被WRF用作解毒机理。跨膜氧化还原电位可降低高度氧化的化学物质。在本综述中描述了通过白腐真菌的木质素分解系统降解许多环境污染物。

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