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Laccase production and one-electron oxidation activity in wood degradation by the soft-rot deuteromycete graphium sp.

机译:漆酶的产生和软腐氘菌石墨sp对木材降解的单电子氧化活性。

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摘要

The mechanism of wood degradation by the soft-rot deuteromycete,Graphium sp.,was investigated.One-electron oxidation activity,assayed by ethylene generation from 2-keto-4-thiomethylbutyric acid(KTBA),and phenol oxidase activity were measured in intact cultures and in Sephadex G-50 fractions from the acetone-precipitated extracellular media,with glucose or wood as the carbon source for the cultures.Both the one-electron oxidation activity and the phenol oxidase activity were higher in wood culturesthan in glucose cultures.Most of the phenol oxidase activity in wood cultures appeared to derive from laccase.Most of the ethylene generation from KTBA was attributed to hydroxyl radicals,produced by a low molecular-weight substance in the extracellularmedia.This substance was composed of peptides.carbohydrates.and Fe(II),and catalyzed redox reactions between O`2 and unidentified electron donors,to produce hydroxyl radicals via H`2O`2.It is suggested that hydroxyl radicals may produce new phenolic substructures on the lignin polymer,making it susceptible to attack by laccase.Thus,both one-electron oxidation activity and laccase activity are important in wood degradation by Graphium Sp.
机译:研究了软腐氘菌Graphium sp。对木材的降解机理。完整测定了2-酮-4-硫代甲基丁酸(KTBA)产生的乙烯的单电子氧化活性和酚氧化酶活性。丙酮沉淀的细胞外培养基中以葡萄糖或木材为碳源,并在Sephadex G-50组分中进行培养。木材培养物中的单电子氧化活性和酚氧化酶活性均高于葡萄糖培养物中。木材培养物中酚氧化酶活性的似乎来自漆酶。KTBA产生的大部分乙烯均归因于细胞外培养基中低分子量物质产生的羟基自由基,该物质由肽,碳水化合物和铁组成。 (II),并催化O`2与未知电子给体之间的氧化还原反应,通过H`2O`2产生羟基自由基。木质素聚合物上的醇亚结构,使其很容易受到漆酶的攻击。因此,单电子氧化活性和漆酶活性对Graphium Sp降解木材都很重要。

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