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首页> 外文期刊>Applied biochemistry and microbiology >Degradation of a Lignin-Carbohydrate Substrate by Soil Fungi Producing Laccase and Cellobiose Dehydrogenase
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Degradation of a Lignin-Carbohydrate Substrate by Soil Fungi Producing Laccase and Cellobiose Dehydrogenase

机译:产生漆酶和纤维二糖脱氢酶的土壤真菌降解木质素碳水化合物底物

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摘要

The growth of nonsporulating mycelial fungi INBI 2-26(+), a producer of laccase; INBI 2-26(–), a producer of cellobiose dehydrogenase; and their mixed culture on lignin–carbohydrate substrates under conditions of submerged fermentation was studied. The degrees of degradation of lignin, cellulose, and hemicellulose of cut straw over 23 days amounted to 29.8, 51.4, and 72% for the laccase producer; 15.8, 33.9, and 59.1% forthe cellobiose dehydrogenase producer; and 15.8, 39.4, and 64.5% for the mixed culture, respectively. The laccase activity in the medium when strain 2-26(+) was cultivated individually reached its maximum on day 28; the activity of cellobiose dehydrogenase of strain 2-26(–), on days 14–28. A method for determining cellobiose dehydrogenase activity in the presence of laccase was developed. In the mixed culture, both enzymes were formed; however, the level of laccase synthesis was 1.5-fold lower compared to that of strain 2-26(+), whilesynthesis of cellobiose dehydrogenase was similar to that of the corresponding producer. Cellobiose dehydrogenase failed to boost the action of laccase while degrading the lignin of straw.
机译:非孢子菌真菌真菌INBI 2-26(+)的生长,漆酶的产生者;纤维二糖脱氢酶生产商INBI 2-26(–);并研究了它们在水下发酵条件下在木质素-碳水化合物底物上的混合培养。漆酶生产者的木质素,纤维素和切秸秆的半纤维素在23天内的降解程度分别为29.8%,51.4%和72%;纤维二糖脱氢酶生产者的15.8%,33.9%和59.1%;混合培养分别为15.8、39.4和64.5%。当菌株2-26(+)单独培养时,在培养基中的漆酶活性在第28天达到最大值。第14-28天的菌株2-26(-)的纤维二糖脱氢酶活性。开发了一种在漆酶存在下测定纤维二糖脱氢酶活性的方法。在混合培养中,两种酶均形成。然而,漆酶的合成水平比菌株2-26(+)低1.5倍,而纤维二糖脱氢酶的合成与相应生产者相似。纤维二糖脱氢酶在降解秸秆木质素的同时未能增强漆酶的作用。

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