Vasil'chenko L G, Karapetian K N, Iachkova S N, ernova E S, Rabinovich M L
Bach Institute of Biochemistry, Russian Academy of Sciences, Leninskii pr. 33, Moscow, 119071 Russia.
Prikl Biokhim Mikrobiol. 2004 Jan-Feb;40(1):51-6.
The growth of nonsporulating mycelial fungi INBI 2-26(+), producer of laccase; INBI 2-26(-), producer of cellobiose dehydrogenase; and their mixed culture on lignin-carbohydrate substrates under conditions of submerged fermentation were 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% for the 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 to 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(+), while synthesis 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.
对非产孢丝状真菌INBI 2-26(+)(漆酶产生菌)、INBI 2-26(-)(纤维二糖脱氢酶产生菌)及其混合培养物在深层发酵条件下于木质素-碳水化合物底物上的生长情况进行了研究。在23天内,漆酶产生菌对切碎秸秆中木质素、纤维素和半纤维素的降解程度分别为29.8%、51.4%和72%;纤维二糖脱氢酶产生菌分别为15.8%、33.9%和59.1%;混合培养物分别为15.8%、39.4%和64.5%。单独培养2-26(+)菌株时,培养基中的漆酶活性在第28天达到最高;2-26(-)菌株的纤维二糖脱氢酶活性在第14至28天达到最高。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。在混合培养物中,两种酶均有形成;然而,漆酶的合成水平比2-26(+)菌株低1.5倍,而纤维二糖脱氢酶的合成与相应产生菌相似。在降解秸秆木质素时,纤维二糖脱氢酶未能增强漆酶的作用。