Departments of Plant Genetics and Biophysics, Weizmann Institute of Science, Rehovot 76100, Israel.
Appl Environ Microbiol. 1983 Jul;46(1):55-61. doi: 10.1128/aem.46.1.55-61.1983.
Aspergillus japonicus is an efficient degrader of phenolics and carbohydrates present in a mixture of soluble lignocarbohydrate complexes extracted from wheat straw. Trichoderma sp. attacked part of the carbohydrate but hardly affected the aromatic portion of this solution. Polyporus versicolor had a complex effect; polymerization of low-molecular-size phenolics accompanied the degradation of aromatic and carbohydrate polymers. The addition of xylose to the medium facilitated depolymerization of lignin by the fungi tested and prevented the polymerization of low-molecular-size fractions of lignocarbohydrate complexes by P. versicolor. P. versicolor, in contrast to A. japonicus and Trichoderma sp., also excreted into the medium considerable amounts of laccase, but only in the absence of endogenous or exogenous carbohydrates. Apparently, laccase is involved in polymerization rather than degradation of lignin in this organism. A number of extracellular glycanases were also secreted by these fungi.
米曲霉是一种有效的酚类和碳水化合物的降解菌,这些酚类和碳水化合物存在于从小麦秸秆中提取的可溶性木质素碳水化合物复合物的混合物中。木霉属的微生物攻击了部分碳水化合物,但几乎没有影响该溶液的芳香部分。杂色云芝的影响较为复杂;聚合低分子量酚类物质伴随着芳香族和碳水化合物聚合物的降解。向培养基中添加木糖有利于所测试的真菌对木质素的解聚,并防止杂色云芝对木质素碳水化合物复合物的低分子量部分进行聚合。与米曲霉和木霉属微生物不同,杂色云芝还向培养基中分泌了大量的漆酶,但仅在没有内源性或外源性碳水化合物的情况下。显然,漆酶参与了该生物的木质素聚合而不是降解。这些真菌还分泌了许多细胞外聚糖酶。