Snajdr J, Baldrian P
Laboratory of Biochemistry of the Wood-Rotting Fungi, Institute of Microbiology, Academy of Sciences of the Czech Republic, Prague, Czechia.
Folia Microbiol (Praha). 2006;51(6):579-90. doi: 10.1007/BF02931623.
The extracellular enzyme activity and changes in soil bacterial community during the growth of the ligninolytic fungus Pleurotus ostreatus were determined in nonsterile soil with low and high available carbon content. In soil with P. ostreatus, the activity of ligninolytic enzymes laccase and Mn-peroxidase was several orders of magnitude higher than in soil without the fungus. Addition of lignocellulose to soil increased the activity of cellulolytic fungi and the production of Mn-peroxidase by P. ostreatus. The counts of heterotrophic bacteria were more significantly affected by the presence of lignocellulose than by P. ostreatus. The effects of both substrate addition and time (succession) were more significant factors affecting the soil bacterial community than the presence of P. ostreatus. Bacterial community structure was affected by fungal colonization in low carbon soil, where a decrease of diversity and changes in substrate utilization profiles were detected.
在具有低有效碳含量和高有效碳含量的非无菌土壤中,测定了木质素分解真菌糙皮侧耳生长期间的细胞外酶活性和土壤细菌群落的变化。在含有糙皮侧耳的土壤中,木质素分解酶漆酶和锰过氧化物酶的活性比不含该真菌的土壤高几个数量级。向土壤中添加木质纤维素增加了纤维素分解真菌的活性以及糙皮侧耳产生锰过氧化物酶的量。与糙皮侧耳相比,木质纤维素的存在对异养细菌数量的影响更为显著。底物添加和时间(演替)的影响比糙皮侧耳的存在更是影响土壤细菌群落的重要因素。在低碳土壤中,细菌群落结构受到真菌定殖的影响,检测到多样性降低和底物利用谱的变化。