本土木霉属真菌菌株对杨树营养部分废弃物处理的转化

IF 0.5 Q4 CHEMISTRY, MULTIDISCIPLINARY
O. O. Mamaeva, E. Isaeva, T. Ryazanova
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引用次数: 0

摘要

本文介绍了木霉属微桃真菌酶复合物菌株M99-9和K6-15在混合底物上的影响。结果表明,菌株k6 - 15m99 -9在生物降解过程中使底物中提取物含量降低2.1-2.4倍,多糖含量降低1.5-1.8倍,木质素酶物质降低1.2-1.4倍。这是高达9-12%的腐殖质物质的积累。在菌株M99-9的培养过程中,底物质量下降了17.3%,菌株K6 - 15-30%。菌株K6-15在该基质上的产量最高。菌株K6-15培养2周内分生孢子的生长量为16.6·108 CFU/g,菌株M99-9 - 11,5·108 CFU/g。在木霉属真菌的培养过程中,孢子的高产和腐殖质物质的形成使得利用杨树的营养部分作为原料获得生物制品“木霉素”或土壤腐殖质化成为可能
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Conversion of Waste Processing of the Vegetative Part of the Poplar by Indigenous Strains of Fungi of the Genus Trichoderma
The article presents the results of a study of the impact of the enzyme complex strains M99-9 and K6-15 micro-peach fungi of the genus Trichoderma on a mixed substrate. It is established that in the process of biodegradation with strains K6-15 M99-9 in the substrate reduced content of extractives 2.1-2.4 times that of the polysaccharide is 1.5-1.8 times, and ligninase substances 1.2-1.4 times. This was an accumulation of up to 9-12% of humic substances. The decrease in the mass of the substrate during the cultivation of the strain M99-9 was 17.3%, and the strain K6 – 15-30% less. The most productive on this substrate is strain K6-15. The growth of conidia within two weeks of cultivation for strain K6-15 was 16.6·108 CFU/g and strain M99-9 – 11,5·108 CFU/g. High yield of spores and formation of humic substances during cultivation of fungi of the genus Trichoderma makes it possible to use the vegetative part of a poplar as raw materials for receiving a biological product “Trichodermin” or humification of the soil
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来源期刊
CiteScore
1.10
自引率
0.00%
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13
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