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In vitro Studies on lignocellulose degradation by microbial strains isolated from composting processes

机译:堆肥过程中分离出的微生物菌株对木质纤维素降解的体外研究

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An in vitro study of different strains isolated from composting piles in relation to their capacity to biodegrade lignocellulose was achieved. Thirteen microorganisms (five bacteria, one actinomycete, and seven fungi) isolated from compost windrows were grown on agricultural wastes and analyzed for cellulose, hemicellulose, and lignin degradation. Hemicellulose fraction was degraded to a lesser extent because only two of the isolates, B122 and B541, identified as Bacillus licheniformis and Brevibacillus parabrevis, respectively, were able to decrease the concentration of this polymer. On the contrary, most of the isolates were capable of reducing cellulose and lignin concentrations; strain B541 was the most active cellulose degrader (51%), while isolate B122 showed higher lignin degradation activity (68%). Consequently, an increase in humification indices was detected, especially with respect to humification index (HI) for both bacteria and CAH/AF in the case of strain B122. According to these data, the use of microbial inoculants as a tool to improve organic matter biodegradation processes (i.e., composting) may become important if microorganisms' capabilities are in accordance with the final characteristics required in the product (high humic content, lignin content decrease, cellulose concentration decrease, etc.).
机译:从堆肥堆中分离出的不同菌株在生物降解木质纤维素方面的能力得到了体外研究。从堆肥堆肥中分离出的13种微生物(5种细菌,1种放线菌和7种真菌)在农业废弃物上生长,并分析了纤维素,半纤维素和木质素的降解。半纤维素部分的降解程度较小,这是因为只有两个分离株B122和B541分别被鉴定为地衣芽孢杆菌和副短杆菌,能够降低该聚合物的浓度。相反,大多数分离株能够降低纤维素和木质素的浓度。 B541菌株是活性最高的纤维素降解剂(51%),而分离株B122则显示较高的木质素降解活性(68%)。因此,在菌株B122的情况下,尤其是相对于细菌和CAH / AF的增湿指数(HI),均检测到了增湿指数的增加。根据这些数据,如果微生物的能力符合产品所需的最终特性(高腐殖质含量,木质素含量降低),那么使用微生物接种剂作为改善有机物生物降解过程(即堆肥)的工具可能就变得很重要。 ,纤维素浓度降低等)。

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