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Isolation of Bacillus sp. strains capable of decomposing alkali lignin and their application in combination with lactic acid bacteria for enhancing cellulase performance

机译:芽孢杆菌的分离能够分解碱木质素的菌株及其与乳酸菌结合使用以提高纤维素酶的性能

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摘要

Effective biological pretreatment method for enhancing cellulase performance was investigated. Two alkali lignin-degrading bacteria were isolated from forest soils in Japan and named CS-1 and CS-2. 16S rDNA sequence analysis indicated that CS-1 and CS-2 were Bacillus sp. Strains CS-1 and CS-2 displayed alkali lignin degradation capability. With initial concentrations of 0.05–2.0 g L−1, at least 61% alkali lignin could be degraded within 48 h. High laccase activities were observed in crude enzyme extracts from the isolated strains. This result indicated that alkali lignin degradation was correlated with laccase activities. Judging from the net yields of sugars after enzymatic hydrolysis, the most effective pretreatment method for enhancing cellulase performance was a two-step processing procedure (pretreatment using Bacillus sp. CS-1 followed by lactic acid bacteria) at 68.6%. These results suggest that the two-step pretreatment procedure is effective at accelerating cellulase performance.
机译:研究了提高纤维素酶性能的有效生物预处理方法。从日本的森林土壤中分离出两种降解木质素的碱性细菌,分别命名为CS-1和CS-2。 16S rDNA序列分析表明CS-1和CS-2是芽孢杆菌。菌株CS-1和CS-2显示出碱性木质素降解能力。初始浓度为0.05–2.0 g L-1,在48小时内至少有61%的碱性木质素会降解。在来自分离菌株的粗酶提取物中观察到高的漆酶活性。该结果表明碱木质素的降解与漆酶活性有关。从酶水解后糖的净产率来看,提高纤维素酶性能的最有效的预处理方法是两步处理程序(使用芽孢杆菌属CS-1继之以乳酸菌进行预处理),达到68.6%。这些结果表明两步预处理程序可有效地加速纤维素酶的性能。

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