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Utilization of nano-gold tracing technique: Study the adsorption and transmission of laccase in mediator-involved enzymatic degradation of lignin during solid-state fermentation

机译:纳米金示踪技术的利用:研究漆酶在固态发酵过程中介导的木质素酶促降解中的吸附和传递

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摘要

The degradation of lignin waste by ligninolytic enzymes and the effect of mediators on lignin degradation were studied. Moreover, nano-gold tracing technique was innovatively used to study the adsorption and transmission mechanism of ligninolytic enzymes in the process of SSF. The results showed that the effects of three common mediators on the degradation of lignin were in descending order: veratryl alcohol >ABTS>Mn~(2+), and the optimum dosages were: Mn~(2+) (20 μMg~(-1)), ABTS (0.2 μM g~(-1)), veratryl alcohol (4 μM g~(-1)). A significantly high degradation ratio of lignin (31.8%) was achieved at the optimum dosages of ligninolytic enzymes and mediators. In addition, laccase, as a typical ligninolytic enzyme, was selected to conjugate to nano-gold for the study of adsorption and transmission mechanism. An obvious decrease of nano-gold-laccase conjugates was observed after 10 days of enzymatic hydrolysis and there were few laccase residues on the surface of straw fibers after 30 days of enzymatic hydrolysis. The present findings will advance the understanding of mediator-involved enzymatic degradation of lignin, as well as the adsorption and transmission mechanism of ligninolytic enzymes in lignin degradation, which could provide useful references for developing waste biotreatment technology.
机译:研究了木质素分解酶对木质素废物的降解以及介质对木质素降解的影响。此外,创新地使用了纳米金示踪技术来研究木质素分解酶在SSF过程中的吸附和传输机理。结果表明,三种常见介质对木质素降解的影响依次为:藜芦醇> ABTS> Mn〜(2+),最佳剂量为:Mn〜(2+)(20μMg〜(-)。 1)),ABTS(0.2μMg〜(-1)),藜芦醇(4μMg〜(-1))。在木质素分解酶和介质的最佳剂量下,木质素的降解率非常高(31.8%)。此外,漆酶作为一种典型的木质素分解酶,被选择与纳米金结合,以研究其吸附和传输机理。酶水解10天后,观察到纳米金-漆酶结合物明显减少,酶水解30天后,秸秆纤维表面的漆酶残留很少。本研究结果将促进对木质素介体参与的酶促降解的理解,以及木质素降解过程中木质素分解酶的吸附和传递机理,可为开发废物生物处理技术提供有益的参考。

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