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从保加利亚森林土壤中分离出的白腐真菌产生的木质素分解酶复合物的潜力。

Potential of ligninolytic enzymatic complex produced by white-rot fungi from genus isolated from Bulgarian forest soil.

作者信息

Krumova Ekaterina, Kostadinova Nedelina, Miteva-Staleva Jeni, Stoyancheva Galina, Spassova Boryana, Abrashev Radoslav, Angelova Maria

机构信息

Department of Mycology The Stephan Angeloff Institute of Microbiology Bulgarian Academy of Sciences Sofia Bulgaria.

Department of General Microbiology The Stephan Angeloff Institute of Microbiology Bulgarian Academy of Sciences Sofia Bulgaria.

出版信息

Eng Life Sci. 2018 Jul 13;18(9):692-701. doi: 10.1002/elsc.201800055. eCollection 2018 Sep.

Abstract

Because of the crucial role of ligninolytic enzymes in a variety of industrial processes, the demand for a new effective producer has been constantly increasing. Furthermore, information on enzyme synthesis by autochthonous fungal strains is very seldom found. Two fungal strains producing ligninolytic enzymes were isolated from Bulgarian forest soil. They were identified as being and . These two strains were assessed for their enzyme activities, laccase (Lac), lignin peroxidase (LiP) and Mn-dependent peroxidase (MnP) in culture filtrate depending on the temperature and the type of nutrient medium. was selected as the better producer of ligninolytic enzymes. The production process was further improved by optimizing a number of parameters such as incubation time, type of cultivation, volume ratio of medium/air, inoculum size and the addition of inducers. The maximum activities of enzymes synthesized by was detected as 11100 U/L for Lac, 2.5 U/L for LiP and 4.5 U/L for MnP after 14 days of incubation at 25°C under static conditions, volume ratio of medium/air 1:6, and 3 plugs as inoculum. Among the supplements tested, 5% glycerol increased Lac activity to a significant extent. The addition of 1% veratryl alcohol had a positive effect on MnP.

摘要

由于木质素分解酶在各种工业过程中发挥着关键作用,对新型高效生产菌的需求一直在不断增加。此外,关于本地真菌菌株合成酶的信息非常少见。从保加利亚森林土壤中分离出两株产生木质素分解酶的真菌菌株。它们被鉴定为 和 。根据温度和营养培养基类型,对这两株菌株培养滤液中的漆酶(Lac)、木质素过氧化物酶(LiP)和锰依赖性过氧化物酶(MnP)的酶活性进行了评估。 被选为木质素分解酶的更佳生产菌。通过优化培养时间、培养类型、培养基/空气体积比、接种量和诱导剂添加等多个参数,进一步改进了生产工艺。在25°C静态条件下培养14天后,培养基/空气体积比为1:6,接种3个菌块, 合成的酶的最大活性检测为Lac 11100 U/L、LiP 2.5 U/L和MnP 4.5 U/L。在所测试的添加剂中,5%甘油显著提高了Lac活性。添加1%藜芦醇对MnP有积极影响。

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