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由……产生的木质素降解酶的形态特征调控 。 你提供的原文似乎不完整,“by”后面缺少具体内容。

Morphological Characteristic Regulation of Ligninolytic Enzyme Produced by .

作者信息

Lueangjaroenkit Piyangkun, Teerapatsakul Churapa, Chitradon Lerluck

机构信息

Department of Microbiology, Faculty of Science, Kasetsart University, Bangkok, Thailand.

出版信息

Mycobiology. 2018 Dec 18;46(4):396-406. doi: 10.1080/12298093.2018.1537586. eCollection 2018.

Abstract

A newly isolated white rot fungal strain KU-RNW027 was identified as , based on an analysis of its morphological characteristics and phylogenetic data. Aeration and fungal morphology were important factors which drove strain KU-RNW027 to secrete two different ligninolytic enzymes as manganese peroxidase (MnP) and laccase. Highest activities of MnP and laccase were obtained in a continuous shaking culture at 8 and 47 times higher, respectively, than under static conditions. Strain KU-RNW027 existed as pellets and free form mycelial clumps in submerged cultivation with the pellet form producing more enzymes. Fungal biomass increased with increasing amounts of pellet inoculum while pellet diameter decreased. Strain KU-RNW027 formed terminal chlamydospore-like structures in cultures inoculated with 0.05 g/L as optimal pellet inoculum which resulted in highest enzyme production. Enzyme production efficiency of KU-RNW027 depended on fungal pellet morphology as size, porosity, and formation of chlamydospore-like structures.

摘要

基于对其形态特征和系统发育数据的分析,新分离出的白腐真菌菌株KU-RNW027被鉴定为[具体名称未给出]。通气和真菌形态是促使菌株KU-RNW027分泌两种不同木质素分解酶(锰过氧化物酶(MnP)和漆酶)的重要因素。在连续振荡培养中,MnP和漆酶的最高活性分别比静态条件下高8倍和47倍。在深层培养中,菌株KU-RNW027以颗粒和游离形式的菌丝团存在,颗粒形式产生更多的酶。真菌生物量随着颗粒接种量的增加而增加,而颗粒直径减小。在接种0.05 g/L作为最佳颗粒接种物的培养物中,菌株KU-RNW027形成了类似终末厚垣孢子的结构,这导致了最高的酶产量。KU-RNW027的酶生产效率取决于真菌颗粒的形态,如大小、孔隙率和类似厚垣孢子结构的形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c34/6319472/9d1c880fdfd1/TMYB_A_1537586_F0001_C.jpg

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