[期刊论文]


Isolation of a newly Trichoderma asperellum LYS1 with abundant cellulase-hemicellulase enzyme cocktail for lignocellulosic biomass degradation

作   者:
Lu Mou;Runze Pan;Yansong Liu;Wankui Jiang;Wenming Zhang;Yujia Jiang;Fengxue Xin;Min Jiang;

出版年:2023

页    码:110318 - 110318
出版社:Elsevier BV


摘   要:

As the most abundant and renewable natural resource in the world, lignocellulose is a promising alternative to fossil energy to relieve environmental concerns and resource depletion. However, due to its recalcitrant structure, strains with efficient degradation capability still need exploring. In this study, a fungus was successfully isolated from decayed wood and named as Trichoderma asperellum LYS1 by phylogenetic and draft genomic analysis. The further investigations showed that strain LYS1 had an outstanding performance on lignocellulose degradation, especially for hemicellulose-rich biomass. After the analysis of encoded CAZymes, mainly on GH family, a large amount of genes coding β-glucosidase and xylanase may contribute to the high degradation of cellulose and hemicellulose. Collectively, the results generated in this study demonstrated that T. asperellum LYS1 is a potential cell factory for lignocellulose biorefinery.

Copyright © 2023 Elsevier Inc. All rights reserved.



关键字:

Cellulase;Hemicellulase;Lignocellulose degradation;Trichoderma asperellum;β-glucosidase


所属期刊
Enzyme and Microbial Technology
ISSN: 0141-0229
来自:Elsevier BV