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◆ Journal of fungi (Basel, Switzerland)2026-07-25

Heterologous Expression of a Neurospora crassa Catalase Reprograms the Cellulase System and Enhances β-Glucosidase Production in Trichoderma reesei.

Haowen Sun, Changbin Tang, Yifan Chen, Yao Zhang, Wenjin You, Shufen Su, Hanfei Zhao, Jianzhong Huang, Xianzhang Jiang, Lina Qin

原始摘要(英文原文)· Original abstract
Efficient saccharification of lignocellulose, the most abundant renewable carbon reservoir resource, is of great industrial importance. Trichoderma reesei is a premier cellulase producer, but its fermentation efficiency is often constrained by dual challenges: dissolved oxygen limitation and intrinsic oxidative stress. To address this, we engineered T. reesei to heterologously express a robust catalase gene (cat-3) from Neurospora crassa. The recombinant strain Tr-cNcat3 exhibited a 7.4-fold increase in extracellular catalase activity. Tr-cNcat3 showed an increase in total extracellular protein, resulting in markedly enhanced filter paper activity (FPA) and β-glucosidase activity compared to the control. Strikingly, this intervention specifically triggered a significantly higher expression of β-glucosidase, a known bottleneck in T. reesei's cellulase system, particularly on bagasse and straw as the carbon source. Moreover, the ability of the supernatant to degrade cellulose substrates was improved. Our results reveal that overexpression of cat-3 in T. reesei could modify the cellulase cocktail by triggering a higher level of β-glucosidase. This study provides a novel and effective genetic engineering strategy to unlock the full industrial potential of T. reesei for cost-effective lignocellulosic biorefining.
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Heterologous Expression of a Neurospora crassa Catalase Reprograms the Cellulase System and Enhances β-Glucosidase Production in Trichoderma reesei. — 科研速览 Science Skim