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Improving cold-adaptability of mesophilic cellulase complex with a novel mushroom cellobiohydrolase for efficient low-temperature ensiling

文献类型: 外文期刊

作者: Gong, Ming 1 ; Wang, Ying 1 ; Bao, Dapeng 1 ; Jiang, Shan 1 ; Chen, Hongyu 1 ; Shang, Junjun 1 ; Wang, Xiaojun 1 ; Yu, Hnin Hnin 2 ; Zou, Gen 1 ;

作者机构: 1.Shanghai Acad Agr Sci, Inst Edible Fungi, Shanghai Key Lab Agr Genet & Breeding, 1000 Jinqi Rd, Shanghai 201403, Peoples R China

2.Univ Mandalay, Bot Dept, Microbiol Lab, 73 & 41 St, Maharaungmyay Township, Mandalay Divisi, Myanmar

关键词: Cellulase; Cellobiohydrolase; Cold-active; Ensilage; Bioparts

期刊名称:BIORESOURCE TECHNOLOGY ( 影响因子:11.4; 五年影响因子:10.6 )

ISSN: 0960-8524

年卷期: 2023 年 376 卷

页码:

收录情况: SCI

摘要: Low ambient temperature poses a challenge for rice straw-silage processing in cold climate regions, as cold limits enzyme and microbial activity in silages. Here, a novel cold-active cellobiohydrolase (VvCBHI-I) was isolated from Volvariella volvacea, which exhibited outstanding cellobiohydrolase activity at 10-30 degrees C. The crude cellulase complex in the VvCBHI-I-expressing transformant T1 retained 50% relative activity at 10 degrees C, while the wildtype Trichoderma reesei showed <5% of the activity. VvCBHI-I greatly improved the saccharification efficiency of the cellulase complex with pretreated rice straw as substrate at 10 C. In rice straw silage, pH (<4.5) and lactic acid content (>4.6%) remained stable after 15-day ensiling with the cellulase complex from T1 and Lactobacillus plantarum. Moreover, the proportions of cellulose and hemicellulose decreased to 29.84% & PLUSMN; 0.15% and 21.25% & PLUSMN; 0.26% of the dried material. This demonstrates the crucial potential of mushroom-derived cold active cellobiohydrolases in successful ensiling in cold regions.

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