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外切木聚糖酶 CBHA 对烟叶发酵的影响。

Effects of Exocellobiohydrolase CBHA on Fermentation of Tobacco Leaves.

机构信息

China Tobacco Guangxi Industrial Co., Ltd., P.R. China.

Pest Integrated Management Key Laboratory of China Tobacco, Tobacco Research Institute of Chinese Academy of Agricultural Sciences, Qingdao, 266101, P. R. China.

出版信息

J Microbiol Biotechnol. 2024 Aug 28;34(8):1727-1737. doi: 10.4014/jmb.2404.04028. Epub 2024 Jun 19.

Abstract

The quality of tobacco is directly affected by macromolecular content, fermentation is an effective method to improve biochemical properties. In this study, we utilized CBHA (cellobiohydrolase A) glycosylase, which was expressed by , as an additive for fermentation. The contents of main chemical components of tobacco leaves after fermentation were determined, and the changes of microbial community structure and abundance in tobacco leaves during fermentation were analyzed. The relationship between chemical composition and changes in microbial composition was investigated, and the function of bacteria and fungi in fermentation was predicted to identify possible metabolic pathways. After 48 h of CBHA fermentation, the contents of starch, cellulose and total nitrogen in tobacco leaf decreased by 17.60%, 28.91% and 16.05%, respectively. The microbial community structure changed significantly, with abundance decreasing significantly, while , , , , etc., increased in CBHA treated group. Soluble sugar was most affected by microbial community in tobacco leaves, which was negatively correlated with starch, cellulose and total nitrogen. During the fermentation process, the relative abundance of metabolism-related functional genes increased, and the expressions of cellulase and endopeptidase also increased. The results showed that the changes of bacterial community and dominant microbial community on tobacco leaves affected the content of chemical components in tobacco leaves, and adding CBHA for fermentation had a positive effect on improving the quality of tobacco leaves.

摘要

烟草的质量直接受到高分子含量的影响,发酵是改善生化特性的有效方法。本研究利用 表达的 CBHA(纤维二糖水解酶 A)糖苷酶作为发酵添加剂。测定了发酵后烟叶主要化学成分的含量,分析了发酵过程中烟叶微生物群落结构和丰度的变化。研究了化学成分变化与微生物组成变化之间的关系,并预测了细菌和真菌在发酵中的功能,以鉴定可能的代谢途径。经过 48 小时的 CBHA 发酵,烟叶中淀粉、纤维素和总氮的含量分别下降了 17.60%、28.91%和 16.05%。微生物群落结构发生了显著变化, 丰度显著下降,而 CBHA 处理组中的 、 、 、 等增加。可溶性糖是烟叶中微生物群落受影响最大的物质,与淀粉、纤维素和总氮呈负相关。在发酵过程中,代谢相关功能基因的相对丰度增加,纤维素酶和内肽酶的表达也增加。结果表明,烟叶细菌群落和优势微生物群落的变化影响了烟叶中化学成分的含量,添加 CBHA 进行发酵对提高烟叶品质有积极作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d52/11380505/ff3126394db4/jmb-34-8-1727-f1.jpg

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