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通过宏基因组分析探索黄酒后风味形成过程中的微生物动态和代谢途径。

Exploring microbial dynamics and metabolic pathways shaping flavor profiles in Huangjiu through metagenomic analysis.

机构信息

Department of Food Science and Technology, Shanghai Institute of Technology, Shanghai 201418, PR China.

Department of Food Science and Technology, Shanghai Institute of Technology, Shanghai 201418, PR China.

出版信息

Food Res Int. 2024 Nov;196:115036. doi: 10.1016/j.foodres.2024.115036. Epub 2024 Sep 11.

Abstract

In the production of Huangjiu (Chinese rice wine), fermentation microbiota plays a crucial role in flavor formation. This study investigates the microbial dynamics and metabolic pathways that shape the flavor profiles of Huangjiu using different starters. Sensory evaluation and metabolite analysis of six starters revealed significant differences in ester, fruity, and sweet aromas. Saccharomyces, Aspergillus, and Rhizopus were identified as the dominant genera significantly impacting fermentation. Metagenomic species and functional gene annotations of Huangjiu starters elucidated the metabolic pathways for key flavor compounds synthesis pathways. Enzyme genes involved in these pathways were classified and annotated to microbial genera using the NR database, identifying 231 classes of relevant catalytic enzymes and 154 microbial genera. A metabolic relationship between flavor compound formation and different microbial genera was established using catalytic enzymes as a bridge. This study highlights the impact of starter composition on the final product and provides new insights for optimizing starters to enhance Huangjiu flavor quality.

摘要

在黄酒(中国米酒)的生产过程中,发酵微生物群在风味形成中起着至关重要的作用。本研究使用不同的酒曲研究了塑造黄酒风味特征的微生物动态和代谢途径。对六种酒曲的感官评价和代谢物分析表明,酯类、果香和甜味香气存在显著差异。酿酒酵母、米曲霉和根霉被鉴定为对发酵有显著影响的优势属。黄酒酒曲的宏基因组物种和功能基因注释阐明了关键风味化合物合成途径的代谢途径。使用 NR 数据库对这些途径中的酶基因进行分类和注释,确定了 231 类相关催化酶和 154 个微生物属。通过将催化酶作为桥梁,建立了风味化合物形成与不同微生物属之间的代谢关系。本研究强调了起始成分对最终产品的影响,并为优化起始成分以提高黄酒风味质量提供了新的见解。

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