Comparative analysis of microbial communities and flavor compounds in fermented grains from different sorghum varieties used in Sichuan Xiaoqu liquor

IF 6.6 1区 农林科学 Q1 FOOD SCIENCE & TECHNOLOGY LWT - Food Science and Technology Pub Date : 2025-03-11 DOI:10.1016/j.lwt.2025.117640
Minghong Bian , Yuli Fang , Kailong Yang, Yubin Xia, Hongyi Tang, Yiling Feng, Qiang Xu, Shufan Zhang, Xiaohu Ren, Baolin Han
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Abstract

Sorghum is the primary raw material for liquor brewing, and its increasing cost has significantly impacted liquor manufacturers. In response, the industry is exploring the possibility of using low-cost imported sorghum as an alternative to domestic sorghum. The present study monitored the physicochemical properties, flavor components, and microbial community structure of fermented grains during the fermentation of Australian sorghum (AS) and Northeastern sorghum (DS) in real-time. Additionally, the correlation between microbial communities and the flavor of Xiaoqu liquor was investigated. Fermentation was analyzed over five periods: 0, 2, 4, 6, and 8 days. The reducing sugar content of DS was significantly higher than that of AS in the early stage, while the starch content remained consistently higher than that of DS. The acidity of both fermented grains showed an increasing trend, whereas moisture content and fermentation temperature remained relatively stable. A total of 52 flavor compounds were detected, with alcohols being the most abundant aroma compounds. The three most differentiated volatile flavor compounds were [V3] isopentyl formate, [V26] 6-methylheptan-1-ol, and [V16] 9-hexadecenoic acid, ethyl ester. A total of 90 bacterial and 46 fungal genera were identified. The dominant bacterial genera in AS were Lactobacillus, Bacillus, Pediococcus, and Acinetobacter, while the dominant fungal genera were Saccharomyces, Saccharomycopsis, and Cutaneotrichosporon. In DS, the dominant bacterial genera were Lactobacillus, Bacillus, Pediococcus, and Enterobacter, while Saccharomyces and Saccharomycopsis were the dominant fungal genera. The AS bacterial community showed stronger microbial interactions, resulting in a more complex and tightly interconnected bacterial network, whereas its fungal network structure remained relatively simple. Correlation analyses further demonstrated that alcohols and hydrocarbons were strongly correlated with bacterial metabolic activity, and AS microorganisms exhibited weaker correlations with flavor compounds. This study provides a comprehensive comparison of the fermentation characteristics of AS and DS, offering a theoretical foundation and valuable data for optimizing the use of Australian sorghum in Xiaoqu liquor production.
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四川小曲酒不同高粱品种发酵粮食中微生物群落和风味化合物的比较分析
高粱是白酒酿造的主要原料,其成本的上升对白酒生产企业造成了很大的影响。作为回应,该行业正在探索使用低成本进口高粱作为国产高粱替代品的可能性。本研究对澳洲高粱(AS)和东北高粱(DS)发酵过程中发酵谷物的理化性质、风味成分和微生物群落结构进行了实时监测。此外,还研究了微生物群落与小曲酒风味的关系。发酵分析分为5个阶段:0、2、4、6和8天。DS的还原糖含量在前期显著高于AS,而淀粉含量始终高于DS。两种发酵谷物的酸度均呈上升趋势,而水分含量和发酵温度保持相对稳定。共检测到52种风味化合物,其中醇类是最丰富的香气化合物。3种差异最大的挥发性风味化合物是[V3]甲酸异戊酯、[V26] 6-甲基庚烷-1-醇和[V16] 9-十六烯酸乙酯。共鉴定出90种细菌和46种真菌属。AS的优势菌属为乳杆菌属、芽孢杆菌属、Pediococcus属和不动杆菌属,优势真菌属为Saccharomyces属、Saccharomycopsis属和Cutaneotrichosporon属。DS中优势菌属为乳杆菌属、芽孢杆菌属、Pediococcus属和肠杆菌属,优势真菌属为Saccharomyces属和Saccharomycopsis属。AS细菌群落表现出更强的微生物相互作用,导致细菌网络更加复杂和紧密相连,而其真菌网络结构仍然相对简单。相关分析进一步表明,酒精和碳氢化合物与细菌代谢活性密切相关,而AS微生物与风味化合物的相关性较弱。本研究全面比较了AS和DS的发酵特性,为优化澳洲高粱在小曲酒生产中的利用提供了理论基础和有价值的数据。
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来源期刊
LWT - Food Science and Technology
LWT - Food Science and Technology 工程技术-食品科技
CiteScore
11.80
自引率
6.70%
发文量
1724
审稿时长
65 days
期刊介绍: LWT - Food Science and Technology is an international journal that publishes innovative papers in the fields of food chemistry, biochemistry, microbiology, technology and nutrition. The work described should be innovative either in the approach or in the methods used. The significance of the results either for the science community or for the food industry must also be specified. Contributions written in English are welcomed in the form of review articles, short reviews, research papers, and research notes. Papers featuring animal trials and cell cultures are outside the scope of the journal and will not be considered for publication.
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