Exploring the impact of initial moisture content on microbial community and flavor generation in Xiaoqu baijiu fermentation
Huan Wang, Chunhong Sun, Shengzhi Yang, Yulei Ruan, Linjie Lyu, Xuewu Guo +2 more
Food Chemistry X
Abstract
Moisture is essential in microbiota succession and flavor formation during baijiu fermentation. However, it remains unknown how moisture content affects microbiota, metabolism, and their relationship. Here, we compared the difference in volatiles, microbiota characteristics, and potential functions with different initial moisture contents (50 %, 55 %, 60 %, 65 %, 70 %). Results showed that the ratio of ethyl acetate to ethyl lactate and total volatile compounds content increased as the moisture content was elevated from 50 % to 70 %. As increasing moisture content, fermentation system microbiota dominated by <i>Lactobacillus</i> was formed more rapidly. <i>Lactobacillus, Dekkera,</i> and <i>Pediococcus</i> were positively correlated with moisture, promoting the production of propanol, acetic acid, butyric acid, and 2-butanol. The complexity and stability of ecological networks enhanced as moisture content increased (R<sup>2</sup> = 0.94, <i>P</i> = 0.004). Our study revealed that moisture-drive microbiota was a critical contributor to flavor formation, providing the theoretical basis for moisture control to regulate flavor compounds.
Extracted Claims
3 claims extracted from this paper into the knowledge graph
initial moisture content affects microbial community and flavor generation
“Moisture is essential in microbiota succession and flavor formation during baijiu fermentation.”
moisture content enhances complexity and stability of ecological networks
“The complexity and stability of ecological networks enhanced as moisture content increased (R<sup>2</sup> = 0.94, <i>P</i> = 0.004).”
Lactobacillus, Dekkera, and Pediococcus positively correlated with moisture
“<i>Lactobacillus, Dekkera,</i> and <i>Pediococcus</i> were positively correlated with moisture, promoting the production of propanol, acetic acid, butyric acid, and 2-butanol.”