Fang Shu, Wang Chuanxiang, Yan Juan
School of Biological and Environmental Engineering, Chaohu University, Hefei 230000, China.
Quality and Technology Department, Anhui Yun Distillery Group Co., Ltd, Ma'anshan 243000, China.
Open Life Sci. 2023 Feb 23;18(1):20220571. doi: 10.1515/biol-2022-0571. eCollection 2023.
This study aims to explore the prokaryotic microbial community structures and diversity in pit mud from different depths, and provide a theoretical basis for the liquor production and further study of pit mud. The fermented pit muds of strong-flavor liquor from Yun distillery were taken as samples. The high-throughput sequencing approach, followed by bioinformatics analyses, was used to compare the differences in the prokaryotic microbial community between pit walls and bottom represented by samples. A total of 31 bacteria phyla and 2 archaea phyla were detected. The dominant phyla in YJ-S, YJ-Z, and YJ-X (sample name) were and , while the dominant genera in them were , , and . YJ-Z and YJ-X were the closest in species diversity. In species richness analysis, YJ-X was the highest, followed by YJ-Z, and YJ-S was the lowest; in species uniformity analysis, YJ-S was the highest, followed by YJ-Z, and YJ-X was the lowest. The function predicted by 16S rRNA genome showed that prokaryotic microbial function in pit mud was mainly concentrated in "Carbohydrate transport and metabolism" and "Amino acid transport and metabolism." Significant differences in prokaryotic microbial community and gene function prediction between pit walls and bottom were found in YJ-S, YJ-Z, and YJ-X ( < 0.05).
本研究旨在探究不同深度窖泥中原核微生物群落结构及多样性,为白酒酿造及窖泥的进一步研究提供理论依据。以云酒厂浓香型白酒的发酵窖泥为样本。采用高通量测序方法并结合生物信息学分析,比较以样本为代表的窖壁和窖底原核微生物群落的差异。共检测到31个细菌门和2个古菌门。YJ - S、YJ - Z和YJ - X(样本名称)中的优势菌门为 和 ,而其中的优势菌属为 、 和 。YJ - Z和YJ - X在物种多样性上最为接近。在物种丰富度分析中,YJ - X最高,其次是YJ - Z,YJ - S最低;在物种均匀度分析中,YJ - S最高,其次是YJ - Z,YJ - X最低。16S rRNA基因组预测的功能表明,窖泥中原核微生物功能主要集中在“碳水化合物转运与代谢”和“氨基酸转运与代谢”。在YJ - S、YJ - Z和YJ - X中,发现窖壁和窖底之间原核微生物群落及基因功能预测存在显著差异( < 0.05)。