Comparative Analysis of Microbial Community Diversity and Physicochemical Factors of Nongxiangxing Baijiu Pit Mud at Different Ages and Cellar Locations

In this study, high-throughput sequencing technology, linear discriminant analysis effect size (LEfSe) and redundancy analysis (RDA) were used to investigate the structure of prokaryotic and eukaryotic communities, the differential microbial communities, and the relationship between microorganisms a...

Full description

Bibliographic Details
Main Author: XIAO Qin, HE Ping, ZHOU Ruiping, LIU Chao, YUAN Siqi, ZHAO Jinsong
Format: Article
Language:English
Published: China Food Publishing Company 2023-10-01
Series:Shipin Kexue
Subjects:
Online Access:https://www.spkx.net.cn/fileup/1002-6630/PDF/2023-44-20-020.pdf
_version_ 1797435897512198144
author XIAO Qin, HE Ping, ZHOU Ruiping, LIU Chao, YUAN Siqi, ZHAO Jinsong
author_facet XIAO Qin, HE Ping, ZHOU Ruiping, LIU Chao, YUAN Siqi, ZHAO Jinsong
author_sort XIAO Qin, HE Ping, ZHOU Ruiping, LIU Chao, YUAN Siqi, ZHAO Jinsong
collection DOAJ
description In this study, high-throughput sequencing technology, linear discriminant analysis effect size (LEfSe) and redundancy analysis (RDA) were used to investigate the structure of prokaryotic and eukaryotic communities, the differential microbial communities, and the relationship between microorganisms and physicochemical factors in pit mud (PM) from cellars of different ages (5, 10 and 20 years) and from different spatial locations of cellars. The results showed that the diversity of both prokaryotic and eukaryotic microorganisms was higher in the five-year-old PM than in the 10- and 20-year-old PM. Among all samples, a total of 37 phyla, 83 classes, 176 orders, 306 families and 629 genera of prokaryotic microorganisms were detected, with five phyla being the dominant ones. Totally 12 phyla, 37 orders, 74 families, 160 families and 282 genera of eukaryotic microorganisms were detected, including three phyla and 15 genera being dominant. LEfSe identified 12 differential prokaryotic genera and 15 differential eukaryotic species, and the differential microbial communities of each sample played an important role in the fermentation process of baijiu. The results of physicochemical analysis showed that the pH of the PM samples varied from 3.66 to 5.20, and the effective phosphorus content of PM was significantly different among locations. RDA analysis showed that Lactobacillus, unclassified_f__Aspergillaceae, and Thermomyces were negatively correlated with moisture, ammonia nitrogen, and effective phosphorus contents, and Methanobacterium, Clostridium_sensu_stricto_12, Caproiciproducens, Methanobrevibacter, Cryptococcus_f__Tremellaceae and Apiotrichum were positively correlated with moisture, pH, ammonia nitrogen, and effective phosphorus. This study provides theoretical support for the establishment of daily PM maintenance as well as high-quality PM domestication and production.
first_indexed 2024-03-09T10:54:54Z
format Article
id doaj.art-fe55828c1619475d90856262846f1285
institution Directory Open Access Journal
issn 1002-6630
language English
last_indexed 2024-03-09T10:54:54Z
publishDate 2023-10-01
publisher China Food Publishing Company
record_format Article
series Shipin Kexue
spelling doaj.art-fe55828c1619475d90856262846f12852023-12-01T03:19:24ZengChina Food Publishing CompanyShipin Kexue1002-66302023-10-01442016517410.7506/spkx1002-6630-20221018-173Comparative Analysis of Microbial Community Diversity and Physicochemical Factors of Nongxiangxing Baijiu Pit Mud at Different Ages and Cellar LocationsXIAO Qin, HE Ping, ZHOU Ruiping, LIU Chao, YUAN Siqi, ZHAO Jinsong0(1. College of Bioengineering, Sichuan University of Science & Engineering, Yibin 644000, China; 2. Xufu Distillery Co. Ltd., Yibin 644000, China; 3. Sichuan Liqueur Industry Group Co. Ltd., Chengdu 610000, China)In this study, high-throughput sequencing technology, linear discriminant analysis effect size (LEfSe) and redundancy analysis (RDA) were used to investigate the structure of prokaryotic and eukaryotic communities, the differential microbial communities, and the relationship between microorganisms and physicochemical factors in pit mud (PM) from cellars of different ages (5, 10 and 20 years) and from different spatial locations of cellars. The results showed that the diversity of both prokaryotic and eukaryotic microorganisms was higher in the five-year-old PM than in the 10- and 20-year-old PM. Among all samples, a total of 37 phyla, 83 classes, 176 orders, 306 families and 629 genera of prokaryotic microorganisms were detected, with five phyla being the dominant ones. Totally 12 phyla, 37 orders, 74 families, 160 families and 282 genera of eukaryotic microorganisms were detected, including three phyla and 15 genera being dominant. LEfSe identified 12 differential prokaryotic genera and 15 differential eukaryotic species, and the differential microbial communities of each sample played an important role in the fermentation process of baijiu. The results of physicochemical analysis showed that the pH of the PM samples varied from 3.66 to 5.20, and the effective phosphorus content of PM was significantly different among locations. RDA analysis showed that Lactobacillus, unclassified_f__Aspergillaceae, and Thermomyces were negatively correlated with moisture, ammonia nitrogen, and effective phosphorus contents, and Methanobacterium, Clostridium_sensu_stricto_12, Caproiciproducens, Methanobrevibacter, Cryptococcus_f__Tremellaceae and Apiotrichum were positively correlated with moisture, pH, ammonia nitrogen, and effective phosphorus. This study provides theoretical support for the establishment of daily PM maintenance as well as high-quality PM domestication and production.https://www.spkx.net.cn/fileup/1002-6630/PDF/2023-44-20-020.pdfpit mud; high-throughput?sequencing; prokaryotic and eukaryotic microorganisms; physicochemical factors; correlation analysis
spellingShingle XIAO Qin, HE Ping, ZHOU Ruiping, LIU Chao, YUAN Siqi, ZHAO Jinsong
Comparative Analysis of Microbial Community Diversity and Physicochemical Factors of Nongxiangxing Baijiu Pit Mud at Different Ages and Cellar Locations
Shipin Kexue
pit mud; high-throughput?sequencing; prokaryotic and eukaryotic microorganisms; physicochemical factors; correlation analysis
title Comparative Analysis of Microbial Community Diversity and Physicochemical Factors of Nongxiangxing Baijiu Pit Mud at Different Ages and Cellar Locations
title_full Comparative Analysis of Microbial Community Diversity and Physicochemical Factors of Nongxiangxing Baijiu Pit Mud at Different Ages and Cellar Locations
title_fullStr Comparative Analysis of Microbial Community Diversity and Physicochemical Factors of Nongxiangxing Baijiu Pit Mud at Different Ages and Cellar Locations
title_full_unstemmed Comparative Analysis of Microbial Community Diversity and Physicochemical Factors of Nongxiangxing Baijiu Pit Mud at Different Ages and Cellar Locations
title_short Comparative Analysis of Microbial Community Diversity and Physicochemical Factors of Nongxiangxing Baijiu Pit Mud at Different Ages and Cellar Locations
title_sort comparative analysis of microbial community diversity and physicochemical factors of nongxiangxing baijiu pit mud at different ages and cellar locations
topic pit mud; high-throughput?sequencing; prokaryotic and eukaryotic microorganisms; physicochemical factors; correlation analysis
url https://www.spkx.net.cn/fileup/1002-6630/PDF/2023-44-20-020.pdf
work_keys_str_mv AT xiaoqinhepingzhouruipingliuchaoyuansiqizhaojinsong comparativeanalysisofmicrobialcommunitydiversityandphysicochemicalfactorsofnongxiangxingbaijiupitmudatdifferentagesandcellarlocations