Prokaryotic diversity and biochemical properties in aging artificial pit mud used for the production of Chinese strong flavor liquor.

3 Biotech

College of Life Sciences and Agronomy, Zhoukou Normal University, Room A202, Life Sciences Building, East Wenchang Road, Chuanhui District, Zhoukou, 466001 China.

Published: October 2017

At present, artificial pit mud (APM) is widely used in Chinese liquor-making industry and plays a particular role in the production of Chinese strong flavor liquor (CSFL). However, APM frequently ages during fermentation, thus becoming unsuitable for sustainable use due to its low-quality. The reasons behind, and results of, APM aging during the production of CSFL are not yet understood. Sequencing the V4 region of the gene shows that prokaryotic diversity is significantly decreased (Shannon's diversity index,  < 0.01) and community composition is distinctly changed (from 1197 to 865 OTUs) in aging APM. On the phylum level, the increase of and decrease of are the main consequences of APM aging during the production of CSFL. The counting of cultivatable bacteria confirmed that there was a large increase in and aerobic spore-forming bacteria in aging low-quality APM (more than twofold). Unexpectedly, the total number of caproic acid-producing bacteria, mainly , did not change significantly between the two kinds of APM. Furthermore, biochemical analysis indicates that the pH and the levels of NH and K are decreased in aging low-quality APM ( < 0.01). The results obtained in this study support the possibility that environmental factors (pH, nutrients) induce the decrease of prokaryotic diversity, and the changed community composition influences the environmental properties. Therefore, through interfering with the cycle, APM aging can be controlled potentially by adjustment of environmental factors and/or supplementation of diminished or missed microorganisms.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5605472PMC
http://dx.doi.org/10.1007/s13205-017-0978-0DOI Listing

Publication Analysis

Top Keywords

prokaryotic diversity
8
artificial pit
8
pit mud
8
production chinese
8
chinese strong
8
strong flavor
8
flavor liquor
8
diversity biochemical
4
biochemical properties
4
properties aging
4

Similar Publications

A framework for understanding and investigating polyphosphate-protein interactions.

Biochem Soc Trans

January 2025

Department of Cellular and Molecular Medicine, University of Ottawa, Ottawa, Ontario, Canada.

Many prokaryotic and eukaryotic cells store inorganic phosphate in the form of polymers called polyphosphate (polyP). There has been an explosion of interest in polyP over the past decade, in part due to newly suggested roles related to diverse aspects of human health. The physical interaction of polyP chains with specific proteins has been proposed to regulate cellular homeostasis and modulate signaling pathways in response to environmental changes.

View Article and Find Full Text PDF

Arctic ecosystems are affected by accelerated warming as well as the intensification of the hydrologic cycle, yet understanding of the impacts of compound climate extremes (e.g., simultaneous extreme heat and rainfall) remains limited, despite their high potential to alter ecosystems.

View Article and Find Full Text PDF

Although the 16S (and 18S) rRNA gene has been an essential tool in classifying prokaryotes, using a single locus to revise bacteria taxonomy can introduce unwanted artifacts. There was a recent proposition to split the Methylobacterium genus, which contains diverse plant-associated strains and is important for agriculture and biotechnology, into two genera. Resting strongly on the phylogeny of 16S rRNA, 11 species of Methylobacterium were transferred to a newly proposed genus Methylorubrum.

View Article and Find Full Text PDF

Structure and metabolic function of spatiotemporal pit mud microbiome.

Environ Microbiome

January 2025

Luzhou Laojiao Co., Ltd., Luzhou, 646000, China.

Background: Pit mud (PM) hosts diverse microbial communities, which serve as a medium to impart flavor and quality to Baijiu and exhibit long-term tolerance to ethanol and acids, resulting in a unique ecosystem. However, the ecology and metabolic functions of PM remain poorly understood, as many taxa in PM represent largely novel lineages. In this study, we used a combination of metagenomic analysis and chemical derivatization LC-MS analysis to provide a comprehensive overview of microbial community structure, metabolic function, phylogeny, horizontal gene transfer, and the relationship with carboxyl compounds in spatiotemporal PM samples.

View Article and Find Full Text PDF

Comparative metagenomics reveals the metabolic flexibility of coastal prokaryotic microbiomes contributing to lignin degradation.

Biotechnol Biofuels Bioprod

January 2025

Institute of Marine Science and Technology, Shandong University, Qingdao, 266237, Shandong, China.

Coastal wetlands are rich in terrestrial organic carbon. Recent studies suggest that microbial consortia play a role in lignin degradation in coastal wetlands, where lignin turnover rates are likely underestimated. However, the metabolic potentials of these consortia remain elusive.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!