Soaking reshapes the structure, function, and co-occurrence patterns of barley surface bacterial communities
Zhao Ziyan, Wang Xiding, Feng Jia, Xie Shulian, Qiao Yichen, Chen Tong, Xing Guofang, Liu Yang
Journal:WORLD JOURNAL OF MICROBIOLOGY & BIOTECHNOLOGY
IF:4.2
DOI:10.1007/s11274-026-04998-8
PMID:
Published:2026-04-30
research field:食品微生物学植物-微生物互作微生物生态学发酵技术谷物科学
Abstract
Surface microbiota on cereal grains can influence fermentation outcomes and product quality in food processing. To better understand microbial responses during pre-processing, we analyzed the succession of bacterial communities on barley seeds from four cultivars over five soaking stages (0, 1, 2, 4, and 8 days). Using 16S rRNA gene sequencing, functional prediction, and ecological modeling, we observed a sharp decline in bacterial diversity and a compositional shift toward fermentative Firmicutes, particularly Lactobacillales. Functional profiles indicated reduced metabolic breadth and enhanced expression of fermentation- and transport-related pathways over time. Community assembly analysis indicated increasing dominance of stochastic factors—primarily limited dispersal—over time. Co-occurrence networks became simpler and shifted toward more negative associations over time. Our findings suggest that soaking not only reshapes microbial structure and function but also alters ecological stability, providing a scientific foundation for microbial management strategies in malting, germination, and cereal-based fermentation processes. Graphical The alternative text for this image may have been generated using AI.
本文使用的Yeasen产品


