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May 19, 2026Food Chemistry X0 citationsOpen Access

Phage succession and putative mechanisms of microbial community regulation in Sichuan radish paocai (traditional Chinese fermented vegetable)

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YHY L HuangSichuan Agricultural UniversityMYMenglu YangSichuan Academy of Agricultural SciencesJLJ LiuSichuan Academy of Agricultural Sciences

Key Points

  • This study aims to explore phage diversity and their ecological roles in the fermentation of Sichuan radish paocai.
  • Conducted integrated viromic and metagenomic analyses of radish paocai.
  • Performed time-series metagenomics to track microbial changes during fermentation.
  • Identified core phages and correlated them with fermentation-related metabolites.
  • Uroviricota phages dominated at 88% by day 5 during fermentation.
  • Ten core phages were identified, primarily targeting Lactiplantibacillus, specifically L. plantarum.
  • Functional analysis indicated that phage encoded genes could influence amino acid and carbohydrate metabolism.

Abstract

Spontaneous fermentation of Sichuan paocai is shaped by complex microbial and environmental factors, yet phage communities remain understudied. This study presents integrated viromic and metagenomic analysis of radish paocai combined with metabolite profiling to elucidate phage diversity, dynamics, ecological roles, and sources. Time-series metagenomics revealed Lactiplantibacillus increasing from 11% to 71%, while viromics showed phages comprising 78% of viral contigs, with Uroviricota reaching 88% by day 5. Host prediction indicated that 89% of phages targeted Lactiplantibacillus , mainly L. plantarum . Correlation analysis suggested that core phages were associated with fermentation-related metabolites, including volatile compounds (e.g., decanal), implicating that phages might influence metabolism by modulating host activity. Functional annotation showed phage encoded amino acid and carbohydrate metabolism genes, suggesting auxiliary metabolic roles. Source analysis suggested that most phages in radish paocai may be derived from bacterial prophages. This work advances understanding of phage diversity and ecological function in fermented vegetable ecosystems. • Uroviricota dominated phage communities, reaching 88% during fermentation. • Ten core phages were identified in radish paocai using integrated criteria. • L. plantarum was the primary host of core phages in radish paocai. • Phage AMGs suggest potential modulation of host metabolism during fermentation. • Core phages were associated with fermentation-related metabolites.

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Cite This Study

Huang et al. (2026) studied this question.

synapsesocial.com/papers/6a0bfdc7166b51b53d3791efhttps://doi.org/10.1016/j.fochx.2026.103997
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