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January 14, 2026Nature Communications3 citationsOpen Access

Cobamide-producing microbes as a model for understanding general nutritional interdependencies in soil food webs

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QZQi ZhangBCBingfeng ChenQZQi Zhang

Key Points

  • The research aims to explore the ecological role of cobamide-producing prokaryotes in nutrient interdependencies within soil ecosystems.
  • Constructed the Soil Cobamide Producer database (SCP v.1.0) with over 48,000 metagenomic datasets from 1,123 sites.
  • Cataloged phylogenetically diverse prokaryotes with cobamide biosynthetic potential.
  • Investigated host-specific colonization patterns and functional traits of these microbes in an Enchytraeid model.
  • Identified diverse functional traits among cobamide-producing microbes that contribute to microbial community stability.
  • Observed that these microbes support host development and modulate gene expression.
  • Found cobamide-producing microbes across higher trophic levels, indicating important roles in nutrient transfer.

Abstract

Abstract Nutrient crossfeeding critically governs microbiome–host interactions and ecosystem stability. Cobamides, synthesized only by prokaryotes, offer a powerful and tractable model for studying nutrient-mediated interdependencies in soil food webs; however, their ecological role in sustaining soil health remains unclear. Here, we construct the Soil Cobamide Producer database (SCP v.1.0) by integrating over 48,000 metagenomic and genomic datasets from 1,123 sampling sites. This database catalogs phylogenetically diverse prokaryotes (19 phyla, 302 genera) with cobamide biosynthetic potential. Using this resource, we identify host-specific colonization patterns of cobamide-producing microbes in fauna. These microbes also carry diverse functional traits that may contribute to trophic cascades and microbial community stability. In an Enchytraeid model, these colonizers support host development, modulate gene expression, and promote gut stability through transkingdom interactions, with cobamide biosynthesis serving as one representative trait among multiple microbial functions. At macroecological scales, cobamide-producing microbes occur across relatively high trophic levels, reflecting a broader principle of nutrient transfer that may also apply to other essential metabolites. This framework provides a general basis for studying nutritional microbes in soil food webs and advances One Health research.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/6967195987ba607552bb950chttps://doi.org/10.1038/s41467-025-68255-6
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