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Genome-Resolved Characterization of Stage-Associated Microbial Composition and Functional Potential During Spontaneous Ugba Fermentation

Preprint Created on 27 Sep 2026 bioRxiv

Ugba, a traditional alkaline-fermented condiment produced from African oil bean seeds (Pentaclethra macrophylla Benth.), remains poorly characterised at genome resolution. This study characterised a single spontaneous ugba fermentation using genome-resolved shotgun metagenomics across Early (0-24 h), Mid (48-96 h), and Late (120-144 h) composite stages. Thirty metagenome-assembled genomes (MAGs) were recovered and grouped according to their temporal abundance patterns. The Early-stage retained MAG population was dominated by Bacteroidota-associated MAGs, which exhibited the highest carbohydrate-active enzyme density and broad glycoside hydrolase repertoires, consistent with substantial genome-encoded potential for utilisation of the plant-derived seed matrix. The Mid stage showed marked restructuring of MAG composition, while Core and Late-associated MAGs increased towards fermentation maturation. Functional differentiation was also evident among Corynebacterium MAGs: C. nuruki encoded a complete urease system, whereas C. phoceense_A encoded glutamate dehydrogenase and nitrate-reduction genes. These stage-associated changes coincided with progressive alkalinisation from pH 7.15 to 8.01. Together, the results show that temporal restructuring of reconstructed microbial populations was accompanied by differentiation in genome-encoded functional potential. This study provides a genome-resolved characterisation of microbial composition and functional potential during spontaneous ugba fermentation and expands current understanding of the microbial organisation of this traditional African fermented food.

DIKE, K., Ojukwu, C. C., Oladele, F. T., Ezeh, C. F., Nwachukwu, M. I.

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