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August 21, 2025Nature Microbiology39 citationsOpen Access

A defined microbial community reproduces attributes of fine flavour chocolate fermentation

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DGDavid GopaulchanCMChris MooreNANobakht Ali

Key Points

  • The defined microbial community replicates fine flavour attributes of chocolate using controlled fermentation.
  • Key factors include pH, temperature, and microbiota, which significantly influence chocolate flavour profiles.
  • Genome-resolved metagenomics established metabolic traits essential for flavour development in chocolate fermentation.
  • These findings highlight the potential for designing fermentation starters to improve chocolate quality.

Abstract

Cocoa (Theobroma cacao L.) bean fermentation is a spontaneous process involving interactions between abiotic and biotic factors that contribute to the final flavours of chocolate. Understanding these underlying interactions could enable desired flavour profiles to be reproduced under controlled conditions. Here, using bean fermentation samples from Colombian farms, we established that pH, temperature and microbiota composition, including both bacteria and fungi, influence key flavour attributes of premium chocolate. Genome-resolved metagenomics revealed that metabolic traits necessary for the development of the flavour profile of chocolate are redundantly present in the fermentation microbial community. Using a defined and metabolically competent microbial consortium, the feasibility of replicating fine flavour attributes of chocolate under controlled conditions was confirmed via omics, metabolic networks and a trained tasting panel. Our results provide the basis for the design of fermentation starters to robustly reproduce fine chocolate characteristics.

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Cite This Study

Gopaulchan et al. (2025) studied this question.

synapsesocial.com/papers/68a6fb9b5502675167ba95b1https://doi.org/10.1038/s41564-025-02077-6
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