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April 6, 2026Molecular Nutrition & Food Research2 citationsOpen Access

Multi‐Omic Insights Into Mediterranean Diet‐Associated Microbiota

AÁAndrea Álvarez‐SalaNJNuria Jiménez‐HernándezAAAlejandro Artacho

Key Points

  • The research aims to assess the gut microbiota and mycobiota composition in relation to adherence to the Mediterranean diet.
  • Evaluated gut microbiota composition using metataxonomics, metagenomics, and metatranscriptomics.
  • Compared two groups with high (HAMD) and low adherence (LAMD) to the Mediterranean diet.
  • Analyzed gene expression in the bacterial community and identified key microbiota genera.
  • Significant microbiota composition differences were found between HAMD and LAMD groups.
  • High adherence was linked to increased metabolic activity and immune response indicated by flagellin and urease gene expression.
  • Certain genera like Aspergillus and Yarrowia served as biomarkers for low and high adherence, respectively.

Abstract

This study aimed to evaluate the gut microbiota and mycobiota composition, depending on the Mediterranean diet (MD) adherence, using metataxonomics. Combining metagenomics and metatranscriptomics, we also investigate the gene expression level in the bacterial community. Two groups of healthy subjects greatly differing in adherence were selected. Significant differences in microbiota composition were observed between individuals with high adherence (HAMD; mean 10.5 +/- 0.9 points) and low adherence (LAMD; 5.23 +/- 83 points). Notably, the olive oil, vegetable, and fruit consumption presented an important discriminant power between groups. Saccharomyces, Penicillium, and Candida were the most abundant genera. Mycobiota richness was higher in LAMD than in HAMD. Aspergillus was identified as a biomarker for LAMD, whereas Yarrowia, a potential probiotic, was a biomarker for HAMD. Metatranscriptomics indicated that Bacillota was the most metabolically active phylum in the gut microbiota. The low-abundant genus, Methanobrevibacter, showed high transcriptional activity, contributing to the crucial methanogenesis process. Gene expression analyses further highlighted functional differences. Overall, HAMD microbiota presented increased metabolic activity, protein synthesis, and cellular mobility. Overexpression of flagellin and urease genes may enhance immune response in HAMD. Further metatranscriptomic studies are necessary to deepen our understanding of intestinal microbiota transcriptional programs and their interactions with the diet and human health.

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Cite This Study

Álvarez‐Sala et al. (2026) studied this question.

synapsesocial.com/papers/69d34e949c07852e0af9829fhttps://doi.org/10.1002/mnfr.70450
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