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March 5, 2026Sci0 citationsOpen Access

A Review of Horizontal Gene Transfer for the Natural Functional Improvement of Microorganisms Relevant to Food Technology

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FRFranca RossiSSSerena SantonicolaGCGiampaolo Colavita

Key Points

  • The review aims to explore the potential of natural horizontal gene transfer in enhancing microbial functions relevant to food technology.
  • Critical review of existing literature on horizontal gene transfer in microorganisms.
  • Analysis of reports on genetic exchanges in both environmental and laboratory settings.
  • Identification of traits acquired via horizontal gene transfer in key microbial species.
  • Lactiplantibacillus plantarum is the species most frequently involved in natural horizontal gene transfer.
  • Domesticated filamentous fungi show extensive adaptation through horizontal gene transfer.
  • Observed transferred traits include stress resistance, exopolysaccharide production, phage immunity, and improved metabolic capabilities.

Abstract

Different groups of microorganisms—namely lactic acid bacteria (LAB), coagulase-negative staphylococci (CNS), dairy propionibacteria, yeasts, and molds—play essential roles in producing safe fermented foods of animal and plant origin with high nutritional value and sensory quality. The acquisition of genetic traits with technological relevance by natural horizontal gene transfer (HGT) via transformation, conjugation, phage transduction, and other routes would broaden the spectrum of beneficial activities exerted by individual microbial strains with no limitations for their use in food. Therefore, this critical review aimed to identify the potential for natural genetic improvement of microbial species relevant to food technology, based on reports of natural genetic exchanges occurring in environmental niches and laboratory conditions. Results showed that the species most frequently involved in natural HGT is Lactiplantibacillus plantarum, followed by Streptococcus thermophilus and Lactococcus lactis. Extensive HGT events enabling adaptation to food have been observed in domesticated filamentous fungi. The transferred traits of technological relevance include resistance to various stress factors, exopolysaccharide (EPS) and bacteriocin production, protein and amino acid utilization, phage immunity, lactose and citrate metabolism in dairy species, and use of plant carbohydrates in vegetable adapted species. Methods suitable for detecting HGT events in microbial communities have been developed and can aid in isolating improved strains for use in fermented foods.

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Cite This Study

Rossi et al. (2026) studied this question.

synapsesocial.com/papers/69a91d8dd6127c7a504c0641https://doi.org/10.3390/sci8030056
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