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March 8, 2026World Journal of Microbiology and Biotechnology2 citationsOpen Access

Exploring lactic acid bacteria from fresh fruits, vegetables, and edible flowers: from biodiversity valorisation to food applications

EPEster PresuttoVCVittorio CapozziMCMaria Chiara

Key Points

  • The aim is to explore the diversity of lactic acid bacteria from fresh plant-derived matrices and their potential applications in food biotechnology.
  • Review of recent studies on lactic acid bacteria in fresh fruits, vegetables, and edible flowers.
  • Analysis of culture-dependent and culture-independent methods for identifying LAB.
  • Examination of technological and functional traits of LAB including resistance to environmental stressors.
  • Identified a diverse range of LAB associated with fresh plant matrices.
  • Uncovered mechanisms of microbial interaction and adaptive dynamics in different environments.
  • Highlighted potential biotechnological applications such as the development of fermented foods and probiotic solutions.

Abstract

Fresh plant matrices of food interest host complex microbial communities. Within these microbial ecosystems, biochemical and ecological interactions are relevant in contributing to food quality and safety. In particular, lactic acid bacteria (LAB) play key roles in fermentative processes, bioprotection, and bioactivity. Despite their well-recognised importance in food biotechnology, the ecological dynamics and metabolic versatility of LAB in plant-based environments are still poorly explored. Understanding their diversity and how they adapt to matrix-specific stressors is crucial for identifying new strains with distinctive technological and biofunctional traits. This review summarises a selection of recent studies on LAB associated with fresh plant-derived matrices (i.e., fresh fruits, vegetables, and edible flowers). Particular attention is given to culture-dependent and culture-independent approaches employed for their identification. The main technological and functional aspects are also examined, aiming to assess their properties of interest, including resistance to adverse environmental conditions and mechanisms of microbial interaction. Furthermore, the discussion addresses the main biotechnological applications of selected LAB, including the development of fermented plant-based foods and beverages, the design of probiotic cultures/biocontrol solutions, and the valorisation of plant by-products. To our knowledge, this is the first review to provide an integrated overview of genomic and ecological insights into LAB associated with fresh plant matrices. This approach would help to improve understanding of LAB adaptive dynamics and identify sustainable drivers of innovation in agro-food systems.

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Cite This Study

Presutto et al. (2026) studied this question.

synapsesocial.com/papers/69ada836bc08abd80d5bb3e5https://doi.org/10.1007/s11274-026-04872-7
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Also Consider

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  1. 1BIODIVERSITY AND BIOTECHNOLOGICAL POTENTIAL OF LACTIC ACID BACTERIA2014
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  4. 4Plant-Based fermented foods harbor autochthonous lactic acid bacteria with broad antimicrobial activity, bacteriocin diversity, and probiotic potential2026
  5. 5Optimizing fruit and vegetable by-products/wastes exploitation: diversity, safety and biotechnological innovations based on lactic acid bacteria2026 · 2 citations