Aug 2026· Current Research in Food Science· Vol 13· 0 citations· 97 references
Medicine
Abstract
The increasing generation of fruit waste represents a major environmental and economic challenge for the agri-food sector, while also offering significant opportunities for sustainable valorisation within the framework of the circular economy. Fruits rejected for cosmetic reasons, together with processing by-products, are rich sources of dietary fibre, sugars and bioactive compounds that can be converted into value-added products. This review aims to provide a comprehensive overview of microbial fermentation as a sustainable strategy for fruit waste valorisation, with particular emphasis on the role of lactic acid bacteria, acetic acid bacteria, yeasts and microbial consortia in improving the nutritional, technological and functional properties of fruit-derived substrates. Current evidence demonstrates that microbial fermentation not only preserves fruit biomass but also enhances its value through the degradation of complex carbohydrates, the biotransformation of phenolic compounds, the production of bioactive metabolites and the generation of functional ingredients. This review further discusses the contribution of viable microorganisms and postbiotic components to product functionality, as well as the importance of microbial viability, processing conditions and storage stability for the development of safe and functional fermented foods. In addition, it highlights recent advances in the use of microbial consortia and identifies the mechanisms governing microorganism–plant matrix interactions as a key area requiring further investigation. Overall, the available literature supports fermentation as a versatile and effective strategy for transforming fruit waste into high-value food products. By integrating current knowledge on microbial metabolism, functionality and processing challenges, this review identifies the main scientific and technological gaps and outlines future research priorities, including microbial consortium design, process scale-up, regulatory considerations and life cycle assessment, to facilitate the industrial implementation of sustainable fruit waste biorefineries.
Apple pomace, a major by-product of the fruit processing industry, is generated in large quantities and is often underutilized, posing environmental and economic challenges. However, this biomass represents a valuable source of bioactive compounds, including dietary fiber, phenolic compounds and pectin, which have sign...
J. Mitrović, Ivana T. Karabegović, B. Danilović· Zbornik radova· 0 citations
Can waste serve as a source of known or novel molecules for plant disease management? This review explores this question, which is closely linked to the necessity of mitigating the environmental impact of agriculture, specifically in terms of waste generation and greenhouse gas emissions. Furthermore, it addresses the...
D. Bulgari, S. Messgo-Moumene, Gregorio Peron et al.· Annual Review of Phytopathol...· 0 citations
The extensive use of synthetic petroleum-based plastics in food packaging has caused severe environmental pollution, while the agro-food industry simultaneously generates millions of tons of underutilized fruit byproducts annually. Consequently, the shift towards a circular bioeconomy has driven the valorization of the...
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Large amounts of by-products, such as peels, pomace, seeds, stalks, and spent substrates, are produced by the agri-food processing industry and are typically thrown away or, at most, recycled into compost or animal feed. However, these residues are becoming more widely acknowledged as a rich and underutilized source of...
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