Processing tubers such as potato, sweet potato, cassava, and yam, as well as legumes such as soybean, pea, chickpea, bean, and lentil, generates substantial quantities of peels, pulps, husks, and press cakes that retain considerable nutritional and functional value despite often being discarded. Microbial fermentation has emerged as a low-cost and scalable approach for valorising these residues into functional ingredients with improved digestibility and enhanced bioactive-compound content. This study synthesises the composition of major tuber and legume by-products, the solid-state and submerged fermentation systems employed for their bioconversion, and the biochemical and functional transformations achieved through fermentation, including improvements in antioxidant activity, prebiotic potential, antihyperglycaemic properties, and protein quality. The emerging applications of these fermented by-products in bakery products, dairy alternatives, snacks, nutraceuticals, and the conceptually related field of gut-microbiome-guided precision nutrition are also examined. Persistent challenges, including compositional variability, safety monitoring, and regulatory classification, are critically evaluated alongside strategies for addressing these limitations. Overall, fermentation-based valorisation of tuber and legume residues represents a scientifically credible and environmentally sustainable strategy for transforming agri-food waste streams into value-added, functional nutrition ingredients.
The ready-to-eat snack industry in Nigeria remains heavily dependent on imported wheat, costing the country heavily annually, despite its rich diversity of indigenous cereals, tubers, and legumes traditionally processed through fermentation. This review synthesizes current evidence on fermented indigenous cereals and t...
C. A. Okafor, Ngozika M. Ukwueze· Journal of Agriculture, Food...· 0 citations
By integrating various fermentation types and microbial strategies, the food industry can transform underutilized legumes into nutrient-dense, functional ingredients, which facilitates the creation of sensorially appealing, health-promoting plant-based foods that outperform their raw counterparts.
Elena Sánchez-Zapata, Noemí Echegaray, Mónica Graciela Parisi et al.· Current Food Science and Tec...· 0 citations
Fermentation remains one of the oldest and most effective biotechnological processes for improving food quality, safety, and shelf life. In Africa, the fermentation of seed-based substrates such as African locust bean (
Parkia biglobosa
), soybean (
Glycine max
), melon seed (
Citrullus lanatus
), Bambara groun...
Mercy Okuku, T. Ogunnusi, A. Ojo et al.· F1000Research· 0 citations
Citrus processing generates substantial quantities of peel, pulp, membranes, seeds, and extraction residues that present both a waste-management challenge and a potential resource for ruminant production. These by-products are characterized by a fermentable nutritional matrix rich in pectin and soluble sugars, together...
Yu-Chao Zhao, Lin-Shu Jiang· Biofeed Science and Technolo...· 0 citations
The plant-based cheese market has been driven by consumers’ growing desire for more ethical, sustainable, and healthy food options, addressing issues such as lactose intolerance and cow’s milk protein allergy. This review provides a comprehensive analysis of various plant matrices, including oilseeds (such as cashew nu...
Samira Barros de Souza, S. Benevides· London journal of research i...· 0 citations
BACKGROUND
Walnut meal, a major by-product of oil extraction, is rich in protein and bioactive compounds but suffers from poor palatability and low digestibility due to anti-nutritional factors (ANFs) such as phytic acid, tannins, and trypsin inhibitors. Conventional processing methods fail to address these limitations...
Meng-Yu Yang, Jie Zhou, Thanh Ninh Le et al.· The Journal of the Science o...· 0 citations
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