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Review

Exploring Bioactive Polysaccharides in Edible Fruits: A Cross-Biome Perspective

by
Karen Rebouças Nascimento
1,2,
Leandro Teodoro Júnior
3,4,
Mari Cleide Sogayar
3,4 and
João Paulo Fabi
1,2,*
1
Department of Food Science and Experimental Nutrition, School of Pharmaceutical Sciences, University of São Paulo, São Paulo 05508-000, SP, Brazil
2
Food Research Center (FoRC), CEPID-FAPESP (Research, Innovation and Dissemination Centers, São Paulo Research Foundation), São Paulo 05508-080, SP, Brazil
3
Biochemistry Department, Chemistry Institute, University of São Paulo, São Paulo 05508-900, SP, Brazil
4
Cell and Molecular Therapy NUCEL Group, School of Medicine, University of São Paulo, São Paulo 01246-903, SP, Brazil
*
Author to whom correspondence should be addressed.
Plants 2025, 14(22), 3515; https://doi.org/10.3390/plants14223515
Submission received: 10 September 2025 / Revised: 10 November 2025 / Accepted: 12 November 2025 / Published: 18 November 2025
(This article belongs to the Special Issue Research on Nutritional and Bioactive Compounds from Edible Fruits)

Abstract

The present work consisted of a comparative analysis, followed by an extensive narrative literature review, of the structural profiles of bioactive polysaccharides from edible fruits representing different terrestrial biomes, relating them—with a focus on their monosaccharide fractions—to the abiotic variables of each biome, such as temperature, rainfall, annual water regimes, and physicochemical characteristics of the soil to provide an accurate landscape regarding the patterns and divergences surrounding the development of edible fruits around the world. The present review also provided a focus on the various analytical methods used to obtain data related to the glycosidic profile of the analyzed edible fruits, allowing for a comparison of issues relating to the biomes and the quantitative composition of the existing polysaccharides, together with the associated macromolecular parameters, such as degree of esterification, branching, and average molecular weight. From the analysis performed, recurrences of characteristics were identified in different biomes, such as high concentrations of galacturonic acid and arabinose in fruits from cold regions; abundance of xyloarabinan and galactan in fruits from arid areas; and greater branching, acetylation, and a lower degree of esterification in fruits subject to water variations that favor water retention and cell wall stability. These profiles suggest a strong association between the structure of polysaccharides and ecological adaptations that are crucial for their full development. The insights presented here are of the utmost importance in both basic and applied food science, indicating possible structural targets for selecting and engineering resistance in edible fruits under various abiotic stress conditions and guiding and providing direction for experimental studies that extend beyond classical methodologies.
Keywords: bioactive polysaccharides; carbohydrates; edible fruits; structural composition; biome bioactive polysaccharides; carbohydrates; edible fruits; structural composition; biome

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MDPI and ACS Style

Nascimento, K.R.; Júnior, L.T.; Sogayar, M.C.; Fabi, J.P. Exploring Bioactive Polysaccharides in Edible Fruits: A Cross-Biome Perspective. Plants 2025, 14, 3515. https://doi.org/10.3390/plants14223515

AMA Style

Nascimento KR, Júnior LT, Sogayar MC, Fabi JP. Exploring Bioactive Polysaccharides in Edible Fruits: A Cross-Biome Perspective. Plants. 2025; 14(22):3515. https://doi.org/10.3390/plants14223515

Chicago/Turabian Style

Nascimento, Karen Rebouças, Leandro Teodoro Júnior, Mari Cleide Sogayar, and João Paulo Fabi. 2025. "Exploring Bioactive Polysaccharides in Edible Fruits: A Cross-Biome Perspective" Plants 14, no. 22: 3515. https://doi.org/10.3390/plants14223515

APA Style

Nascimento, K. R., Júnior, L. T., Sogayar, M. C., & Fabi, J. P. (2025). Exploring Bioactive Polysaccharides in Edible Fruits: A Cross-Biome Perspective. Plants, 14(22), 3515. https://doi.org/10.3390/plants14223515

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