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Review
. 2023 Jul 5;71(26):9951-9972.
doi: 10.1021/acs.jafc.3c00481. Epub 2023 Jun 21.

Nutritional and Physiological Effects of Postharvest UV Radiation on Vegetables: A Review

Affiliations
Review

Nutritional and Physiological Effects of Postharvest UV Radiation on Vegetables: A Review

Frederike Sonntag et al. J Agric Food Chem. .

Abstract

Effective ultraviolet (UV) irradiation has been used as a postharvest technology to reduce decay, delay ripening, and delay senescence in crop products. In this review, the effects of UV radiation of different wavelengths and doses on physiological and phytochemical parameters in postharvest vegetables are discussed in summary, including appearance (color and texture), microbial load, respiration rate, enzymatic antioxidant system, and various bioactive compounds (phenolic compounds, carotenoids, chlorophylls, vitamins, glucosinolates, betalains, and antioxidant activities). In particular, postharvest UV radiation affects oxidative metabolism and increases the antioxidant activity of plant products, which could help delay yellowing and senescence of vegetables, trigger defense responses, and reduce decay and diseases. In some cases, irradiation stimulates the synthesis of bioactive secondary metabolites that may improve the nutritional value of vegetables. The findings presented in this review are very useful and valuable for the preservation and improvement of the nutritional quality of vegetables after harvest. It will also provide scientific support for industrial and commercial applications of UV radiation in postharvest.

Keywords: nutritional quality; phytochemicals; postharvest UV radiation; shelf life; vegetables.

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Conflict of interest statement

The authors declare no competing financial interest.

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References

    1. Wang X.; Ouyang Y.; Liu J.; Zhu M.; Zhao G.; Bao W.; Hu F. B. Fruit and Vegetable Consumption and Mortality from All Causes, Cardiovascular Disease, and Cancer: Systematic Review and Dose-Response Meta-Analysis of Prospective Cohort Studies. BMJ 2014, 349 (July), 1–14. 10.1136/bmj.g4490. - DOI - PMC - PubMed
    1. Mentella M. C.; Scaldaferri F.; Ricci C.; Gasbarrini A.; Miggiano G. A. D. Cancer and Mediterranean Diet: A Review. Nutrients 2019, 11 (9), 2059.10.3390/nu11092059. - DOI - PMC - PubMed
    1. Pomerleau J.; Lock K.; Knai C.; McKee M. Effectiveness of Interventions and Programmes Promoting Fruit and Vegetable Intake. Eur. J. Public Health 2004, 14.
    1. Maharaj R. Effects of Abiotic Stress (UV-C) Induced Activation of Phytochemicals on the Postharvest Quality of Horticultural Crops. Phytochem. - Isol. Characterisation Role Hum. Heal 2015, 10.5772/60050. - DOI
    1. Zhang W.; Jiang W. UV Treatment Improved the Quality of Postharvest Fruits and Vegetables by Inducing Resistance. Trends Food Sci. Technol. 2019, 92, 71–80. 10.1016/j.tifs.2019.08.012. - DOI

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