Abstract
Peach fruit quality is dependent on preharvest treatments and orchard practices. The aim of this study is to evaluate the effects of preharvest potassium silicon fertilization on fruit postharvest quality. Two peach cultivars (“Early Bomba” and “Plagold 17”) were sprayed with three concentrations of potassium silicon (K-Si) at fruit set, stone hardening, and physiological maturity stages. The applied treatments corresponded to control (T0 = 0% K-Si) pulverized with distilled water and two K-Si treatments (T1 = 3% K-Si and T2 = 4.5% K-Si). The blooming and harvesting dates, vegetative growth and agronomical parameters were analyzed over two growing seasons (2021–2022). Peach fruits were stored at 5 °C and 95% RH during two cold storage periods (2 and 4 weeks) followed by 2 days at room temperatures. The fruit weights (FW), color, firmness, soluble solids content (SSC), titratable acidity (TA), pulp stone ratio (P/S) and fruit weight loss (FWL) were evaluated. The anthocyanins, flavonoids, total phenolics, carotenoids and antioxidant capacity (DPPH) were determined. Vitamin B5 and vitamin C were analyzed by HPLC. The ethylene rate and the chilling injury symptoms (CI) were analyzed after two cold storage periods (2 and 4 weeks). Results showed that the applied potassium silicon treatments (3% K-Si and 4.5% K-Si) enhanced the FW, SSC, TA, FWL, fruit composition and CI. Anthocyanins and total phenolics increased after cold storage period under K-Si treatments. The nectarine cultivar (cv) Early Bomba showed low sensibility to chilling injury symptoms as compared to the cv Plagold 17.
Funder
Regional Center for Agricultural Research of Sidi Bouzid
Institution of Higher Education and Agricultural Research
Subject
Plant Science,Agronomy and Crop Science,Food Science
Reference38 articles.
1. (2022, December 01). FAOSTAT. Available online: http://www.faostat.fao.org.
2. Studies on enhancing the keeping quality of peach (Prunus persica Batsch) cv. Elberta by gamma-irradiation;Hussain;Rad. Physiol. Chem.,2008
3. Response of silicon and micro nutrients on fruit character and nutrient content in leaf of sapota;Lalithya;Biolife,2014
4. Okba, S.K., Mazrou, Y., Elmenofy, H.M., Ezzat, A., and Salama, A.M. (2021). New Insights of Potassium Sources Impacts as Foliar Application on ‘Canino’ Apricot Fruit Yield, Fruit Anatomy, Quality and Storability. Plants, 10.
5. Impact of potassium nutrition on postharvest fruit quality: Melon (Cucumis melo L.) case study;Lester;Plant Soil,2010
Cited by
8 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献