Impact of Cultivation Conditions, Ethylene Treatment, and Postharvest Storage on Selected Quality and Bioactivity Parameters of Kiwifruit “Hayward” Evaluated by Analytical and Chemometric Methods

Author:

Park Yong Seo1,Polovka Martin2,Ham Kyung-Sik Ham1,Park Yang-Kyun1,Vearasilp Suchada3,Namieśnik Jacek4,Toledo Fernando5,Arancibia-Avila Patricia5,Gorinstein Shela6

Affiliation:

1. Mokpo National University, Department of Horticultural Science, Muan, Jeonnam, South Korea

2. National Agricultural and Food Centre VUP, Food Research Institute, SK-824 75 Bratislava, Slovak Republic

3. Postharvest Technology Research Institute/Postharvest Technology Innovation Center, Chiang Mai, 50200, Thailand

4. Gdańsk University of Technology, Chemical Faculty, Department of Analytical Chemistry, Gdańsk 80 952, Poland

5. Universidad Del Bio-Bio, Department of Basic Sciences, P.O. Box 447, Chillan, 3780000, Chile

6. The Institute for Drug Research, School of Pharmacy, The Hebrew University, Hadassah Medical School, Jerusalem 91120, Israel

Abstract

Abstract Organic, semiorganic, and conventional “Hayward” kiwifruits, treated with ethylene for 24 h and stored during 10 days, were assessed by UV spectrometry, fluorometry, and chemometrical analysis for changes in selected characteristics of quality (firmness, dry matter and soluble solid contents, pH, and acidity) and bioactivity (concentration of polyphenols via Folin-Ciocalteu and p-hydroxybenzoic acid assays). All of the monitored qualitative parameters and characteristics related to bioactivity were affected either by cultivation practices or by ethylene treatment and storage. Results obtained, supported by statistical evaluation (Friedman two-way ANOVA) and chemometric analysis, clearly proved that the most significant impact on the majority of the evaluated parameters of quality and bioactivity of “Hayward” kiwifruit had the ethylene treatment followed by the cultivation practices and the postharvest storage. Total concentration of polyphenols expressed via p-hydroxybenzoic acid assay exhibited the most significant sensitivity to all three evaluated parameters, reaching a 16.5% increase for fresh organic compared to a conventional control sample. As a result of postharvest storage coupled with ethylene treatment, the difference increased to 26.3%. Three-dimensional fluorescence showed differences in the position of the main peaks and their fluorescence intensity for conventional, semiorganic, and organic kiwifruits in comparison with ethylene nontreated samples.

Publisher

Oxford University Press (OUP)

Subject

Pharmacology,Agronomy and Crop Science,Environmental Chemistry,Food Science,Analytical Chemistry

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