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Investigation into the role of phenolic compounds in the protection of citrus against phyllosticta citricarpa.

Mabogoane, Melida
Augustyn, Wilma
Tembu, Vuyelwa J.
Regnier, Thierry
Du Plooy, Wilma
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Abstract
Introduction The use of chemical fungicides to combat disease has made a substantial contribution to food quality and security. Nonetheless, their applications have been limited due to environmental and health concerns, unaffordability, and the fact that pathogens have acquired resistance to some of these fungicides. Alternative eco-friendly and safe control methods should be explored. The current study investigated the influence of citrus rind phenolic compounds against Phyllosticta citricarpa infection by metabolic profiling of two citrus cultivars with varying degrees of susceptibility to infection. Methods Chromatographic data obtained by Ultra Performance Liquid Chromatography-Mass Spectrometry (UPLC) was subjected to multivariate data analysis to identify biomarkers associated with the tolerant cultivar. The identified biomarkers were tested in vitro against P. citricarpa. Results Seville oranges, a tolerant cultivar, displayed higher levels of phenolic content and lower total sugar content, that are both associated with lower susceptibility to citrus black spot infection. The generated Principal Component Analysis (PCA) and Orthogonal Projection to Latent Structures-Discriminant Analysis (OPLS-DA) models gave an overview of the data set and identified components that may be responsible for the differences in susceptibility between the two cultivars. Candidate biomarkers associated with tolerance were identified as naringin, neoeriocitrin, bruteiridin, melitidin, and lucenin-2. Conclusion Naringin, a major candidate biomarker was able to inhibit the growth of the pathogen at 10 000 ppm.
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Date
2024-02-26
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Springer
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Keywords
Citrus black spot, Phyllosticta citricarpa, Biomarkers, Tolerance, Phenolic compounds
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