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Comparative study of flavonoid and scoparone accumulation in different Citrus species and their susceptibility to Penicillium digitatum
Authors:A Ortuño  L Díaz  N Alvarez  I Porras  A García-Lidón  JA Del Río
Affiliation:1. Departamento de Biología Vegetal (Fisiología Vegetal), Facultad de Biología, Universidad de Murcia, E-30100 Murcia, Spain;2. Instituto Murciano de Investigación y Desarrollo Agrario y Alimentario (IMIDA). La Alberca, E-30150 Murcia, Spain
Abstract:Fungi of the genus Penicillium are responsible for substantial post-harvest losses in Citrus fruits. The results obtained following artificial inoculation of Citrus fruits with Penicillium digitatum showed that the degree of fungal development depended on the Citrus species. Thus, the mature fruit of Citrus paradisi were more susceptible to this fungus than the mature fruit of Citrus limon, Citrus sinensis,Citrus clementina Hort. ex Tan., and Citrus unshiu (mak) Marc. The results point to an inverse correlation between the degree of susceptibility of Citrus species to this fungus and the flavanone content – hesperidin in C. sinensis, C. clementina Hort. ex Tan. and C. unshiu (mak) Marc.; naringin in C. paradisi and the flavanone hesperidin and the flavone diosmin in C. limon. Thus, in C. sinensis,C. clementina Hort. ex Tan and C. unshiu (mak) Marc. the highest levels of the polymethoxyflavones, sinensetin, tangeretin, heptamethoxyflavone and nobiletin, were observed in the least susceptible varieties and viceversa. In the case of C. paradisi, no significant differences were detected in the polymethoxyflavone levels between varieties, while in C. limon, polymethoxyflavones were hardly detectable. The production of scoparone was observed in all the species and varieties studied after inoculation with the fungus, especially in C. limon fruits. Based on the evidence, it seems that flavanones, flavones, polymethoxyflavones (phytoanticipins) and scoparone (a phytoalexin) may well be involved in the defence mechanisms of Citrus fruits against P. digitatum. Depending on the Citrus species in question, the relative participation of one group of secondary compounds or another may vary.
Keywords:Citrus clementina Hort  ex Tan  Citrus unshiu (mak) Marc  Citrus limon  Citrus sinensis  Citrus paradisi  Defence mechanism  Diosmin  Hesperidin  Naringin  Penicillium digitatum  Scoparone  Polymethoxyflavones
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