Publications des scientifiques de l'IRD

Nguyen-Ngoc H., Nguyen C. Q., Vo K. A. T., Nguyen T. T. T., Nghiem D. T., Ha N. T., Nguyen V., Choi G. J., Ardiansyah A. G., Nguyen Cong Thanh, Vu H. D., Nguyen N. T., De Tran Q., Le Dang Q. (2023). Insight into the role of phytoalexin naringenin and phytohormone abscisic acid in defense against phytopathogens Phytophthora infestans and Magnaporthe oryzae : In vitro and in silico approaches. Physiological and Molecular Plant Pathology, 127, p. 102123 [11 p.]. ISSN 0885-5765.

Titre du document
Insight into the role of phytoalexin naringenin and phytohormone abscisic acid in defense against phytopathogens Phytophthora infestans and Magnaporthe oryzae : In vitro and in silico approaches
Année de publication
2023
Type de document
Article référencé dans le Web of Science WOS:001069654000001
Auteurs
Nguyen-Ngoc H., Nguyen C. Q., Vo K. A. T., Nguyen T. T. T., Nghiem D. T., Ha N. T., Nguyen V., Choi G. J., Ardiansyah A. G., Nguyen Cong Thanh, Vu H. D., Nguyen N. T., De Tran Q., Le Dang Q.
Source
Physiological and Molecular Plant Pathology, 2023, 127, p. 102123 [11 p.] ISSN 0885-5765
Phytoalexin naringenin and phytohormone abscisic acid (ABA) play crucial roles in plant defense and physiology. This work encompassed both experimental and computational approaches to assess their antifungal efficacy against Phytophthora infestans and Magnaporthe oryzae. Naringenin and ABA, isolated from Desmodium sequax, exhibited significant in vitro antifungal activity against both pathogens. Naringenin was moderately active against M. oryzae in a dose-dependent manner, while ABA was not. The antifungal efficacy of ABA against P. infestans (IC50 = 19.7 mu g/mL and IC90 = 72.0 mu g/mL) was more potent when compared with that of naringenin (IC50 = 53.7 mu g/mL and IC90 = 129.2 mu g/mL). Computational models provided insights into their interactions with pathogenic enzymes. Naringenin emerged as a novel inhibitor of M. oryzae enzymes (1,3,8-trihydroxynaphthalene reductase and scytalone dehydratase); and together with ABA, it exhibited robust interactions with targeted P. infestans enzymes (chitin synthase and calmodulin). Ligand-based pharmacophore models were constructed for prospective P. infestans inhibitors. These findings highlight the mechanism and antifungal potential of naringenin and ABA and suggest their use as natural fungicides in sustainable agriculture.
Plan de classement
Sciences du monde végétal [076]
Localisation
Fonds IRD [F B010090262]
Identifiant IRD
fdi:010090262
Contact