Findings suggest that 1OH-PHZ potentially binds to PLPDT, thereby disrupting amino acid metabolism and biosynthesis, which subsequently affects the synthesis and morphological development of the fungal cell wall and cell membrane.
Abstract
Corynespora leaf spot, caused by Corynespora cassiicola, is an emerging disease in crops that significantly impacts both yield and quality. Currently, the use of fungicides to control Corynespora leaf spot has led to the development of varying degrees of resistance in the pathogen. Therefore, it is crucial to screen for highly effective fungicides with novel modes of action. This study evaluated the antifungal activity of 1-hydroxyphenazine (1OH-PHZ) against multiple phytopathogenic fungi, with a half-maximal effective concentration (EC50) of 19.23 μg/ml against C. cassiicola hyphae. In vivo assay demonstrated antifungal activity of 67.22 and 45.03% on detached tomato leaves and fruits, respectively, at a dose of 500.0 μg/ml. Microscopic and ultrastructural observations revealed hyphal collapse, surface wrinkling, and indistinct organelle boundaries following treatment. Integrated transcriptomic and metabolomic analyses showed differentially expressed genes and differentially abundant metabolites, primarily affecting amino acid metabolism and biosynthesis pathways. Molecular docking, dynamic simulations, and microscale thermophoresis assays demonstrated that 1OH-PHZ binds to PLP-dependent transferase (PLPDT), exhibiting a binding free energy of -7.2 kcal/mol and a dissociation constant (Kd) value of 1.16 μM. Collectively, these findings suggest that 1OH-PHZ potentially binds to PLPDT, thereby disrupting amino acid metabolism and biosynthesis, which subsequently affects the synthesis and morphological development of the fungal cell wall and cell membrane. Through the combination and screening of highly active fungicidal substances, this study offers mechanistic insights that support the potential development of 1OH-PHZ as a novel agricultural fungicide for managing C. cassiicola infections.
Weed control is crucial for global food production, as weeds cause economic losses. Chalcones are multifunctional compounds with diverse molecular targets, strong phytotoxic potential, and easy synthesis. This work investigated the herbicidal potential and mode of action of methoxychalcones, as well as their precursor,...
R. M. Garrido, P. R. Ozanique, L. Regasini et al.· Scientific Reports· 0 citations
This study systematically characterizes the resistance regulatory network of F. graminearum against pydiflumetofen, and provides theoretical guidance for the rational application and sustainable field resistance management of this fungicide.
Yun Wang, Dong-Mei Liu, Hai-Yan Yin et al.· International Journal of Mol...· 0 citations
It is revealed that the PdEch1 gene is closely associated with conidial formation and oxidative stress tolerance in P. digitatum, providing a reference for the development and screening of target sites for novel fungicides.
Lu Yang, Yuqing Wang, Zhonghuan Tian et al.· Genes & Genomics· 0 citations
The herbicidal mechanism of rubratoxin B (RB), a mycotoxin produced by Talaromyces purpureogenus XJ14C02 strain isolated from soil in Xinjiang, China is elucidated and multi-omics integration coupled with mutant validation identifies PAL, 4CL, and F3H as critical functional mediators of RB phytotoxicity.
Ke Zhang, Min Zhang, Zhe Chen et al.· Pest Management Science· 0 citations
Findings provide insights into the potential multifaceted insecticidal action of benzothiazole in T. castaneum at the transcriptomic level and support its further development as a target-specific grain fumigant.
Kai-Di Cui, Xue-Ran Hu, Weifeng Cheng et al.· Pest Management Science· 0 citations
Citrus fruits are susceptible to infection by Penicillium digitatum, causing significant economic loss. Exploring eco-friendly control strategies is therefore critical. Here, we identified and heterologously expressed a novel secreted protein, PdCP1, from P. digitatum and characterized it as a proteinaceous elicitor....
Xue Bai, Xi Zhang, S. Dhanasekaran et al.· Journal of Agricultural and...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.