Huang, Y.; Wang, R.; Tan, Y.; Liu, Y.; Ren, X.; Guo, C.; Li, R.; Li, M.
Investigating the Mechanisms Underlying Citral-Induced Oxidative Stress and Its Contribution to Antifungal Efficacy on Magnaporthe oryzae Through a Multi-Omics Approach. Plants 2025, 14, 2001.
https://doi.org/10.3390/plants14132001
AMA Style
Huang Y, Wang R, Tan Y, Liu Y, Ren X, Guo C, Li R, Li M.
Investigating the Mechanisms Underlying Citral-Induced Oxidative Stress and Its Contribution to Antifungal Efficacy on Magnaporthe oryzae Through a Multi-Omics Approach. Plants. 2025; 14(13):2001.
https://doi.org/10.3390/plants14132001
Chicago/Turabian Style
Huang, Yonghui, Ruoruo Wang, Yumei Tan, Yongxiang Liu, Xiyi Ren, Congtao Guo, Rongyu Li, and Ming Li.
2025. "Investigating the Mechanisms Underlying Citral-Induced Oxidative Stress and Its Contribution to Antifungal Efficacy on Magnaporthe oryzae Through a Multi-Omics Approach" Plants 14, no. 13: 2001.
https://doi.org/10.3390/plants14132001
APA Style
Huang, Y., Wang, R., Tan, Y., Liu, Y., Ren, X., Guo, C., Li, R., & Li, M.
(2025). Investigating the Mechanisms Underlying Citral-Induced Oxidative Stress and Its Contribution to Antifungal Efficacy on Magnaporthe oryzae Through a Multi-Omics Approach. Plants, 14(13), 2001.
https://doi.org/10.3390/plants14132001