Wang, F.; Lv, Z.; Xiao, L.; Chen, B.; Liu, W.; Huang, J.; Liu, G.; Yan, Y.; Huang, J.; Yang, G.
Physiological Responses of Paulownia fortunei to Leaf Herbivory by Epicauta ruficeps: Nitrogen Assimilation, Porphyrin Metabolism, and ROS-Driven Antioxidant and Phenylpropanoid Responses. Plants 2025, 14, 3659.
https://doi.org/10.3390/plants14233659
AMA Style
Wang F, Lv Z, Xiao L, Chen B, Liu W, Huang J, Liu G, Yan Y, Huang J, Yang G.
Physiological Responses of Paulownia fortunei to Leaf Herbivory by Epicauta ruficeps: Nitrogen Assimilation, Porphyrin Metabolism, and ROS-Driven Antioxidant and Phenylpropanoid Responses. Plants. 2025; 14(23):3659.
https://doi.org/10.3390/plants14233659
Chicago/Turabian Style
Wang, Fan, Zhongke Lv, Lizhi Xiao, Bo Chen, Wenhuan Liu, Jiaqing Huang, Gaoqiang Liu, Yuchen Yan, Jianhua Huang, and Guoqun Yang.
2025. "Physiological Responses of Paulownia fortunei to Leaf Herbivory by Epicauta ruficeps: Nitrogen Assimilation, Porphyrin Metabolism, and ROS-Driven Antioxidant and Phenylpropanoid Responses" Plants 14, no. 23: 3659.
https://doi.org/10.3390/plants14233659
APA Style
Wang, F., Lv, Z., Xiao, L., Chen, B., Liu, W., Huang, J., Liu, G., Yan, Y., Huang, J., & Yang, G.
(2025). Physiological Responses of Paulownia fortunei to Leaf Herbivory by Epicauta ruficeps: Nitrogen Assimilation, Porphyrin Metabolism, and ROS-Driven Antioxidant and Phenylpropanoid Responses. Plants, 14(23), 3659.
https://doi.org/10.3390/plants14233659