El-Nagar, A.; Elzaawely, A.A.; Xuan, T.D.; Gaber, M.; El-Wakeil, N.; El-Sayed, Y.; Nehela, Y.
Metal Complexation of Bis-Chalcone Derivatives Enhances Their Efficacy against Fusarium Wilt Disease, Caused by Fusarium equiseti, via Induction of Antioxidant Defense Machinery. Plants 2022, 11, 2418.
https://doi.org/10.3390/plants11182418
AMA Style
El-Nagar A, Elzaawely AA, Xuan TD, Gaber M, El-Wakeil N, El-Sayed Y, Nehela Y.
Metal Complexation of Bis-Chalcone Derivatives Enhances Their Efficacy against Fusarium Wilt Disease, Caused by Fusarium equiseti, via Induction of Antioxidant Defense Machinery. Plants. 2022; 11(18):2418.
https://doi.org/10.3390/plants11182418
Chicago/Turabian Style
El-Nagar, Asmaa, Abdelnaser A. Elzaawely, Tran Dang Xuan, Mohamed Gaber, Nadia El-Wakeil, Yusif El-Sayed, and Yasser Nehela.
2022. "Metal Complexation of Bis-Chalcone Derivatives Enhances Their Efficacy against Fusarium Wilt Disease, Caused by Fusarium equiseti, via Induction of Antioxidant Defense Machinery" Plants 11, no. 18: 2418.
https://doi.org/10.3390/plants11182418
APA Style
El-Nagar, A., Elzaawely, A. A., Xuan, T. D., Gaber, M., El-Wakeil, N., El-Sayed, Y., & Nehela, Y.
(2022). Metal Complexation of Bis-Chalcone Derivatives Enhances Their Efficacy against Fusarium Wilt Disease, Caused by Fusarium equiseti, via Induction of Antioxidant Defense Machinery. Plants, 11(18), 2418.
https://doi.org/10.3390/plants11182418