Nehela, Y.; Taha, N.A.; Elzaawely, A.A.; Xuan, T.D.; A. Amin, M.; Ahmed, M.E.; El-Nagar, A.
Benzoic Acid and Its Hydroxylated Derivatives Suppress Early Blight of Tomato (Alternaria solani) via the Induction of Salicylic Acid Biosynthesis and Enzymatic and Nonenzymatic Antioxidant Defense Machinery. J. Fungi 2021, 7, 663.
https://doi.org/10.3390/jof7080663
AMA Style
Nehela Y, Taha NA, Elzaawely AA, Xuan TD, A. Amin M, Ahmed ME, El-Nagar A.
Benzoic Acid and Its Hydroxylated Derivatives Suppress Early Blight of Tomato (Alternaria solani) via the Induction of Salicylic Acid Biosynthesis and Enzymatic and Nonenzymatic Antioxidant Defense Machinery. Journal of Fungi. 2021; 7(8):663.
https://doi.org/10.3390/jof7080663
Chicago/Turabian Style
Nehela, Yasser, Naglaa A. Taha, Abdelnaser A. Elzaawely, Tran Dang Xuan, Mohammed A. Amin, Mohamed E. Ahmed, and Asmaa El-Nagar.
2021. "Benzoic Acid and Its Hydroxylated Derivatives Suppress Early Blight of Tomato (Alternaria solani) via the Induction of Salicylic Acid Biosynthesis and Enzymatic and Nonenzymatic Antioxidant Defense Machinery" Journal of Fungi 7, no. 8: 663.
https://doi.org/10.3390/jof7080663
APA Style
Nehela, Y., Taha, N. A., Elzaawely, A. A., Xuan, T. D., A. Amin, M., Ahmed, M. E., & El-Nagar, A.
(2021). Benzoic Acid and Its Hydroxylated Derivatives Suppress Early Blight of Tomato (Alternaria solani) via the Induction of Salicylic Acid Biosynthesis and Enzymatic and Nonenzymatic Antioxidant Defense Machinery. Journal of Fungi, 7(8), 663.
https://doi.org/10.3390/jof7080663