Castaldi, S.; Zorrilla, J.G.; Petrillo, C.; Russo, M.T.; Ambrosino, P.; Masi, M.; Cimmino, A.; Isticato, R.
Alternaria alternata Isolated from Infected Pears (Pyrus communis) in Italy Produces Non-Host Toxins and Hydrolytic Enzymes as Infection Mechanisms and Exhibits Competitive Exclusion against Botrytis cinerea in Co-Infected Host Fruits. J. Fungi 2023, 9, 326.
https://doi.org/10.3390/jof9030326
AMA Style
Castaldi S, Zorrilla JG, Petrillo C, Russo MT, Ambrosino P, Masi M, Cimmino A, Isticato R.
Alternaria alternata Isolated from Infected Pears (Pyrus communis) in Italy Produces Non-Host Toxins and Hydrolytic Enzymes as Infection Mechanisms and Exhibits Competitive Exclusion against Botrytis cinerea in Co-Infected Host Fruits. Journal of Fungi. 2023; 9(3):326.
https://doi.org/10.3390/jof9030326
Chicago/Turabian Style
Castaldi, Stefany, Jesús G. Zorrilla, Claudia Petrillo, Maria Teresa Russo, Patrizia Ambrosino, Marco Masi, Alessio Cimmino, and Rachele Isticato.
2023. "Alternaria alternata Isolated from Infected Pears (Pyrus communis) in Italy Produces Non-Host Toxins and Hydrolytic Enzymes as Infection Mechanisms and Exhibits Competitive Exclusion against Botrytis cinerea in Co-Infected Host Fruits" Journal of Fungi 9, no. 3: 326.
https://doi.org/10.3390/jof9030326
APA Style
Castaldi, S., Zorrilla, J. G., Petrillo, C., Russo, M. T., Ambrosino, P., Masi, M., Cimmino, A., & Isticato, R.
(2023). Alternaria alternata Isolated from Infected Pears (Pyrus communis) in Italy Produces Non-Host Toxins and Hydrolytic Enzymes as Infection Mechanisms and Exhibits Competitive Exclusion against Botrytis cinerea in Co-Infected Host Fruits. Journal of Fungi, 9(3), 326.
https://doi.org/10.3390/jof9030326