Pérez-Sánchez, L.E.; Ayala-Guerrero, L.M.; Mendieta-Moctezuma, A.; Villalobos-López, M.A.; RÃos-Meléndez, S.
Stress-Induced Plant Specialized Metabolism: Signaling, Multi-Omics Integration, and Plant-Derived Antimicrobial Metabolites to Combat Antimicrobial Resistance. Plants 2026, 15, 193.
https://doi.org/10.3390/plants15020193
AMA Style
Pérez-Sánchez LE, Ayala-Guerrero LM, Mendieta-Moctezuma A, Villalobos-López MA, RÃos-Meléndez S.
Stress-Induced Plant Specialized Metabolism: Signaling, Multi-Omics Integration, and Plant-Derived Antimicrobial Metabolites to Combat Antimicrobial Resistance. Plants. 2026; 15(2):193.
https://doi.org/10.3390/plants15020193
Chicago/Turabian Style
Pérez-Sánchez, Luis Enrique, Luis Mario Ayala-Guerrero, Aarón Mendieta-Moctezuma, Miguel Angel Villalobos-López, and Selma RÃos-Meléndez.
2026. "Stress-Induced Plant Specialized Metabolism: Signaling, Multi-Omics Integration, and Plant-Derived Antimicrobial Metabolites to Combat Antimicrobial Resistance" Plants 15, no. 2: 193.
https://doi.org/10.3390/plants15020193
APA Style
Pérez-Sánchez, L. E., Ayala-Guerrero, L. M., Mendieta-Moctezuma, A., Villalobos-López, M. A., & RÃos-Meléndez, S.
(2026). Stress-Induced Plant Specialized Metabolism: Signaling, Multi-Omics Integration, and Plant-Derived Antimicrobial Metabolites to Combat Antimicrobial Resistance. Plants, 15(2), 193.
https://doi.org/10.3390/plants15020193