Fernandes, I.; Marques, I.; Paulo, O.S.; Batista, D.; Partelli, F.L.; Lidon, F.C.; DaMatta, F.M.; Ramalho, J.C.; Ribeiro-Barros, A.I.
Understanding the Impact of Drought in Coffea Genotypes: Transcriptomic Analysis Supports a Common High Resilience to Moderate Water Deficit but a Genotype Dependent Sensitivity to Severe Water Deficit. Agronomy 2021, 11, 2255.
https://doi.org/10.3390/agronomy11112255
AMA Style
Fernandes I, Marques I, Paulo OS, Batista D, Partelli FL, Lidon FC, DaMatta FM, Ramalho JC, Ribeiro-Barros AI.
Understanding the Impact of Drought in Coffea Genotypes: Transcriptomic Analysis Supports a Common High Resilience to Moderate Water Deficit but a Genotype Dependent Sensitivity to Severe Water Deficit. Agronomy. 2021; 11(11):2255.
https://doi.org/10.3390/agronomy11112255
Chicago/Turabian Style
Fernandes, Isabel, Isabel Marques, Octávio S. Paulo, Dora Batista, Fábio L. Partelli, Fernando C. Lidon, Fábio M. DaMatta, José C. Ramalho, and Ana I. Ribeiro-Barros.
2021. "Understanding the Impact of Drought in Coffea Genotypes: Transcriptomic Analysis Supports a Common High Resilience to Moderate Water Deficit but a Genotype Dependent Sensitivity to Severe Water Deficit" Agronomy 11, no. 11: 2255.
https://doi.org/10.3390/agronomy11112255
APA Style
Fernandes, I., Marques, I., Paulo, O. S., Batista, D., Partelli, F. L., Lidon, F. C., DaMatta, F. M., Ramalho, J. C., & Ribeiro-Barros, A. I.
(2021). Understanding the Impact of Drought in Coffea Genotypes: Transcriptomic Analysis Supports a Common High Resilience to Moderate Water Deficit but a Genotype Dependent Sensitivity to Severe Water Deficit. Agronomy, 11(11), 2255.
https://doi.org/10.3390/agronomy11112255