El Haddad, N.; En-nahli, Y.; Choukri, H.; Aloui, K.; Mentag, R.; El-Baouchi, A.; Hejjaoui, K.; Rajendran, K.; Smouni, A.; Maalouf, F.;
et al. Metabolic Mechanisms Underlying Heat and Drought Tolerance in Lentil Accessions: Implications for Stress Tolerance Breeding. Plants 2023, 12, 3962.
https://doi.org/10.3390/plants12233962
AMA Style
El Haddad N, En-nahli Y, Choukri H, Aloui K, Mentag R, El-Baouchi A, Hejjaoui K, Rajendran K, Smouni A, Maalouf F,
et al. Metabolic Mechanisms Underlying Heat and Drought Tolerance in Lentil Accessions: Implications for Stress Tolerance Breeding. Plants. 2023; 12(23):3962.
https://doi.org/10.3390/plants12233962
Chicago/Turabian Style
El Haddad, Noureddine, Youness En-nahli, Hasnae Choukri, Khawla Aloui, Rachid Mentag, Adil El-Baouchi, Kamal Hejjaoui, Karthika Rajendran, Abdelaziz Smouni, Fouad Maalouf,
and et al. 2023. "Metabolic Mechanisms Underlying Heat and Drought Tolerance in Lentil Accessions: Implications for Stress Tolerance Breeding" Plants 12, no. 23: 3962.
https://doi.org/10.3390/plants12233962
APA Style
El Haddad, N., En-nahli, Y., Choukri, H., Aloui, K., Mentag, R., El-Baouchi, A., Hejjaoui, K., Rajendran, K., Smouni, A., Maalouf, F., & Kumar, S.
(2023). Metabolic Mechanisms Underlying Heat and Drought Tolerance in Lentil Accessions: Implications for Stress Tolerance Breeding. Plants, 12(23), 3962.
https://doi.org/10.3390/plants12233962