Hammami, S.B.M.; Chaari, S.; Baazaoui, N.; Drira, R.; Drira, N.; Aounallah, K.; Maazoun, A.; Antar, Z.; Jorrín Novo, J.V.; Bettaieb, T.;
et al. The Regulation of Ion Homeostasis, Growth, and Biomass Allocation in Date Palm Ex Vitro Plants Depends on the Level of Water Salinity. Sustainability 2022, 14, 12676.
https://doi.org/10.3390/su141912676
AMA Style
Hammami SBM, Chaari S, Baazaoui N, Drira R, Drira N, Aounallah K, Maazoun A, Antar Z, Jorrín Novo JV, Bettaieb T,
et al. The Regulation of Ion Homeostasis, Growth, and Biomass Allocation in Date Palm Ex Vitro Plants Depends on the Level of Water Salinity. Sustainability. 2022; 14(19):12676.
https://doi.org/10.3390/su141912676
Chicago/Turabian Style
Hammami, Sofiene B. M., Sami Chaari, Narjes Baazaoui, Riadh Drira, Noureddine Drira, Karim Aounallah, Asma Maazoun, Zied Antar, Jesús V. Jorrín Novo, Taoufik Bettaieb,
and et al. 2022. "The Regulation of Ion Homeostasis, Growth, and Biomass Allocation in Date Palm Ex Vitro Plants Depends on the Level of Water Salinity" Sustainability 14, no. 19: 12676.
https://doi.org/10.3390/su141912676
APA Style
Hammami, S. B. M., Chaari, S., Baazaoui, N., Drira, R., Drira, N., Aounallah, K., Maazoun, A., Antar, Z., Jorrín Novo, J. V., Bettaieb, T., Rapoport, H. F., & Sghaier-Hammami, B.
(2022). The Regulation of Ion Homeostasis, Growth, and Biomass Allocation in Date Palm Ex Vitro Plants Depends on the Level of Water Salinity. Sustainability, 14(19), 12676.
https://doi.org/10.3390/su141912676