Kilwake, J.W.; Umer, M.J.; Wei, Y.; Mehari, T.G.; Magwanga, R.O.; Xu, Y.; Hou, Y.; Wang, Y.; Shiraku, M.L.; Kirungu, J.N.;
et al. Genome-Wide Characterization of the SAMS Gene Family in Cotton Unveils the Putative Role of GhSAMS2 in Enhancing Abiotic Stress Tolerance. Agronomy 2023, 13, 612.
https://doi.org/10.3390/agronomy13020612
AMA Style
Kilwake JW, Umer MJ, Wei Y, Mehari TG, Magwanga RO, Xu Y, Hou Y, Wang Y, Shiraku ML, Kirungu JN,
et al. Genome-Wide Characterization of the SAMS Gene Family in Cotton Unveils the Putative Role of GhSAMS2 in Enhancing Abiotic Stress Tolerance. Agronomy. 2023; 13(2):612.
https://doi.org/10.3390/agronomy13020612
Chicago/Turabian Style
Kilwake, Joseph Wanjala, Muhammad Jawad Umer, Yangyang Wei, Teame Gereziher Mehari, Richard Odongo Magwanga, Yanchao Xu, Yuqing Hou, Yuhong Wang, Margaret Linyerera Shiraku, Joy Nyangasi Kirungu,
and et al. 2023. "Genome-Wide Characterization of the SAMS Gene Family in Cotton Unveils the Putative Role of GhSAMS2 in Enhancing Abiotic Stress Tolerance" Agronomy 13, no. 2: 612.
https://doi.org/10.3390/agronomy13020612
APA Style
Kilwake, J. W., Umer, M. J., Wei, Y., Mehari, T. G., Magwanga, R. O., Xu, Y., Hou, Y., Wang, Y., Shiraku, M. L., Kirungu, J. N., Cai, X., Zhou, Z., Peng, R., & Liu, F.
(2023). Genome-Wide Characterization of the SAMS Gene Family in Cotton Unveils the Putative Role of GhSAMS2 in Enhancing Abiotic Stress Tolerance. Agronomy, 13(2), 612.
https://doi.org/10.3390/agronomy13020612