Kaseb, M.O.; Umer, M.J.; Anees, M.; Zhu, H.; Zhao, S.; Lu, X.; He, N.; El-Remaly, E.; El-Eslamboly, A.; Yousef, A.F.;
et al. Transcriptome Profiling to Dissect the Role of Genome Duplication on Graft Compatibility Mechanisms in Watermelon. Biology 2022, 11, 575.
https://doi.org/10.3390/biology11040575
AMA Style
Kaseb MO, Umer MJ, Anees M, Zhu H, Zhao S, Lu X, He N, El-Remaly E, El-Eslamboly A, Yousef AF,
et al. Transcriptome Profiling to Dissect the Role of Genome Duplication on Graft Compatibility Mechanisms in Watermelon. Biology. 2022; 11(4):575.
https://doi.org/10.3390/biology11040575
Chicago/Turabian Style
Kaseb, Mohamed Omar, Muhammad Jawad Umer, Muhammad Anees, Hongju Zhu, Shengjie Zhao, Xuqiang Lu, Nan He, Eman El-Remaly, Ahmed El-Eslamboly, Ahmed F. Yousef,
and et al. 2022. "Transcriptome Profiling to Dissect the Role of Genome Duplication on Graft Compatibility Mechanisms in Watermelon" Biology 11, no. 4: 575.
https://doi.org/10.3390/biology11040575
APA Style
Kaseb, M. O., Umer, M. J., Anees, M., Zhu, H., Zhao, S., Lu, X., He, N., El-Remaly, E., El-Eslamboly, A., Yousef, A. F., Salama, E. A. A., Alrefaei, A. F., Kalaji, H. M., & Liu, W.
(2022). Transcriptome Profiling to Dissect the Role of Genome Duplication on Graft Compatibility Mechanisms in Watermelon. Biology, 11(4), 575.
https://doi.org/10.3390/biology11040575