Wang, Q.; Ni, J.; Shah, F.; Liu, W.; Wang, D.; Yao, Y.; Hu, H.; Huang, S.; Hou, J.; Fu, S.;
et al. Overexpression of the Stress-Inducible SsMAX2 Promotes Drought and Salt Resistance via the Regulation of Redox Homeostasis in Arabidopsis. Int. J. Mol. Sci. 2019, 20, 837.
https://doi.org/10.3390/ijms20040837
AMA Style
Wang Q, Ni J, Shah F, Liu W, Wang D, Yao Y, Hu H, Huang S, Hou J, Fu S,
et al. Overexpression of the Stress-Inducible SsMAX2 Promotes Drought and Salt Resistance via the Regulation of Redox Homeostasis in Arabidopsis. International Journal of Molecular Sciences. 2019; 20(4):837.
https://doi.org/10.3390/ijms20040837
Chicago/Turabian Style
Wang, Qiaojian, Jun Ni, Faheem Shah, Wenbo Liu, Dongdong Wang, Yuanyuan Yao, Hao Hu, Shengwei Huang, Jinyan Hou, Songling Fu,
and et al. 2019. "Overexpression of the Stress-Inducible SsMAX2 Promotes Drought and Salt Resistance via the Regulation of Redox Homeostasis in Arabidopsis" International Journal of Molecular Sciences 20, no. 4: 837.
https://doi.org/10.3390/ijms20040837
APA Style
Wang, Q., Ni, J., Shah, F., Liu, W., Wang, D., Yao, Y., Hu, H., Huang, S., Hou, J., Fu, S., & Wu, L.
(2019). Overexpression of the Stress-Inducible SsMAX2 Promotes Drought and Salt Resistance via the Regulation of Redox Homeostasis in Arabidopsis. International Journal of Molecular Sciences, 20(4), 837.
https://doi.org/10.3390/ijms20040837