N. Mishra Et Al. , "Overexpression of the Rice SUMO E3 Ligase Gene OsSIZ1 in Cotton Enhances Drought and Heat Tolerance, and Substantially Improves Fiber Yields in the Field under Reduced Irrigation and Rainfed Conditions," PLANT AND CELL PHYSIOLOGY , vol.58, no.4, pp.735-746, 2017
Mishra, N. Et Al. 2017. Overexpression of the Rice SUMO E3 Ligase Gene OsSIZ1 in Cotton Enhances Drought and Heat Tolerance, and Substantially Improves Fiber Yields in the Field under Reduced Irrigation and Rainfed Conditions. PLANT AND CELL PHYSIOLOGY , vol.58, no.4 , 735-746.
Mishra, N., Sun, L., Zhu, X., Smith, J., Srivastava, A. P., Yang, X., ... Pehlivan, N.(2017). Overexpression of the Rice SUMO E3 Ligase Gene OsSIZ1 in Cotton Enhances Drought and Heat Tolerance, and Substantially Improves Fiber Yields in the Field under Reduced Irrigation and Rainfed Conditions. PLANT AND CELL PHYSIOLOGY , vol.58, no.4, 735-746.
Mishra, Neelam Et Al. "Overexpression of the Rice SUMO E3 Ligase Gene OsSIZ1 in Cotton Enhances Drought and Heat Tolerance, and Substantially Improves Fiber Yields in the Field under Reduced Irrigation and Rainfed Conditions," PLANT AND CELL PHYSIOLOGY , vol.58, no.4, 735-746, 2017
Mishra, Neelam Et Al. "Overexpression of the Rice SUMO E3 Ligase Gene OsSIZ1 in Cotton Enhances Drought and Heat Tolerance, and Substantially Improves Fiber Yields in the Field under Reduced Irrigation and Rainfed Conditions." PLANT AND CELL PHYSIOLOGY , vol.58, no.4, pp.735-746, 2017
Mishra, N. Et Al. (2017) . "Overexpression of the Rice SUMO E3 Ligase Gene OsSIZ1 in Cotton Enhances Drought and Heat Tolerance, and Substantially Improves Fiber Yields in the Field under Reduced Irrigation and Rainfed Conditions." PLANT AND CELL PHYSIOLOGY , vol.58, no.4, pp.735-746.
@article{article, author={Neelam Mishra Et Al. }, title={Overexpression of the Rice SUMO E3 Ligase Gene OsSIZ1 in Cotton Enhances Drought and Heat Tolerance, and Substantially Improves Fiber Yields in the Field under Reduced Irrigation and Rainfed Conditions}, journal={PLANT AND CELL PHYSIOLOGY}, year=2017, pages={735-746} }