Soybean C2H2-Type Zinc Finger Protein GmZFP3 with Conserved QALGGH Motif Negatively Regulates Drought Responses in Transgenic Arabidopsis
Dayong Zhang(Beijing Normal University), Hongxiang Ma(Jiangsu Academy of Agricultural Sciences), Peipei Wei(West Anhui University), Zhaolong Xu(Jiangsu Academy of Agricultural Sciences), Jin-Feng Tong(Chinese Academy of Sciences), Hongbo Shao(Tianjin University of Technology and Education), Jiayin Yang(Fudan University), Yihong Huang(Jiangsu Academy of Agricultural Sciences), Xiaolan He(Jiangsu Academy of Agricultural Sciences), Ling Xu(Zhejiang Sci-Tech University), Qun Wan(Jiangsu Academy of Agricultural Sciences)
Cited by 57
Related Papers
Water-deficit stress-induced anatomical changes in higher plants
|Comptes Rendus Biologies|2008|994
A critical review on the bio-removal of hazardous heavy metals from contaminated soils: Issues, progress, eco-environmental concerns and opportunities
|Journal of Hazardous Materials|2009|647
Recent Advances in Utilizing Transcription Factors to Improve Plant Abiotic Stress Tolerance by Transgenic Technology
|Frontiers in Plant Science|2016|543
NAC transcription factors in plant multiple abiotic stress responses: progress and prospects
|Frontiers in Plant Science|2015|492
Antioxidant defense responses: physiological plasticity in higher plants under abiotic constraints
|Acta Physiologiae Plantarum|2009|477