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Updated: Jan 28, 2026

Enhanced Yeast One-hybrid Screens To Identify Transcription Factor Binding To Human DNA Sequences
Published on: February 11, 2019
VvWRKY70, un factor de transcripción WRKY recién identificado en uva, confiere tolerancia a la sequía a través de
Lijuan Li1, Jinyuan Li2, Lihong Hao2
1Department of Basic Medicine, Changzhi Medical College, Changzhi 046000, Shanxi Province, China; School of Life Science, Shanxi University, Taiyuan 030006, Shanxi Province, China.
Abstract:
Drought is a key factor limiting grape yield, making it crucial to reveal the underlying response mechanisms of plants to environmental stress. Although WRKY transcription factors play multiple roles in plant development and stress responses, only a few have been functionally characterized in Vitis vinifera L. In this study, VvWRKY70, from V. vinifera, was cloned and identified in transgenic A. thaliana plants and grape seedlings. VvWRKY70 protein is localized to the nucleus and exhibits the W-box binding activity. VvWRKY70 expression was rapidly induced by drought stress, and heterologous VvWRKY70 overexpression in A. thaliana plants enhanced drought tolerance, as evidenced by improved seed germination, seedling development, and survival capability. VvWRKY70 overexpression contributed to the reduction of stomatal aperture and the accumulation of osmotic adjustment substances including proline and soluble sugar. Moreover, VvWRKY70 overexpression increased the activities of superoxide dismutase, catalase, and peroxidase, promoted anthocyanin accumulation, and effectively reduced the content of hydrogen peroxide and malondialdehyde under water stress. Notably, transient overexpression of VvWRKY70 in grapevine led to the upregulation of both drought-responsive marker genes (VvRD22, VvRD29A, VvDREB2A and VvERD14) and defense-related genes (VvCHS, VvF3'H, VvDFR, VvPOD4 and VvP5CS). These findings indicate that VvWRKY70 can directly modulate the transcription of these genes and thereby participate in the corresponding physiological processes. These results demonstrated that VvWRKY70 could be a promising candidate gene in grape for adapting to water scarcity.
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