Acta Agriculturae Boreali-Sinica ›› 2025, Vol. 40 ›› Issue (5): 12-19. doi: 10.7668/hbnxb.20195906

Special Issue: Wheat Biotechnology

• Crop Genetics & Breeding· Germplasm Resources· Biotechnology • Previous Articles     Next Articles

Cloning,Subcellular Localization and Expression Analysis of TaWRKY70 in Wheat

LU Zhenhua1, LIANG Chen2, ZHANG Li1, TONG Kexin1, CHEN Xiaoqiang1, LI Ming1, DING Bo1, QIU Lina1, XIE Xiaodong1, , WANG Junbin1,3,   

  1. 1 Tianjin Key Laboratory of Intelligent Breeding of Major Crops, Tianjin Agricultural University, Tianjin 300392, China
    2 Tianjin Agricultural Development Service Center, Tianjin 300202, China
    3 College of Basic Sciences, Tianjin Agricultural University, Tianjin 300392, China
  • Received:2024-04-12 Published:2025-11-03

Abstract:

To elucidate the role of WRKY transcription factor family members in the dynamic regulation of wheat growth and development,as well as in responses to abiotic stresses,this study investigated the expression patterns of TaWRKY gene under drought,high salinity,and low-temperature stress conditions.Using the common wheat cultivar Chinese Spring as the experimental material,we obtained the TaWRKY70 gene through molecular cloning.The coding sequence of TaWRKY70 was 885 bp in length,encoding a 294-amino-acid hydrophilic and unstable protein.Bioinformatics analysis revealed that the protein possessed a typical WRKYGQK conserved domain and a C2HC-type zinc finger structure,classifying it as a Group Ⅲ WRKY transcription factor.Cis-regulatory element analysis of the TaWRKY70 promoter region identified regulatory elements involved in responses to methyl jasmonate,abscisic acid,and ethylene.Co-expression gene analysis suggested that TaWRKY70 was associated with multiple stress response processes in wheat,including hormone signaling,defense against microbial pathogens,and responses to cold stress.Phylogenetic analysis indicated that TaWRKY70 shared a close evolutionary relationship with WRKY70 proteins from other Poaceae species,such as barley,maize,sorghum,and foxtail millet.Subcellular localization experiment further confirmed that TaWRKY70 was localized in the nucleus,consistent with the characteristics of a transcription factor.Expression pattern analysis showed that TaWRKY70 was expressed in wheat roots,stems,leaves,young spikes,and grains,with higher expression levels observed in roots and leaves.Under abiotic stress conditions,TaWRKY70 expression was downregulated in response to abscisic acid and low-temperature treatments but upregulated under salicylic acid,NaCl,PEG6000,and high-temperature treatments.In conclusion,the cloning of TaWRKY70 gene and analysis of its expression pattern provide a basis for the next step to analyze the molecular mechanism of TaWRKY70 involved in wheat stress resistance.

Key words: Wheat, TaWRKY70, Gene cloning, Subcellular localization, Expression analysis

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Cite this article

LU Zhenhua, LIANG Chen, ZHANG Li, TONG Kexin, CHEN Xiaoqiang, LI Ming, DING Bo, QIU Lina, XIE Xiaodong, WANG Junbin. Cloning,Subcellular Localization and Expression Analysis of TaWRKY70 in Wheat[J]. Acta Agriculturae Boreali-Sinica, 2025, 40(5): 12-19. doi: 10.7668/hbnxb.20195906.

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