نتایج جستجو برای: wrky

تعداد نتایج: 847  

2016
Li Yang Xin Zhao Fan Yang Di Fan Yuanzhong Jiang Keming Luo

WRKY proteins are one of the largest transcription factor families in higher plants and play diverse roles in various biological processes. Previous studies have shown that some WRKY members act as negative regulators of secondary cell wall formation in pith parenchyma cells. However, the regulatory mechanism of pith secondary wall formation in tree species remains largely unknown. In this stud...

2018
Fei Liu Xiaoxia Li Meirong Wang Jing Wen Bin Yi Jinxiong Shen Chaozhi Ma Tingdong Fu Jinxing Tu

WRKY transcription factors are known to participate in the defence responses of higher plants. However, little is known about the roles of such proteins, especially regarding their functions in the resistance of oilseed rape (Brassica napus) to Sclerotinia sclerotiorum, a necrotrophic fungal pathogen that causes stem rot. In this study, we identified BnWRKY33 as a S. sclerotiorum-responsive gen...

Journal: :The Plant cell 2007
Masaki Shimono Shoji Sugano Akira Nakayama Chang-Jie Jiang Kazuko Ono Seiichi Toki Hiroshi Takatsuji

Benzothiadiazole (BTH) is a so-called plant activator and protects plants from diseases by activating the salicylic acid (SA) signaling pathway. By microarray screening, we identified BTH- and SA-inducible WRKY transcription factor (TF) genes that were upregulated within 3 h after BTH treatment. Overexpression of one of them, WRKY45, in rice (Oryza sativa) markedly enhanced resistance to rice b...

2011
S. Proietti L. Bertini S. Van der Ent A. Leon-Reyes C. M. J. Pieterse M. Tucci C. Caporale C. Caruso

WRKY proteins are transcription factors involved in many plant processes including plant responses to pathogens. Here, the cross activity of TaWRKY78 from the monocot wheat and AtWRKY20 from the dicot Arabidopsis on the cognate promoters of the orthologous PR4-type genes wPR4e and AtHEL of wheat and Arabidopsis, respectively, was investigated. In vitro analysis showed the ability of TaWRKY78 to...

Journal: :Plant physiology 2002
Chunhong Chen Zhixiang Chen

AtWRKY18 is a pathogen- and salicylic acid-induced Arabidopsis transcription factor containing the plant-specific WRKY zinc finger DNA-binding motif. In the present study, we have transformed Arabidopsis plants with AtWRKY18 under control of the cauliflower mosaic virus 35S promoter. Surprisingly, transgenic plants expressing high levels of AtWRKY18 were stunted in growth. When expressed at mod...

Journal: :The Plant cell 2013
Fu-Chiun Hsu Mei-Yi Chou Shu-Jen Chou Ya-Ru Li Hsiao-Ping Peng Ming-Che Shih

Transcriptional control plays an important role in regulating submergence responses in plants. Although numerous genes are highly induced during hypoxia, their individual roles in hypoxic responses are still poorly understood. Here, we found that expression of genes that encode members of the WRKY transcription factor family was rapidly and strongly induced upon submergence in Arabidopsis thali...

2013
Zhen Qin Hongjun Lv Xinlei Zhu Chen Meng Taiyong Quan Mengcheng Wang Guangmin Xia

Leaf type is an important trait that closely associates with crop yield. WRKY transcription factors exert diverse regulatory effects in plants, but their roles in the determination of leaf type have not been reported so far. In this work, we isolated a WRKY transcription factor gene TaWRKY71-1 from a wheat introgression line SR3, which has larger leaves, superior growth capacity and higher yiel...

2017
Pan Ning Congcong Liu Jingquan Kang Jinyin Lv

BACKGROUND WRKY proteins, which comprise one of the largest transcription factor (TF) families in the plant kingdom, play crucial roles in plant development and stress responses. Despite several studies on WRKYs in wheat (Triticum aestivum L.), functional annotation information about wheat WRKYs is limited. RESULTS Here, 171 TaWRKY TFs were identified from the whole wheat genome and compared ...

2017
Junjuan Wang Fei Tao Wei Tian Zhongfeng Guo Xianming Chen Xiangming Xu Hongsheng Shang Xiaoping Hu

WRKY transcription factors (TFs) play crucial roles in plant resistance responses to pathogens. Wheat stripe rust, caused by the fungal pathogen Puccinia striiformis f. sp. tritici (Pst), is a destructive disease of wheat (Triticum aestivum) worldwide. In this study, the two WRKY genes TaWRKY49 and TaWRKY62 were originally identified in association with high-temperature seedling-plant resistanc...

Journal: :The EMBO journal 2005
Erik Andreasson Thomas Jenkins Peter Brodersen Stephan Thorgrimsen Nikolaj H T Petersen Shijiang Zhu Jin-Long Qiu Pernille Micheelsen Anne Rocher Morten Petersen Mari-Anne Newman Henrik Bjørn Nielsen Heribert Hirt Imre Somssich Ole Mattsson John Mundy

Arabidopsis MAP kinase 4 (MPK4) functions as a regulator of pathogen defense responses, because it is required for both repression of salicylic acid (SA)-dependent resistance and for activation of jasmonate (JA)-dependent defense gene expression. To understand MPK4 signaling mechanisms, we used yeast two-hybrid screening to identify the MPK4 substrate MKS1. Analyses of transgenic plants and gen...

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