4 Papers
Yuna Wang is an academic researcher from Fujian Agriculture and Forestry University. The author has contributed to research in topics: WRKY protein domain & Hypersensitive response. The author has an hindex of 3, co-authored 4 publications.
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Papers
CaWRKY40, a WRKY protein of pepper, plays an important role in the regulation of tolerance to heat stress and resistance to Ralstonia solanacearum infection.
Fengfeng Dang,Yuna Wang,Lu Yu,Thomas Eulgem,Yan Lai,Zhiqin Liu,Xu Wang,Ailian Qiu,Ting-Xiu Zhang,Jing Lin,Yansheng Chen,Deyi Guan,Hanyang Cai,Shaoliang Mou,Shuilin He +14 more
TL;DR: The results suggest that CaWRKY40 orthologs are regulated by SA, JA and ET signalling and coordinate responses to R. solanacearum attacks and heat stress in pepper and tobacco.
294
Overexpression of CaWRKY27, a subgroup IIe WRKY transcription factor of Capsicum annuum, positively regulates tobacco resistance to Ralstonia solanacearum infection
Fengfeng Dang,Yuna Wang,Jianju She,Yufen Lei,Zhiqin Liu,Thomas Eulgem,Yan Lai,Jing Lin,Lu Yu,Dan Lei,Deyi Guan,Xia Li,Qian Yuan,Shuilin He +13 more
TL;DR: It is suggested that CaWRKY27 acts as a positive regulator in tobacco resistance responses to R. solanacearum infection through modulation of SA-, JA- and ET-mediated signaling pathways.
152
CaWRKY58, encoding a group I WRKY transcription factor of Capsicum annuum, negatively regulates resistance to Ralstonia solanacearum infection
Yuna Wang,Fengfeng Dang,Zhiqin Liu,Xu Wang,Thomas Eulgem,Yan Lai,Lu Yu,Jianju She,Youliang Shi,Jinhui Lin,Chengcong Chen,Deyi Guan,Ailian Qiu,Shuilin He +13 more
TL;DR: The functional characterization of a new group I WRKY protein from pepper suggests that CaWRKY58 acts as a transcriptional activator of negative regulators in the resistance of pepper to R. solanacearum infection.
Bioinformatics analysis of a new WRKY gene isolated from pepper (capsicum annuum)
Yuna Wang,Li Yi,Huimin Geng,Yan Lai,Shuilin He +4 more
- 24 Oct 2011
TL;DR: The result shows this cDNA sequence was the full-length of a novel gene and there was a conserved WRKY domain predicted by NCBI, and the homologous analysis shows the putative WRKY sequence was highly identity with other plants and predicted to locate in nuclei.