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Journal of Experimental Botany|April 16, 2015
CaWRKY6 transcriptionally activates CaWRKY40, regulates Ralstonia solanacearum resistance, and confers high-temperature and high-humidity tolerance in pepperHanyang Cai, Sheng Yang, Yan Yan, et al.Functional Plant Biology : FPB|June 3, 2020
Overexpression of a pepper CaERF5 gene in tobacco plants enhances resistance to Ralstonia solanacearum infectionYan Lai, Fengfeng Dang, Jing Lin, et al.Molecular Plant Pathology|July 21, 2016
A novel leucine-rich repeat protein, CaLRR51, acts as a positive regulator in the response of pepper to Ralstonia solanacearum infectionWei Cheng, Zhuoli Xiao, Hanyang Cai, et al.Plant Physiology and Biochemistry : PPB|December 4, 2012
Overexpression of a Chinese cabbage BrERF11 transcription factor enhances disease resistance to Ralstonia solanacearum in tobaccoYan Lai, Fengfeng Dang, Jing Lin, et al.Frontiers in Plant Science|October 7, 2015
Genome-wide identification and transcriptional expression analysis of mitogen-activated protein kinase and mitogen-activated protein kinase kinase genes in Capsicum annuumZhiqin Liu, Lanping Shi, Yanyan Liu, et al.Nature Communications|July 25, 2023
Differential CaKAN3-CaHSF8 associations underlie distinct immune and heat responses under high temperature and high humidity conditionsSheng Yang, Weiwei Cai, Ruijie Wu, et al.Scientific Reports|March 2, 2016
CaCDPK15 positively regulates pepper responses to Ralstonia solanacearum inoculation and forms a positive-feedback loop with CaWRKY40 to amplify defense signalingLei Shen, Sheng Yang, Tong Yang, et al.Journal of Experimental Botany|March 4, 2016
Pepper CabZIP63 acts as a positive regulator during Ralstonia solanacearum or high temperature-high humidity challenge in a positive feedback loop with CaWRKY40Lei Shen, Zhiqin Liu, Sheng Yang, et al.Pageof 2