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International Journal of Molecular Sciences|March 6, 2021
A Novel WRKY Transcription Factor HmoWRKY40 Associated with Betalain Biosynthesis in Pitaya (Hylocereus monacanthus) through Regulating HmoCYP76AD1Lulu Zhang, Canbin Chen, Fangfang Xie, et al.International Journal of Molecular Sciences|July 24, 2021
Genome-Wide Identification of Aquaporin Gene Family in Pitaya Reveals an HuNIP6;1 Involved in Flowering ProcessXiaoying Ye, Yongshun Gao, Canbin Chen, et al.Plant Physiology and Biochemistry : PPB|May 16, 2020
Transcriptomics-based identification and characterization of glucosyltransferases involved in betalain biosynthesis in Hylocereus megalanthusFangfang Xie, Qingzhu Hua, Canbin Chen, et al.BMC Plant Biology|September 23, 2020
Integrated sRNAome and RNA-Seq analysis reveals miRNA effects on betalain biosynthesis in pitayaCanbin Chen, Fangfang Xie, Qingzhu Hua, et al.Plant Science : an International Journal of Experimental Plant Biology|January 16, 2023
Identification of HubHLH family and key role of HubHLH159 in betalain biosynthesis by activating the transcription of HuADH1, HuCYP76AD1-1, and HuDODA1 in pitayaJiayi Chen, Fangfang Xie, Kamran Shah, et al.Plant & Cell Physiology|November 9, 2018
Three LcABFs are Involved in the Regulation of Chlorophyll Degradation and Anthocyanin Biosynthesis During Fruit Ripening in Litchi chinensisBing Hu, Biao Lai, Dan Wang, et al.International Journal of Molecular Sciences|October 1, 2016
Proteomic Analysis of Hylocereus polyrhizus Reveals Metabolic Pathway ChangesQingzhu Hua, Qianjun Zhou, Susheng Gan, et al.Journal of Genetics and Genomics = Yi Chuan Xue Bao|June 4, 2026
LcMADS28 and LcMADS27 coordinately regulate early seed development in Litchi chinensis through direct activation of LcINVERTASE INHIBITOR1Lijun Wu, Jun Fang, Jiahui Chen, et al.BMC Plant Biology|January 12, 2023
Betalain biosynthesis in red pulp pitaya is regulated via HuMYB132: a R-R type MYB transcription factorFangfang Xie, Canbin Chen, Jiayi Chen, et al.Plant Physiology and Biochemistry : PPB|May 2, 2025
Integrated analyses of the transcriptome and metabolome revealed the coloring mechanism of red-pericarp wampee (Clausena lansium)Shujun Peng, Xiaoyue Zhu, Jiaxuan Chen, et al.Pageof 5