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Plant Physiology and Biochemistry : PPB|January 28, 2019
Advance of the negative regulation of anthocyanin biosynthesis by MYB transcription factorsLinhuan Chen, Bing Hu, Yonghua Qin, et al.Plant Cell Reports|January 9, 2016
LcGST4 is an anthocyanin-related glutathione S-transferase gene in Litchi chinensis SonnBing Hu, Jietang Zhao, Biao Lai, et al.Frontiers in Plant Science|January 26, 2017
Identification of MicroRNAs and Their Target Genes Related to the Accumulation of Anthocyanins in Litchi chinensis by High-Throughput Sequencing and Degradome AnalysisRui Liu, Biao Lai, Bing Hu, et al.Scientific Reports|June 23, 2017
Transcriptome changes between compatible and incompatible graft combination of Litchi chinensis by digital gene expression profileZhe Chen, Jietang Zhao, Fuchu Hu, et al.Molecular Ecology Resources|August 27, 2014
Testing DNA barcodes in closely related species of Curcuma (Zingiberaceae) from Myanmar and ChinaJuan Chen, Jietang Zhao, David L Erickson, et al.Plant Cell Reports|July 21, 2026
Physiological and transcriptomic analyses reveal HuBBX1 activating the transcription of COR genes to enhance pitaya cold toleranceXinglong Hu, Irfan Ali Sabir, Zhike Zhang, et al.Plos One|December 13, 2018
Differential gene expression between the vigorous and dwarf litchi cultivars based on RNA-Seq transcriptome analysisFuchu Hu, Zhe Chen, Jietang Zhao, et al.International Journal of Biological Macromolecules|March 24, 2025
LcbHLH107 actively suppresses the expression of LcDFR to repress anthocyanin biosynthesis in Litchi chinensis SonnShiqi Jing, Yingsheng Xia, Bo Zhang, et al.Horticulture Research|August 8, 2018
Aberrant seed development in Litchi chinensis is associated with the impaired expression of cell wall invertase genesJieqiong Zhang, Zichen Wu, Fuchu Hu, et al.Plant Methods|October 10, 2021
Agrobacterium rhizogenes-mediated hairy root transformation as an efficient system for gene function analysis in Litchi chinensisYaqi Qin, Dan Wang, Jiaxin Fu, et al.Pageof 5