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The Plant Journal : for Cell and Molecular Biology|May 5, 2022
Comparative transcriptomic analysis unveils the deep phylogeny and secondary metabolite evolution of 116 Camellia plantsQiong Wu, Wei Tong, Huijuan Zhao, et al.The New Phytologist|February 15, 2022
CsMYB1 integrates the regulation of trichome development and catechins biosynthesis in tea plant domesticationPenghui Li, Jiamin Fu, Yujie Xu, et al.Plant Biotechnology Journal|September 3, 2025
JA Regulates Caffeine Biosynthesis in Tea Leaf for Resistance Against Fungal Infection and Antagonises With GA to Balance the Defence-Growth Trade-Off via CsDELLA-JAZ-MYC2-MYB184-TCS1 ModuleZhili Ye, Ziqing Zheng, Jinsong Wang, et al.Frontiers in Genetics|January 11, 2021
Comparative Expression Analysis of Stress-Inducible Candidate Genes in Response to Cold and Drought in Tea Plant [<i>Camellia sinensis</i> (L.) Kuntze]Lidiia S Samarina, Alexandr V Bobrovskikh, Alexey V Doroshkov, et al.Nature Communications|December 6, 2025
Pangenome analyses of tea plants reveal structural variations driving gene expression alterations and agronomic trait diversificationLingling Tao, Junyan Zhu, Jianbing Hu, et al.The Plant Cell|October 4, 2024
Evolution and functional divergence of glycosyltransferase genes shaped the quality and cold tolerance of tea plantsJingming Wang, Yutong Hu, Danyang Guo, et al.Molecular Plant|May 1, 2020
The Reference Genome of Tea Plant and Resequencing of 81 Diverse Accessions Provide Insights into Its Genome Evolution and AdaptationEnhua Xia, Wei Tong, Yan Hou, et al.Proceedings of the National Academy of Sciences of the United States of America|April 22, 2018
Draft genome sequence of <i>Camellia sinensis</i> var. <i>sinensis</i> provides insights into the evolution of the tea genome and tea qualityChaoling Wei, Hua Yang, Songbo Wang, et al.Scientific Data|July 17, 2019
The tea plant reference genome and improved gene annotation using long-read and paired-end sequencing dataEnhua Xia, Fangdong Li, Wei Tong, et al.Pageof 4