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The Plant Journal : for Cell and Molecular Biology|June 5, 2024
A serine carboxypeptidase-like acyltransferase catalyzes consecutive four-step reactions of hydrolyzable tannin biosynthesis in Camellia oleiferaZhihui Wang, Xiangxiang Chen, Yue Zhao, et al.The New Phytologist|March 12, 2026
Identification of Cslnc924/CsmiR390a/CsTAS3/CsARF2s/CsOPR2 axis involved in regulating the resistance of tea plants to anthracnoseTing Jiang, Jinming Song, Xiao Li, et al.Planta|June 10, 2019
Three Camellia sinensis glutathione S-transferases are involved in the storage of anthocyanins, flavonols, and proanthocyanidinsYajun Liu, Han Jiang, Yue Zhao, et al.Journal of Agricultural and Food Chemistry|October 18, 2022
Flavonol-Aluminum Complex Formation: Enhancing Aluminum Accumulation in Tea PlantsZhouping Fu, Xiaolan Jiang, Dexu Kong, et al.Horticulture Research|March 6, 2025
Key genes in a "Galloylation-Degalloylation cycle" controlling the synthesis of hydrolyzable tannins in strawberry plantsLingjie Zhang, Rui Li, Maohao Wang, et al.Planta|September 10, 2017
Evolutionary and functional characterization of leucoanthocyanidin reductases from Camellia sinensisPeiqiang Wang, Lingjie Zhang, Xiaolan Jiang, et al.Journal of Agricultural and Food Chemistry|April 3, 2018
Insight into Catechins Metabolic Pathways of Camellia sinensis Based on Genome and Transcriptome AnalysisWenzhao Wang, Yihui Zhou, Yingling Wu, et al.Journal of Agricultural and Food Chemistry|August 19, 2021
CsHCT-Mediated Lignin Synthesis Pathway Involved in the Response of Tea Plants to Biotic and Abiotic StressesYifan Chen, Ning Yi, Sheng Bo Yao, et al.Abiotech|September 16, 2024
Removal of the C4-domain preserves the drought tolerance enhanced by CsMYB4a and eliminates the negative impact of this transcription factor on plant growthMingzhuo Li, Guoliang Ma, Xiu Li, et al.Abiotech|September 16, 2024
Erratum: Publisher Correction: Removal of the C4-domain preserves the drought tolerance enhanced by CsMYB4a and eliminates the negative impact of this transcription factor on plant growthMingzhuo Li, Guoliang Ma, Xiu Li, et al.Pageof 7