An integrative analysis of metabolomics, DNA methylation and RNA-Seq data reveals key genes involved in albino tea 'Haishun 2'
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Reference40 articles.
1. Wei K, Wang L, Zhang Y, Ruan L, Li H, et al. 2019. A coupled role for CsMYB75 and CsGSTF1 in anthocyanin hyperaccumulation in purple tea. The Plant Journal 97:825−40
2. Chen X, Yu H, Zhu J, Chen Y, Fu Z, et al. 2021. Widely targeted metabolomic analyses of albino tea germplasm 'Huabai 1' and 'Baiye 1'. All Life 14:530−40
3. Yu Y, Kou X, Gao R, Chen X, Zhao Z, et al. 2021. Glutamine synthetases play a vital role in high accumulation of theanine in tender shoots of albino tea germplasm "Huabai 1". Journal of agricultural and food chemistry 69:13904−15
4. Chen X, Li J, Yu Y, Kou X, Periakaruppan R, et al. 2022. STAY-GREEN and light-harvesting complex II chlorophyll a/b binding protein are involved in albinism of a novel albino tea germplasm 'Huabai 1'. Scientia Horticulturae 293:110653
5. Feng L, Gao M, Hou R, Hu X, Zhang L, et al. 2014. Determination of quality constituents in the young leaves of albino tea cultivars. Food Chemistry 155:98−104
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