山茶
次生代谢
新陈代谢
植物代谢
生物
植物
茶氨酸
化学
绿茶
生物化学
食品科学
基因
生物合成
核糖核酸
作者
Shijia Lin,Yiwen Zhang,Shupei Zhang,Yijie Wei,Mengxue Han,Yamei Deng,Jiayi Guo,Biying Zhu,Ting Yang,Enhua Xia,Xiaochun Wan,William J. Lucas,Zhaoliang Zhang
标识
DOI:10.7554/elife.95891.1
摘要
Root-synthesized secondary metabolites are critical quality-conferring compounds of foods, plant-derived medicines, and beverages. However, information at a single-cell level on root-specific secondary metabolism remains largely unexplored. L-theanine, an important quality component of tea, is primarily synthesized in roots, from which it is then transported to new tea shoots. In this study, we present a single-cell RNA sequencing (scRNA-seq)-derived map for the tea root, which enabled cell-type-specific analysis of glutamate and ethylamine (two precursors of theanine biosynthesis) metabolism, and theanine biosynthesis, storage, and transport. Our findings support a model in which the theanine biosynthesis pathway occurs via multicellular compartmentation and does not require high co-expression levels of transcription factors and their target genes within the same cell cluster. This study provides novel insights into theanine metabolism and regulation, at the single-cell level, and offers an example for studying root-specific secondary metabolism in other plant systems.
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