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Transcriptomic analysis of the biosynthesis recycling and distribution of ascorbic acid during leaf development in tea plant (Camellia sinensis (L.) O. Kuntze)

机译:茶树叶片发育过程中抗坏血酸的生物合成循环利用和分布的转录组学分析(Camellia sinensis(L.)O. Kuntze)

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摘要

Ascorbic acid (AsA), known as vitamin C, is an essential nutrient for humans and mainly absorbed from food. Tea plant (Camellia sinensis (L.) O. Kuntze) leaves can be a dietary source of AsA for humans. However, experimental evidence on the biosynthesis, recycling pathway and distribution of AsA during leaf development in tea plants is unclear. To gain insight into the mechanism and distribution of AsA in the tea plant leaf, we identified 18 related genes involved in AsA biosynthesis and recycling pathway based on the transcriptome database of tea plants. Tea plant leaves were used as samples at different developmental stages. AsA contens in tea plant leaves at three developmental stages were measured by reversed-phase high-performance liquid chromatography (RP-HPLC). The correlations between expression levels of these genes and AsA contents during the development of tea plant leaves were discussed. Results indicated that the l-galactose pathway might be the primary pathway of AsA biosynthesis in tea plant leaves. CsMDHAR and CsGGP might play a regulatory role in AsA accumulation in the leaves of three cultivars of tea plants. These findings may provide a further glimpse to improve the AsA accumulation in tea plants and the commercial quality of tea.
机译:抗坏血酸(AsA),称为维生素C,是人类必需的营养素,主要从食物中吸收。茶树(茶树(Camellia sinensis(L.)O. Kuntze))的叶子可以是人类AsA的饮食来源。然而,尚不清楚茶树叶片发育过程中AsA的生物合成,再循环途径和分布的实验证据。为了深入了解茶树叶片中AsA的机制和分布,我们基于茶树的转录组数据库中鉴定了18个与AsA生物合成和循环途径相关的基因。茶树叶片用作不同发育阶段的样品。通过反相高效液相色谱(RP-HPLC)测定茶树叶片三个发育阶段的AsA含量。讨论了这些基因的表达水平与茶叶片发育过程中AsA含量之间的相关性。结果表明,l-半乳糖途径可能是茶树叶片中AsA生物合成的主要途径。 CsMDHAR和CsGGP可能在茶树三个品种叶片中的AsA积累中起调节作用。这些发现可能为进一步改善茶叶中AsA的积累和茶叶的商业质量提供一瞥。

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