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Metabolic Flux Enhancement and Transcriptomic Analysis Displayed the Changes of Catechins Following Long-Term Pruning in Tea Trees (Camellia sinensis)

机译:代谢通量增强和转录组分析显示了茶树长期修剪后儿茶素的变化(Camellia Sinensis)

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摘要

The tea tree is a perennial woody plant, and pruning is one of the most crucial cultivation measurements for tea plantation management. To date, the relationship between long-term pruning and metabolic flux enhancement in tea trees has not been studied. In this research, 11-year-old pruned tea trees from four different cultivars were randomly selected for transcriptome analysis and characteristic secondary metabolite analysis together with controls. The findings revealed that epigallocatechin gallate (EGCG) accumulation in pruned tea trees was significantly higher than that in unpruned tea trees. SCPLIA expression (encoding a class of serine carboxypeptidase), which has been reported to have a catalytic ability during EGCG biosynthesis, together with LAR, encoding leucoanthocyanidin reductase, was upregulated in the pruned tea trees. Moreover, metabolic flux enhancement and transcriptome analysis revealed low EGCG accumulation in the leaves of unpruned tea trees. Because of the bitter and astringent taste of EGCG, these results provide a certain understanding to the lower bitterness and astringency in teas from "ancient tea trees", growing in the wild with no trimming, than teas produced from pruned plantation trees.
机译:茶树是一个多年生的木质植物,并且修剪是茶园管理最重要的培养测量之一。迄今为止,尚未研究茶树长期修剪和代谢通量增强的关系。在本研究中,随机选择来自四种不同品种的11岁的修剪茶树,用于转录组分析和特征次级代谢物分析。结果表明,被灌注的茶树中的EpigallocaTechin gallate(egcg)积累明显高于未浸泡的茶树。术语表达(编码一类丝氨酸羧肽酶),其据报道在EGCG生物合成期间具有催化能力,以及LAR编码白藻藻硅蛋白还原酶,在修剪的茶树中上调。此外,代谢通量增强和转录组分析显示出未浸泡茶树叶片的低EGCG积累。由于EGCG的苦味和涩味,这些结果对来自“古代茶树”的茶叶较低的苦味和涩味,在野外生长而不是由修剪种植植物树生产的茶。

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