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iTRAQ-Based Quantitative Proteomics Analysis Reveals the Mechanism Underlying the Weakening of Carbon Metabolism in Chlorotic Tea Leaves

机译:基于iTRAQ的定量蛋白质组学分析揭示了绿化茶叶中碳代谢弱化的潜在机制

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摘要

To uncover mechanism of highly weakened carbon metabolism in chlorotic tea (Camellia sinensis) plants, iTRAQ (isobaric tags for relative and absolute quantification)-based proteomic analyses were employed to study the differences in protein expression profiles in chlorophyll-deficient and normal green leaves in the tea plant cultivar “Huangjinya”. A total of 2110 proteins were identified in “Huangjinya”, and 173 proteins showed differential accumulations between the chlorotic and normal green leaves. Of these, 19 proteins were correlated with RNA expression levels, based on integrated analyses of the transcriptome and proteome. Moreover, the results of our analysis of differentially expressed proteins suggested that primary carbon metabolism (i.e., carbohydrate synthesis and transport) was inhibited in chlorotic tea leaves. The differentially expressed genes and proteins combined with photosynthetic phenotypic data indicated that 4-coumarate-CoA ligase (4CL) showed a major effect on repressing flavonoid metabolism, and abnormal developmental chloroplast inhibited the accumulation of chlorophyll and flavonoids because few carbon skeletons were provided as a result of a weakened primary carbon metabolism. Additionally, a positive feedback mechanism was verified at the protein level (Mg chelatase and chlorophyll b reductase) in the chlorophyll biosynthetic pathway, which might effectively promote the accumulation of chlorophyll b in response to the demand for this pigment in the cells of chlorotic tea leaves in weakened carbon metabolism.
机译:为了揭示绿茶(Camellia sinensis)植物中碳代谢高度减弱的机理,采用基于iTRAQ(等压标记进行相对和绝对定量)的蛋白质组分析,研究了叶绿素缺乏和正常绿叶中蛋白质表达谱的差异。茶树品种“黄锦芽”。在“黄锦鸭”中共鉴定出2110种蛋白质,其中173种蛋白质在绿叶和正常绿叶之间存在差异积累。其中,根据转录组和蛋白质组的综合分析,有19种蛋白质与RNA表达水平相关。此外,我们对差异表达蛋白质的分析结果表明,在含氯茶中,主要的碳代谢(即碳水化合物的合成和运输)受到抑制。差异表达的基因和蛋白质与光合作用的表型数据相结合,表明4-香豆酸-CoA连接酶(4CL)对抑制类黄酮代谢具有主要作用,并且异常发育的叶绿体抑制了叶绿素和类黄酮的积累,因为提供的碳骨架很少。初级碳代谢减弱的结果。此外,在叶绿素生物合成途径的蛋白质水平(Mg螯合酶和叶绿素b还原酶)上验证了一种正反馈机制,这可能有效地促进了叶绿素茶叶细胞中对这种色素的需求,从而促进了叶绿素b的积累。碳代谢减弱。

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