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Differentially expressed protein and gene analysis revealed the effects of temperature on changes in ascorbic acid metabolism in harvested tea leaves

机译:差异表达的蛋白质和基因分析揭示了温度对收获茶叶中抗坏血酸代谢变化的影响

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摘要

Tea is an important non-alcoholic beverage worldwide. Tea quality is determined by numerous secondary metabolites in harvested tea leaves, including tea polyphenols, theanine, caffeine, and ascorbic acid (AsA). AsA metabolism in harvested tea leaves is affected by storage and transportation temperature. However, the molecular mechanisms underlying AsA metabolism in harvested tea leaves exposed to different storage and transportation temperature conditions remain unclear. Here we performed RP-HPLC to detect dynamic changes in AsA content in tea leaves subjected to high- (38 °C), low- (4 °C), or room-temperature (25 °C) treatments. The AsA distribution and levels in the treated tea leaves were analyzed using cytological–anatomical characterization methods. The differentially expressed CsAPX1 and CsDHAR2 proteins, which are involved in the AsA recycling pathway, were identified from the corresponding proteomic data using iTRAQ. We also analyzed the expression profiles of 18 genes involved in AsA metabolism, including CsAPX1 and CsDHAR2. AsA was mainly distributed in tea leaf mesophyll cells. High- and low-temperature treatments upregulated the CsAPX1 and CsDHAR2 proteins and induced CsAPX and CsDHAR2 gene expression. These results indicated that the CsAPX1 and CsDHAR2 proteins might have critical roles in AsA recycling in tea leaves. Our results provide a foundation for the in-depth investigation of AsA metabolism in tea leaves during storage and transportation, and they will promote better tea flavor in tea production.
机译:茶是全世界重要的非酒精饮料。茶叶质量取决于收获茶叶中的多种次生代谢产物,包括茶多酚,茶氨酸,咖啡因和抗坏血酸(AsA)。收获茶叶中的AsA代谢受储存和运输温度的影响。然而,暴露于不同储存和运输温度条件下的茶叶中AsA代谢的潜在分子机制仍不清楚。在这里,我们进行了RP-HPLC,以检测经过高温(38 C),低温(4 C)或室温(25 C)处理的茶叶中AsA含量的动态变化。使用细胞学-解剖学表征方法分析处理过的茶叶中的AsA分布和水平。使用iTRAQ从相应的蛋白质组数据中鉴定出与AsA回收途径有关的差异表达的CsAPX1和CsDHAR2蛋白。我们还分析了涉及AsA代谢的18个基因的表达谱,包括CsAPX1和CsDHAR2。 AsA主要分布在茶叶的叶肉细胞中。高温和低温处理上调了CsAPX1和CsDHAR2蛋白,并诱导了CsAPX和CsDHAR2基因表达。这些结果表明,CsAPX1和CsDHAR2蛋白可能在茶叶中AsA循环中起关键作用。我们的结果为深入研究茶叶在贮藏和运输过程中AsA代谢提供了基础,它们将促进茶叶生产中更好的茶叶风味。

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