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Transcriptome and Phytochemical Analysis Reveals the Alteration of Plant Hormones Characteristic Metabolites and Related Gene Expression in Tea (Camellia sinensis L.) Leaves During Withering

机译:转录组和植物化学分析揭示了茶(Camellia sinensis L.)枯萎过程中植物激素特征代谢产物和相关基因表达的变化

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摘要

Plant hormones play an important role in the chemical metabolism of postharvest plants. However, alterations in plant hormones of postharvest tea and their potential modulation of quality-related metabolites are unknown. In this study, the dynamic alterations of abscisic acid (ABA), salicylic acid (SA), jasmonic acid (JA), and critical metabolites, such as catechins, theanine, and caffeine, in tea leaves were analyzed during withering from 0 to 24 h. It was found that the ABA content increased from 0 to 9 h but decreased thereafter, JA continuously increased, and the SA content showed no significant change. With the exception of gallocatechin (GC) and epicatechin (EC), the amounts of other critical components were significantly reduced at 24 h. Transcriptome analysis showed that compared with 0 h, 2256, 3654, and 1275 differentially expressed genes (DEGs) were identified at 9, 15, and 24 h, respectively. For all comparisons, DEGs corresponding to the pathways of “phenylalanine, tyrosine, and tryptophan biosynthesis” and “phenylalanine metabolism”, involved in the biosynthesis of catechins, were significantly enriched. Weighted correlation network analysis (WGCNA) of co-expression genes indicated that many of the modules were only correlated with a specific trait during the withering process; the dark olive-green module, however, was correlated with two traits, ABA and theanine. Our study indicates that withering induced dramatic alterations in gene transcription as well as levels of hormones (ABA, JA, and SA) and important components, and that ABA regulated theanine metabolism during this process.
机译:植物激素在采后植物的化学代谢中起重要作用。但是,尚不清楚采后茶中植物激素的变化及其对与质量相关的代谢物的潜在调节作用。在这项研究中,分析了0至24凋萎期间茶叶中脱落酸(ABA),水杨酸(SA),茉莉酸(JA)和关键代谢物(如儿茶素,茶氨酸和咖啡因)的动态变化。 H。发现ABA含量从0增加到9 h,但随后降低,JA持续增加,SA含量无明显变化。除了没食子儿茶素(GC)和表儿茶素(EC)以外,其他关键成分的量在24 h时显着减少。转录组分析表明,与0小时相比,分别在9、15和24小时鉴定出差异表达基因(DEG),分别为2256、3654和1275。对于所有比较,与儿茶素生物合成有关的“苯丙氨酸,酪氨酸和色氨酸生物合成”和“苯丙氨酸代谢”的途径所对应的DEG显着丰富。共表达基因的加权相关网络分析(WGCNA)表明,许多模块在枯萎过程中仅与特定性状相关;但是,深橄榄绿色模块与ABA和茶氨酸这两个性状相关。我们的研究表明,枯萎诱导基因转录以及激素(ABA,JA和SA)和重要成分水平的急剧变化,并且ABA在此过程中调节茶氨酸的代谢。

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