首页> 外文OA文献 >Transcriptome and Phytochemical Analyses Provide New Insights Into Long Non-Coding RNAs Modulating Characteristic Secondary Metabolites of Oolong Tea (Camellia sinensis) in Solar-Withering
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Transcriptome and Phytochemical Analyses Provide New Insights Into Long Non-Coding RNAs Modulating Characteristic Secondary Metabolites of Oolong Tea (Camellia sinensis) in Solar-Withering

机译:转录组和植物化学分析在太阳能跳伞中为乌龙茶(Camellia Sinensis)的长期非编码RNA调节特征次级代谢物提供了新的见解

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摘要

Oolong tea is a popular and semi-fermented beverage. During the processing of tea leaves, withering is the first indispensable process for improving flavor. However, the roles of long non-coding RNAs (lncRNAs) and the characteristic secondary metabolites during the withering of oolong tea leaves remain unknown. In this study, phytochemical analyses indicated that total polyphenols, flavonoids, catechins, epigallocatechin (EGC), catechin gallate (CG), gallocatechin gallate (GCG), epicatechin gallate (ECG), and epigallocatechin gallate (EGCG) were all less abundant in the solar-withered leaves (SW) than in the fresh leaves (FL) and indoor-withered leaves (IW). In contrast, terpenoid, jasmonic acid (JA), and methyl jasmonate (MeJA) contents were higher in the SW than in the FL and IW. By analyzing the transcriptome data, we detected 32,036 lncRNAs. On the basis of the Kyoto Encyclopedia of Genes and Genomes analysis, the flavonoid metabolic pathway, the terpenoid metabolic pathway, and the JA/MeJA biosynthesis and signal transduction pathway were enriched pathways. Additionally, 63 differentially expressed lncRNAs (DE-lncRNAs) and 23 target genes were identified related to the three pathways. A comparison of the expression profiles of the DE-lncRNAs and their target genes between the SW and IW revealed four up-regulated genes (FLS, CCR, CAD, and HCT), seven up-regulated lncRNAs, four down-regulated genes (4CL, CHI, F3H, and F3’H), and three down-regulated lncRNAs related to flavonoid metabolism; nine up-regulated genes (DXS, CMK, HDS, HDR, AACT, MVK, PMK, GGPPS, and TPS), three up-regulated lncRNAs, and six down-regulated lncRNAs related to terpenoid metabolism; as well as six up-regulated genes (LOX, AOS, AOC, OPR, ACX, and MFP2), four up-regulated lncRNAs, and three down-regulated lncRNAs related to JA/MeJA biosynthesis and signal transduction. These results suggested that the expression of DE-lncRNAs and their targets involved in the three pathways may be related to the low abundance of the total polyphenols, flavonoids, and catechins (EGC, CG, GCG, ECG, and EGCG) and the high abundance of terpenoids in the SW. Moreover, solar irradiation, high JA and MeJA contents, and the endogenous target mimic (eTM)-related regulatory mechanism in the SW were also crucial for increasing the terpenoid levels. These findings provide new insights into the greater contribution of solar-withering to the high-quality flavor of oolong tea compared with the effects of indoor-withering.
机译:乌龙茶是一种热门和半发酵的饮料。在加工茶叶期间,跳跃是改善风味的第一个不可或缺的方法。然而,长期非编码RNA(LNCRNA)和特征次级代谢物在枯萎的乌龙茶叶期间的作用仍然未知。在这项研究中,植物化学分析表明,总多酚,黄酮类化合物,儿茶素,EPIGALLOCATECHIN(EGC),儿茶素亲属(CG),GallocateChin Gallate(GCG),EpicaTechin Gallate(ECG),和EpigallocateChin Gallate(EGCG)都不丰富太阳能叶(SW)比在新鲜的叶子(FL)和室内枯萎的叶子(IW)中。相比之下,SW中的萜烯酸,茉莉酸(Ja)和茉莉(Meja)含量较高,而不是在FL和IW中更高。通过分析转录组数据,我们检测到32,036 LNCRNA。基于基因的京都百科全书和基因组分析,类黄酮代谢途径,三萜代谢途径和JA / MEJA生物合成和信号转导途径是富集的途径。另外,鉴定了63种差异表达的LNCRNA(DE-LNCRNA)和23个靶基因与三种途径有关。 DE-LNCRNA表达谱的比较和SW和IW之间的靶基因显示出四个上调基因(FLS,CCR,CAD和HCT),七个上调的LNCRNA,四个下调基因(4CL ,奇,f3h和f3'h)和三个与黄酮类药物相关的下调的lncrnas;九个上调基因(DXS,CMK,HDS,HDR,AACT,MVK,PMK,GGPP和TPS),三个上调的LNCRNA和与Terpenoid代谢相关的六个下调的LNCRNA;以及六个上调基因(LOX,AOS,AOC,OPR,ACX和MFP2),四个上调的LNCRNA和与JA / MEJA生物合成和信号转导相关的三个下调的LNCRNA。这些结果表明DE-LNCRNA的表达及其涉及三种途径的靶标可能与总多酚,黄酮类化合物和儿茶素(EGC,CG,GCG,ECG和EGCG)和高丰度有关的较低丰度。在SW中的Terpenoids。此外,太阳辐照,高JA和MEJA含量和SW中的内源性靶标(ETM)相关的调节机制对于增加萜类化水平也至关重要。这些调查结果与室内跳跃的效果相比,对太阳能对乌龙茶的高质量味道的更高贡献提供了新的洞察。

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