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Transcriptome Analysis Reveals genes involved in flavonoid biosynthesis and accumulation in Dendrobium catenatum From Different Locations

机译:转录组分析从不同位置揭示了与铁皮石D黄酮生物合成和积累有关的基因

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摘要

In this study, we applied transcriptome and UHPLC-MS technologies to investigate the flavonoids and their biosynthesis- and accumulation-related genes in Dendrobium catenatum from three different locations. Eight flavonoid glycosides were identified using standard references or previously isolated substances with MS data analysis. The total flavonoid contents were determined by reagents, and all the data were analyzed. In total, 23139 unigenes were obtained using the Dendrobium catenatum genome data. Of these, 10398 were annotated in the Gene Ontology (GO) database, 4203 were annotated in the KEGG database, and 10917 were annotated in the EuKaryotic Orthologous Groups (KOG) database. Thirty-one of the unigenes annotated by the KEGG database were involved in flavonoid pathways. The genes involved in bio-modification, accumulation, transportation and the regulation of the flavonoid bio-synthesis process were investigated. In conclusion, the flavonoids in Dendrobium catenatum from three different locations were different in quantitative and qualitative which may contribute to the establishment of quality control method for this herbal plant. These differences were determined by flavonoids biosynthesis process and they were concluded by sorting out the expression level of certain biosynthesis related genes.
机译:在这项研究中,我们应用转录组和UHPLC-MS技术研究了来自三个不同地点的铁皮石end中的类黄酮及其生物合成和积累相关基因。使用标准参考文献或先前分离的物质通过MS数据分析鉴定了八种类黄酮苷。用试剂测定总黄酮含量,并分析所有数据。使用石cat石genome基因组数据总共获得了23139个单基因。其中,在基因本体论(GO)数据库中标注了10398,在KEGG数据库中标注了4203,在EuKaryotic Orthologous Groups(KOG)数据库中标注了10917。 KEGG数据库注释的单基因中有31个参与类黄酮途径。研究了参与生物修饰,积累,转运和调节类黄酮生物合成过程的基因。综上所述,来自三个不同地方的铁皮石end中的黄酮在数量和质量上都存在差异,这可能有助于建立该草药植物的质量控制方法。这些差异是通过类黄酮的生物合成过程确定的,并通过分选某些生物合成相关基因的表达水平来得出结论。

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