Engineering Research Center for Forest and Grassland Disaster Prevention and Reduction, Mianyang Normal University, Mianyang 621000, China.
College of Life Science and Biotechnology, Mianyang Normal University, Mianyang 621000, China.
Genomics. 2024 Sep;116(5):110881. doi: 10.1016/j.ygeno.2024.110881. Epub 2024 Jun 19.
Alkaloids are the main medicinal components in Houttuynia cordata. In this study, two accessions 6# and 7# of H. cordata underwent thorough metabolomic analyses to identify and quantify alkaloid phytometabolites. It turned out that the alkaloid types were largely similar between 6# and 7#, and the identified 81 alkaloids could be divided into nine structural classes. However, the content of alkaloids in the two accessions was quite different. According to transcriptome data, a total of 114 differentially expressed genes related to alkaloid metabolism were screened. The alkaloid synthesis pathway of the two varieties was mainly different in the isoquinoline alkaloid biosynthesis and indole alkaloid biosynthesis; four genes A22110063c_transcript_59323, A22110063c_transcript_60118, A22110063c_transcript_51672 and A22110063c_transcript_48784 were highly expressed in 7#, which could be key candidate genes of alkaloid metabolism and warrant further analysis. These results provide a reference for the medicinal application of H. cordata and breeding alkaloid rich varieties.
生物碱是鱼腥草的主要药用成分。本研究对鱼腥草 6#和 7#两个品系进行了全面的代谢组学分析,以鉴定和定量分析生物碱植物代谢物。结果表明,6#和 7#之间的生物碱类型基本相似,鉴定出的 81 种生物碱可分为 9 个结构类别。然而,两种品系的生物碱含量差异很大。根据转录组数据,筛选出与生物碱代谢相关的 114 个差异表达基因。两种品种的生物碱合成途径主要在异喹啉生物碱生物合成和吲哚生物碱生物合成中存在差异;四个基因 A22110063c_transcript_59323、A22110063c_transcript_60118、A22110063c_transcript_51672 和 A22110063c_transcript_48784 在 7#中高度表达,可能是生物碱代谢的关键候选基因,值得进一步分析。这些结果为鱼腥草的药用应用和培育富含生物碱的品种提供了参考。