College of Life and Environmental Sciences, Minzu University of China, Beijing 100081, China.
National Resource Center for Chinese Materia Medica, China Academy of Traditional Chinese Medicine, Beijing 100700, China.
Sci Rep. 2017 Feb 22;7:43108. doi: 10.1038/srep43108.
Swertia mussotii Franch. is an important traditional Tibetan medicinal plant with pharmacological properties effective in the treatment of various ailments including hepatitis. Secoiridoids are the major bioactive compounds in S. mussotii. To better understand the secoiridoid biosynthesis pathway, we generated transcriptome sequences from the root, leaf, stem, and flower tissues, and performed de novo sequence assembly, yielding 98,613 unique transcripts with an N50 of 1,085 bp. Putative functions could be assigned to 35,029 transcripts (35.52%) based on BLAST searches against annotation databases including GO and KEGG. The expression profiles of 39 candidate transcripts encoding the key enzymes for secoiridoid biosynthesis were examined in different S. mussotii tissues, validated by qRT-PCR, and compared with the homologous genes from S. japonica, a species in the same family, unveiling the gene expression, regulation, and conservation of the pathway. The examination of the accumulated levels of three bioactive compounds, sweroside, swertiamarin, and gentiopicroside, revealed their considerable variations in different tissues, with no significant correlation with the expression profiles of key genes in the pathway, suggesting complex biological behaviours in the coordination of metabolite biosynthesis and accumulation. The genomic dataset and analyses presented here lay the foundation for further research on this important medicinal plant.
川西獐牙菜(Swertia mussotii Franch.)是一种重要的藏药,具有治疗肝炎等多种疾病的功效。裂环烯醚萜类化合物是川西獐牙菜中的主要生物活性化合物。为了更好地了解裂环烯醚萜类化合物的生物合成途径,我们从根、叶、茎和花组织中生成了转录组序列,并进行了从头组装,得到了 98613 个具有 1085bp N50 的独特转录本。基于对 GO 和 KEGG 等注释数据库的 BLAST 搜索,可对 35029 个转录本(35.52%)进行推定功能分配。对 39 个候选转录本(编码裂环烯醚萜生物合成关键酶的转录本)在不同川西獐牙菜组织中的表达谱进行了检测,并用 qRT-PCR 进行了验证,并与同科的獐牙菜(Swertia japonica)的同源基因进行了比较,揭示了该途径的基因表达、调控和保守性。对三种生物活性化合物(獐牙菜苦苷、当药苦苷和龙胆苦苷)的积累水平进行了检测,结果表明它们在不同组织中的含量存在显著差异,与途径中关键基因的表达谱没有显著相关性,这表明在协调代谢物生物合成和积累方面存在复杂的生物学行为。本研究提供的基因组数据集和分析为进一步研究这种重要的药用植物奠定了基础。