Botany division, CSIR-CDRI, Sector 10, Jankipuram Extension, Sitapur Road, Lucknow 226031, Uttar Pradesh, India.
Sophisticated Analytical Instrument Facility, CSIR-CDRI, Sector 10, Jankipuram Extension, Sitapur Road, Lucknow 226031, Uttar Pradesh, India.
Sci Rep. 2016 Oct 5;6:34464. doi: 10.1038/srep34464.
Calotropis procera is a medicinal plant of immense importance due to its pharmaceutical active components, especially cardiac glycosides (CG). As genomic resources for this plant are limited, the genes involved in CG biosynthetic pathway remain largely unknown till date. Our study on stage and tissue specific metabolite accumulation showed that CG's were maximally accumulated in stems of 3 month old seedlings. De novo transcriptome sequencing of same was done using high throughput Illumina HiSeq platform generating 44074 unigenes with average mean length of 1785 base pair. Around 66.6% of unigenes were annotated by using various public databases and 5324 unigenes showed significant match in the KEGG database involved in 133 different pathways of plant metabolism. Further KEGG analysis resulted in identification of 336 unigenes involved in cardenolide biosynthesis. Tissue specific expression analysis of 30 putative transcripts involved in terpenoid, steroid and cardenolide pathways showed a positive correlation between metabolite and transcript accumulation. Wound stress elevated CG levels as well the levels of the putative transcripts involved in its biosynthetic pathways. This result further validated the involvement of identified transcripts in CGs biosynthesis. The identified transcripts will lay a substantial foundation for further research on metabolic engineering and regulation of cardiac glycosides biosynthesis pathway genes.
美丽鹰麻是一种具有重要药用价值的植物,其药用活性成分,特别是强心苷(CG),具有重要的药用价值。由于该植物的基因组资源有限,迄今为止,参与 CG 生物合成途径的基因在很大程度上仍然未知。我们对不同发育阶段和组织中代谢物积累的研究表明,CG 在 3 个月大的幼苗茎中积累最多。我们使用高通量 Illumina HiSeq 平台对同一组织进行了从头转录组测序,共获得了 44074 个平均长度为 1785 个碱基对的 unigenes。大约 66.6%的 unigenes通过各种公共数据库进行了注释,5324 个 unigenes在 KEGG 数据库中显示出与植物代谢 133 条不同途径相关的显著匹配。进一步的 KEGG 分析结果鉴定出 336 个与卡烯内酯生物合成相关的 unigenes。30 个假定参与萜类、甾体和卡烯内酯途径的转录本在组织特异性表达分析中显示出代谢物和转录本积累之间的正相关。创伤应激会提高 CG 水平以及其生物合成途径中涉及的假定转录本的水平。这一结果进一步验证了所鉴定的转录本在 CGs 生物合成中的参与。所鉴定的转录本将为进一步研究强心苷生物合成途径基因的代谢工程和调控奠定重要基础。