首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Transcriptome Analysis of JA Signal Transduction Transcription Factors and Monoterpene Biosynthesis Pathway in Response to Methyl Jasmonate Elicitation in Mentha canadensis L.
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Transcriptome Analysis of JA Signal Transduction Transcription Factors and Monoterpene Biosynthesis Pathway in Response to Methyl Jasmonate Elicitation in Mentha canadensis L.

机译:加拿大薄荷脑中茉莉酸甲酯激发引起的JA信号转导转录因子和单萜生物合成途径的转录组分析。

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摘要

Mentha canadensis L. has important economic value for its abundance in essential oils. Menthol is the main component of M. canadensis essential oils, which is certainly the best-known monoterpene for its simple structure and wide applications. However, the regulation of menthol biosynthesis remains elusive in M. canadensis. In this study, transcriptome sequencing of M. canadensis with MeJA treatment was applied to illustrate the transcriptional regulation of plant secondary metabolites, especially menthol biosynthesis. Six sequencing libraries were constructed including three replicates for both control check (CK) and methyl jasmonate (MeJA) treatment and at least 8 Gb clean bases was produced for each library. After assembly, a total of 81,843 unigenes were obtained with an average length of 724 bp. Functional annotation indicated that 64.55% of unigenes could be annotated in at least one database. Additionally, 4430 differentially expressed genes (DEGs) with 2383 up-regulated and 2047 down-regulated transcripts were identified under MeJA treatment. Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment indicated that “Monoterpenoid biosynthesis” was one of the most significantly enriched pathways in metabolism. Subsequently, DEGs involved in JA signal transduction, transcription factors, and monoterpene biosynthesis were analyzed. 9 orthologous genes involved in menthol biosynthesis were also identified. This is the first report of a transcriptome study of M. canadensis and will facilitate the studies of monoterpene biosynthesis in the genus Mentha.
机译:加拿大薄荷油因其精油含量丰富而具有重要的经济价值。薄荷醇是加拿大念珠菌精油的主要成分,由于其简单的结构和广泛的应用,薄荷油无疑是最著名的单萜。然而,在加拿大分枝杆菌中,薄荷醇生物合成的调控仍然难以实现。在这项研究中,采用MeJA处理的加拿大分枝杆菌的转录组测序被用于说明植物次生代谢产物,尤其是薄荷醇生物合成的转录调控。构建了六个测序文库,包括用于对照检查(CK)和茉莉酸甲酯(MeJA)处理的三个重复样本,每个文库至少产生8 Gb干净碱基。组装后,获得了总共81,843个单基因,平均长度为724 bp。功能注释表明,在至少一个数据库中可以注释64.55%的单基因。此外,在MeJA处理下,鉴定出4430个差异表达基因(DEG),其中2383个上调和2047个下调的转录本。京都基因与基因组百科全书(KEGG)富集表明,“单萜类生物合成”是代谢中最富集的途径之一。随后,分析了参与JA信号转导,转录因子和单萜生物合成的DEG。还鉴定了涉及薄荷醇生物合成的9个直系同源基因。这是加拿大念珠菌转录组研究的第一份报告,将促进薄荷脑属中单萜生物合成的研究。

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