首页> 外文期刊>Physiology and Molecular Biology of Plants >TIAs pathway genes and associatedmiRNAidentification inVinca minor: supporting aspidosperma and eburnamine alkaloids linkage via transcriptomic analysis
【24h】

TIAs pathway genes and associatedmiRNAidentification inVinca minor: supporting aspidosperma and eburnamine alkaloids linkage via transcriptomic analysis

机译:TiS途径基因和相关性脑力化Iminca次要:通过转录组分析支持Aspidosperma和Eburnamine生物碱链接

获取原文
获取原文并翻译 | 示例
           

摘要

V. minorcontains monomeric eburnamine-type of indole alkaloids having utilization as a neuro-medicinal plant. The biosynthetic pathway studies using miRNAs has been the focal point for plant genomic research in recent years and this technique is utilized to get an insight into a possible pathway level study inV. minoras understanding of genes in this prized medicinal plant is meagrely understood. The de novo transcriptomic analysis using Illumina Next gen sequencing has been performed in glasshouse shifted plant and transformed roots to elucidate the possible non confirmed steps of terpenoid indole alkaloids (TIAs) pathway inV. minor. A putative TIA pathway is elucidated in the study including twelve possible TIAs biosynthetic genes. The specific miRNA associated with TIAs pathway were identified and their roles were discussed for the first time inV. minor. The comparative analysis of transcriptomic data of glasshouse shifted plant and transformed roots showed that the raw reads of transformed roots were higher (83,740,316) compared to glasshouse shifted plant (67,733,538). The EST-SSR prediction showed the maximum common repeats among glasshouse shifted plant and transformed roots, although small variation was found in trinucleotide repeats restricted to glasshouse shifted plant. The study reveals overall 37 miRNAs which were observed to be true and can have a role in pathway as they can regulate the growth and alkaloid production. The identification of putative pathway genes plays an important role in establishing linkage between Aspidosperma and Eburnamine alkaloids.
机译:V.较小的eBurnamine型吲哚生物碱具有利用作为神经药用植物的吲哚生物碱。使用MiRNA的生物合成途径研究是近年来植物基因组研究的焦点,并且利用这种技术来了解可能的途径水平研究inv。 Minoras对该珍贵药物植物中的基因的理解是MAGED GRANGELLY。使用Illumina的Novo转录组分析已经在玻璃舍入植物和转化的根部进行了,以阐明Terpenoid Indole生物碱(TiS)途径Inv的可能的非确认步骤。次要的。在该研究中阐明了一种推定的TIA途径,包括12种可能的倾斜生物合成基因。鉴定了与TiS途径相关的特定miRNA,并且它们的作用是第一次inv。次要的。与玻璃换档植物相比,玻璃换层植物和转化根转化根转录植物转录植物和转化根植物的对比分析表明,转化根的原料读数更高(83,740,316)(67,733,538)。 EST-SSR预测显示了玻璃容器移位植物和转化根部的最大常见重复,尽管在限制玻璃舍入植物的缩放剂重复中发现小变化。该研究揭示了总体37个miRNA,观察到是真实的,并且可以在途中作用,因为它们可以调节生长和生物碱生产。推定途径基因的鉴定在建立Aspidosperma和Eburnamine生物碱之间的连杆方面发挥着重要作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号