首页> 外文期刊>ACS Omega >Coregulation of Biosynthetic Genes and Transcription Factors for Aporphine-Type Alkaloid Production in Wounded Lotus Provides Insight into the Biosynthetic Pathway of Nuciferine
【24h】

Coregulation of Biosynthetic Genes and Transcription Factors for Aporphine-Type Alkaloid Production in Wounded Lotus Provides Insight into the Biosynthetic Pathway of Nuciferine

机译:生物合成基因和转录因子在受伤的莲花中产生阿菲啡型生物碱的调控提供了对核苷生物合成途径的认识。

获取原文
           

摘要

Lotus (Nelumbo nucifera Gaertn.) contains various bioactive compounds, with benzylisoquinoline alkaloids (BIAs) as one of the major groups. The biosynthetic pathways of two major bioactive BIAs in this plant, nuciferine and N-nornuciferine, are still not clear. Therefore, several genes related to BIA biosynthesis were searched from the lotus database to study the role of key genes in regulating these pathways. In this study, the expression profiles of NCS, CNMT, 6OMT, CYP80G2, and WRKY TFs were investigated in mechanically wounded lotus leaves. It was found that the accumulation of nuciferine and N-nornuciferine significantly increased in the mechanically wounded lotus leaves in accordance with the relative expression of putative CYP80G2 and one WRKY transcription factor (NNU_24385), with the coregulation of CNMT. Furthermore, the role of methyltransferase-related genes in this study suggested that methylation of the isoquinoline nucleus to yield a methylated-BIA structure may occur at the N position before the O position. Altogether, this study provides improved understanding of the genes regulating BIA biosynthesis under stressed conditions, which could lead to improvements in BIA production from the commercial lotus.
机译:莲花(Nelumbo nucifera Gaertn。)包含各种生物活性化合物,其中苄基异喹啉生物碱(BIAs)是主要的组之一。该植物中两种主要的生物活性BIA的生物合成途径,即核苷和N-核苷,尚不清楚。因此,从Lotus数据库中搜索了几个与BIA生物合成相关的基因,以研究关键基因在调节这些途径中的作用。在这项研究中,研究了NCS,CNMT,6OMT,CYP80G2和WRKY TFs在机械受伤的荷叶中的表达情况。结果发现,随着推定的CYP80G2和一种WRKY转录因子(NNU_24385)的相对表达以及CNMT的调控,机械损伤的荷叶中核苷和N-核苷的积累显着增加。此外,甲基转移酶相关基因在这项研究中的作用表明,异喹啉核的甲基化产生甲基化的BIA结构可能发生在O位置之前的N位置。总而言之,这项研究使人们对在压力条件下调节BIA生物合成的基因有了更好的了解,这可能会导致商业莲花生产BIA的改善。

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