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P450s in the biosynthesis of diterpenoid phytoalexins in rice.

机译:P450s在水稻中生物合成二萜类植物抗毒素中。

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摘要

Rice (Oryza sativa) is an important food crop and produces more than fifteen labdane-related diterpenoid natural products as antibiotics against plant pathogens, for example, against the devastating blast disease pathogen Magnaprothe grisea. The biosynthesis of these labdane-related diterpenoid phytoalexins has been partially clarified, as early enzymatic genes involved in their biosynthesis have been identified, but the downstream pathways from the inactive diterpene olefin precursors to bioactive diterpenoid natural products have not been identified, which limits our understanding and ability to engineer production of these important natural products. Previous work defined two functional diterpenoid biosynthetic gene clusters in rice that include cytochromes P450. Focusing on these P450s, we have been working to identify their biochemical functions using our metabolic engineering system. So far, we have found 10 P450s that exhibit catalytic activity against various rice diterpenes, and 17 novel diterpenoids have been produced and identified. Enzymatic characterization and rice plant metabolite analysis indicate physiological relevance for the identified P450 activity. Through these efforts we have characterized the initial oxidation steps of three groups of diterpenoids, including elucidation of the production of the bioactive Oryzalexin E. Some P450s exhibited activity against a range of diterpene substrates, and these are candidates for further enzymatic investigations. In conclusion, our study is significant because we are elucidating the enzymatic machinery involved in the biosynthesis of rice diterpenoids with important antibiotic activities.
机译:稻米(Oryza sativa)是一种重要的粮食作物,可生产超过十五种与拉丹烷有关的二萜类天然产物作为抗植物病原体的抗生素,例如抗毁灭性稻瘟病病原体Magnaprothe grisea。这些拉丹烷相关的双萜类植物抗毒素的生物合成已得到部分澄清,因为已经鉴定了参与其生物合成的早期酶促基因,但尚未发现从无活性二萜烯前体到生物活性二萜类天然产物的下游途径,这限制了我们的理解。以及设计这些重要天然产品的生产能力。先前的工作定义了水稻中的两个功能性二萜类生物合成基因簇,包括细胞色素P450。专注于这些P450,我们一直在努力使用我们的代谢工程系统来确定它们的生化功能。到目前为止,我们已经发现10种对各种水稻二萜具有催化活性的P450,并且已经生产和鉴定了17种新颖的二萜。酶促表征和水稻植物代谢产物分析表明,所鉴定的P450活性具有生理相关性。通过这些努力,我们表征了三组二萜的初始氧化步骤,包括阐明了生物活性的Oryzalexin E的产生。某些P450表现出对一系列二萜底物的活性,这些是进一步酶学研究的候选者。总之,我们的研究意义重大,因为我们阐明了具有重要抗生素活性的水稻二萜类化合物的生物合成中涉及的酶促机制。

著录项

  • 作者

    Wang, Qiang.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Biochemistry.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 194 p.
  • 总页数 194
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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