首页> 外文会议>International Symposium on Genetic Modifications >Combining Genomics and Metabolomics for the Discovery of Regulatory Genes and Their Use in Metabolic Engineering to Produce 'Healthy Foods'
【24h】

Combining Genomics and Metabolomics for the Discovery of Regulatory Genes and Their Use in Metabolic Engineering to Produce 'Healthy Foods'

机译:结合基因组学和代谢组科,以发现监管基因及其在代谢工程中生产“健康食品”的应用

获取原文

摘要

Plants often accumulate their natural products to relatively low levels, so there is a lot of interest in breeding or engineering plants that produce higher levels. It has been shown that the most effective way to increase the accumulation of secondary metabolites is to increase the activity of genes that regulate the activity of the biosynthetic pathways that make different natural products. Regulatory genes of this type encode proteins called transcription factors. The biggest bottleneck in using this strategy to develop plants that accumulate significantly higher levels of important natural products is that not many transcription factors regulating secondary metabolism have yet been identified at the molecular level. Genes encoding transcription factors can be identified from model plants with sequenced genomes. The ability of such genes to regulate metabolism can be assayed by examination of mutants (reverse genetics) and by investigating the metabolic effects of high levels of expression of the genes. The combined techniques of metabolic fingerprinting and metabolite profiling of mutant and transgenic plants are allowing us to identify new genes encoding transcription factors controlling secondary metabolism, that can be used as tools for engineering natural product accumulation.
机译:植物经常将它们的天然产物积聚到相对较低的水平,因此对产生更高水平的繁殖或工程植物有很多兴趣。已经表明,增加次级代谢物积累的最有效方法是增加调节制造不同天然产物的生物合成途径活性的基因的活性。这种类型编码蛋白质的调节基因称为转录因子。利用这种策略开发积累的植物的最大瓶颈显着提高了重要的天然产物的植物,这并不是许多调节次生新陈代谢的转录因子尚未在分子水平鉴定。可以从具有测序基因组的模型植物鉴定编码转录因子的基因。通过检查突变体(反向遗传)和通过研究基因的高水平表达的代谢效应,可以测定这种基因来调节代谢的能力。突变和转基因植物的代谢指纹和代谢物分析的组合技术允许我们鉴定编码控制次级代谢的转录因子的新基因,这可以用作工程天然产品积累的工具。

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