...
首页> 外文期刊>Phytochemistry reviews: proceedings of the Phytochemical Society of Europe >Erysimum cheiranthoides , an ecological research system with potential as a genetic and genomic model for studying cardiac glycoside biosynthesis
【24h】

Erysimum cheiranthoides , an ecological research system with potential as a genetic and genomic model for studying cardiac glycoside biosynthesis

机译:Erysimum Chiranthoides,一种生态研究系统,具有潜在的遗传和基因组模型,用于学习心糖苷生物合成

获取原文
获取原文并翻译 | 示例

摘要

At least twelve plant families contain species that synthesize cardiac glycosides as defense against herbivory. These inhibitors of animal Na_(+), K_(+)-ATPases also have medical uses in treating congestive heart failure and other diseases. However, despite extensive ecological research and centuries of use in both traditional and modern medicine, the complete cardiac glycoside biosynthesis pathway has yet to be elucidated in any plant species. To a large extent, this research deficit results from the fact that cardiac glycosides are produced exclusively by non-model plant species such as Digitalis that have not been amenable to the development of mutagenesis, cloning, and genetic mapping approaches. Recent advances in genome sequencing, transcript profiling, plant transformation, transient expression assays, and plant metabolite analysis have provided new opportunities for the investigation and elucidation of cardiac glycoside biosynthesis pathways. The genetic tools that have been developed for Brassicaceae, in particular Arabidopsis thaliana , may be directly applicable to Erysimum , a Brassicaceae genus that characteristically produces cardiac glycosides as defensive metabolites. We propose that Erysimum cheiranthoides (wormseed wallflower), a rapid-cycling, self-pollinating species with a relatively small, diploid genome, would be a suitable model system to advance research on the biosynthesis of cardiac glycosides in plants.
机译:至少十二个植物家庭含有物种,将心脏糖苷作为防御草食病的防御合成。这些动物Na _(+),K _(+) - ATPases的这些抑制剂还具有治疗充血性心力衰竭和其他疾病的医学用途。然而,尽管具有广泛的生态研究和传统和现代医学的几个世纪,但完整的心脏糖苷生物合成途径尚未在任何植物种类中阐明。在很大程度上,这种研究缺陷结果来自心脏糖苷的仅由非模型植物物种(如Digitalis),例如普通植物,葡萄球菌的开发,克隆和遗传绘图方法的发展。基因组测序的最新进展,转录物分析,植物转化,瞬时表达测定和植物代谢物分析为心脏糖苷生物合成途径的调查和阐明提供了新的机会。已经为Brassicaceae开发的遗传工具,特别是拟南芥,拟南芥,可直接适用于繁殖的黄铜科属,其特征性地产生心脏糖苷作为防御性代谢物。我们提出了红细胞(Wormseed Wallflower),快速循环,自授粉具有相对较小的二倍体基因组的物种,是一个合适的模型系统,用于推进植物心脏糖苷的生物合成研究。

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