首页> 外文期刊>Insect Biochemistry and Molecular Biology >De novo biosynthesis versus sequestration: A network of transport systems supports in iridoid producing leaf beetle larvae both modes of defense.
【24h】

De novo biosynthesis versus sequestration: A network of transport systems supports in iridoid producing leaf beetle larvae both modes of defense.

机译:从头开始进行生物合成与隔离:运输系统网络支持产生虹彩的叶甲虫幼虫两种防御方式。

获取原文
获取原文并翻译 | 示例
           

摘要

In the larval chrysomelines the de novo synthesis of monoterpenoids (iridoids) is believed to represent the ancestral state in the evolution of chemical defenses. Here we demonstrate that the iridoid producing larvae of Plagiodera versicolora and Phratora laticollis have the potential to sequester precursors from food. In nature, iridoids may even have a dual origin, namely plant-derived and de novo produced. The ability to sequester plant-derived precursors was proved by (i) (13)C-labelling of the terpenoids in the food plant, (ii) by larval feeding on leaves impregnated with analogs and labelled putative precursors for iridoid biosynthesis; and (iii) by injection of the precursors into the hemolymph followed by mass spectroscopic analysis of their distribution in the hemolymph, defensive secretion, and faeces. The experimental findings support a network of transport systems which allows a broader range of glucosides to enter and to leave the hemocoel, while only the appropriate precursor, 8-hydroxygeraniol-8-O-beta-d-glucoside, is channelled to the reservoir and processed to iridoids. The dual system of de novo biosynthesis and sequestration of phytogenic precursors may have favoured the larvae to shift from one host plant to another without losing their defense.
机译:在幼虫中,单萜类化合物(类胡萝卜素)的从头合成被认为代表了化学防御过程中的祖先状态。在这里,我们证明了生产成虹彩的幼虫Plagiodera versicolora和Phratora laticollis具有隔离食物中前体的潜力。在自然界中,鸢尾类植物甚至可能有双重起源,即植物来源和从头产生。螯合植物来源的前体的能力已通过(i)(13)对食用植物中萜类化合物的C-标记进行了证明,(ii)通过幼虫摄食浸有类似物和标记的推定的前体的虹膜样生物合成的叶片; (iii)通过将前体注入到血淋巴中,然后对其在血淋巴中的分布,防御性分泌物和粪便进行质谱分析。实验结果支持了一个转运系统网络,该转运系统允许更广泛的糖苷进入和离开血细胞腔,而只有适当的前体8-羟基香叶醇-8-O-β-d-糖苷被引导至储库和处理成虹彩。从头生物合成和螯合植物前体的双重系统可能促使幼虫从一种寄主植物转移到另一种寄主植物而又不会失去其防御能力。

著录项

相似文献

  • 外文文献
  • 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