首页> 外文期刊>Insect Biochemistry and Molecular Biology >Tissue-specific profiling of membrane proteins in the salicin sequestering juveniles of the herbivorous leaf beetle, Chrysomela populi
【24h】

Tissue-specific profiling of membrane proteins in the salicin sequestering juveniles of the herbivorous leaf beetle, Chrysomela populi

机译:在食草叶片甲虫的Salicin螯合幼年中的膜蛋白组织特异性剖析,Chrysomela populi

获取原文
获取原文并翻译 | 示例
       

摘要

Sequestration of plant secondary metabolites is a detoxification strategy widespread in herbivorous insects including not only storage, but also usage of these metabolites for the insects' own benefit. Larvae of the poplar leaf beetle Chrysomela populi sequester plant-derived salicin to produce the deterrent salicylaldehyde in specialized exocrine glands. To identify putative transporters involved in the sequestration process we investigated integral membrane proteins of several tissues from juvenile C. populi by using a proteomics approach. Computational analyses led to the identification of 122 transport proteins in the gut, 105 in the Malpighian tubules, 94 in the fat body and 27 in the defensive glands. Among these, primary active transporters as well as electrochemical potential-driven transporters were most abundant in all tissues, including ABC transporters (especially subfamilies B, C and G) and sugar porters as most interesting families facilitating the sequestration of plant glycosides. Whereas ABC transporters are predominantly expressed simultaneously in several tissues, sugar porters are often expressed in only one tissue, suggesting that sugar porters govern more distinct functions than members of the ABC family. The inventory of transporters presented in this study provides the base for further functional characterizations on transport processes of sequestered glycosides in insects.
机译:植物次级代谢物的封存是一种解毒策略,其在食草昆虫中普及,包括不仅储存,还可以使用这些代谢物为昆虫自身的益处。杨树叶片叶甲虫甲虫蛹Populi螯合植物 - 衍生的Salicin,在专业的外分泌腺中产生威慑水杨醛。为了鉴定螯合过程中参与的推定转运蛋白,我们通过使用蛋白质组学方法研究了来自青少年C.Populi的几种组织的整体膜蛋白。计算分析导致肠道中的122种输送蛋白,在脂肪体中的Malpighian小管中的94中,在防御腺体中的27中。其中,所有组织中,初级活性转运蛋白以及电化学电位驱动的转运蛋白最丰富,包括ABC转运蛋白(尤其是亚属B,C和G)和糖搬运工,作为促进植物糖苷的螯合的最有趣的家庭。而ABC转运蛋白主要在若干组织中同时表达,而糖搬运工通常只在一个组织中表达,这表明糖搬运工比ABC系列的成员更加独特的功能。本研究中呈现的运输司机库存为昆虫中螯合糖苷的输送过程提供了进一步的功能性质。

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