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Systemic RNAi in western corn rootworm, Diabrotica virgifera virgifera, does not involve transitive pathways

机译:西部玉米根虫Diabrotica virgifera virgifera中的系统性RNAi不涉及传递途径

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摘要

Western corn rootworm (WCR,Diabrotica virgifera virgifera LeConte) is highly sensitive to orally delivered double-stranded RNA (dsRNA).RNAi in WCR is systemic and spreads throughout the insect body.This raises the question whether transitive RNAi is a mechanism that functions in WCR to amplify the RNAi response via production of secondary siRNA.Secondary siRNA production is achieved through RNA-dependent RNA polymerase (RdRP) activity in other eukaryotic organisms,but RdRP has not been identified in WCR and any other insects.This study visualized the spread of the RNAimediated knockdown of Dv v-ATPase C mRNA throughout the WCR gut and other tissues using high-sensitivity branched DNA in situ hybridization.Furthermore,we did not detect either secondary siRNA production or transitive RNAi in WCR through siRNA sequence profile analysis.Nucleotide mismatched sequences introduced into either the sense or antisense strand of v-ATPase C dsRNAs were maintained in siRNAs derived from WCR fed with the mismatched dsRNAs in a strand specific manner.The distribution of all siRNAs was restricted to within the original target sequence regions,which may indicate the lack of new dsRNA synthesis leading to production of secondary siRNA.Thus,the systemic spread of RNAi in WCR may be derived from the original dsRNA molecules taken up from the gut lumen.These results indicate that the initial dsRNA dose is important for a lethal systemic RNAi response in WCR and have implications in developing effective dsRNA traits to control WCR and in resistance management to prolong the durability of RNAi trait technology.
机译:西部玉米根虫(WCR,Diabrotica virgifera virgifera LeConte)对口服递送的双链RNA(dsRNA)高度敏感.WCR中的RNAi是系统性的,并在整个昆虫体内扩散,这引发了一个疑问,即传递性RNAi是否是一种在体内起作用的机制。 WCR通过产生次级siRNA来放大RNAi反应。次级siRNA的生产是通过其他真核生物中的RNA依赖性RNA聚合酶(RdRP)活性实现的,但在WCR和其他任何昆虫中均未鉴定到RdRP。高敏支链DNA原位杂交技术检测整个WCR肠和其他组织中Dv v-ATPase C mRNA的RNAi介导的敲除。此外,我们没有通过siRNA序列图谱分析检测到WCR中的次级siRNA产生或传递性RNAi。引入v-ATPase C dsRNA有义链或反义链的错配序列均保留在源自WCR饲喂wi的siRNA中所有siRNA的分布都局限于原始靶序列区域内,这可能表明缺少新的dsRNA合成导致了次级siRNA的产生。因此,RNAi在WCR中的系统性传播这些结果表明,初始dsRNA剂量对于WCR中致命的系统性RNAi反应非常重要,并且对开发有效的dsRNA特性以控制WCR和延长耐药性具有重要意义。 RNAi特征技术的耐用性。

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  • 来源
    《中国昆虫科学:英文版》 |2018年第1期|45-56|共12页
  • 作者单位

    Dow AgroSciences LL C, 9330 Zionsville Rd., Indianapolis, Indiana, USA;

    Dow AgroSciences LL C, 9330 Zionsville Rd., Indianapolis, Indiana, USA;

    Dow AgroSciences LL C, 9330 Zionsville Rd., Indianapolis, Indiana, USA;

    Dow AgroSciences LL C, 9330 Zionsville Rd., Indianapolis, Indiana, USA;

    Dow AgroSciences LL C, 9330 Zionsville Rd., Indianapolis, Indiana, USA;

    Dow AgroSciences LL C, 9330 Zionsville Rd., Indianapolis, Indiana, USA;

    Department of Entomology, University of Nebraska, Lincoln,Nebraska, USA;

    Monsanto Company, Chesterfield, Missouri, USA;

    Entomology and Nematology Department, University of Florida,Gainesville, Florida, USA;

    Dow AgroSciences LL C, 9330 Zionsville Rd., Indianapolis, Indiana, USA;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2024-01-27 07:56:49
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