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首页> 外文期刊>Transgenic Research >Intron–hairpin RNA Derived from Replication Associated Protein C1 Gene Confers Immunity to Tomato Yellow Leaf Curl Virus Infection in Transgenic Tomato Plants
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Intron–hairpin RNA Derived from Replication Associated Protein C1 Gene Confers Immunity to Tomato Yellow Leaf Curl Virus Infection in Transgenic Tomato Plants

机译:复制相关蛋白C1基因衍生的内含子-发夹RNA赋予转基因番茄植株番茄黄叶卷曲病毒感染免疫力

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摘要

The whitefly-transmitted Tomato Yellow Leaf Curl Virus (TYLCV) is the major pathogen of tomato crop in Cuba and one of the most outstanding viral diseases of plants worldwide. In this work, we have developed transgenic tomato plants, transformed with an intron–hairpin genetic construction to induce post- transcriptional gene silencing against the early TYLCV replication associated protein gene (C1). The intron–hairpin RNA produced involves 726 nts of the 3′ end of the TYLCV C1 gene as the arms of the hairpin, and the castor bean catalase intron. Transgenic tomato plants belonging to line 126, which harbor a single transgene copy, showed immunity to TYLCV, even in extreme conditions of infection (4-leaf-stage plants and 300 to many hundreds viruliferous whiteflies per plant during 60 days). Dot blot hybridization of these plants showed no TYLCV DNA presence 60 days after inoculation. Small interfering RNA molecules were detected in both inoculated and non-inoculated plants from line 126. These transgenic tomato plants of the otherwise very TYLCV-susceptible Campbell-28 tomato cultivar, are the first report of resistance to a plant DNA virus obtained by the use of the intron–hairpin RNA approach.
机译:烟粉虱传播的番茄黄叶卷曲病毒(TYLCV)是古巴番茄作物的主要病原体,也是世界上最突出的植物性病毒病之一。在这项工作中,我们开发了转基因番茄植物,并通过内含子-发夹基因的构建进行了转化,以诱导针对早期TYLCV复制相关蛋白基因(C1)的转录后基因沉默。产生的内含子-发夹RNA涉及作为发夹臂的TYLCV C1基因3'端的726 nt,以及蓖麻子过氧化氢酶内含子。属于品系126的转基因番茄植株具有单个转基因拷贝,即使在极端感染条件下(60天内有四叶阶段植物和每株植物300至数百个有毒粉虱)也显示出对TYLCV的免疫力。接种60天后,这些植物的斑点印迹杂交显示没有TYLCV DNA存在。在第126系的已接种植物和未接种植物中均检测到小的干扰RNA分子。这些原本非常易受TYLCV感染的Campbell-28番茄栽培种的转基因番茄植物,是首次对使用该植物获得的植物DNA病毒具有抗性的报道内含子-发夹RNA方法的研究。

著录项

  • 来源
    《Transgenic Research》 |2006年第3期|291-304|共14页
  • 作者单位

    Plant Virology Laboratory Plant Department Center for Genetic Engineering and Biotechnology P.O. Box 6162 10600 Havana Cuba;

    Plant Virology Laboratory Plant Department Center for Genetic Engineering and Biotechnology P.O. Box 6162 10600 Havana Cuba;

    Microbiology Department Faculty of Biology University of Havana Havana Cuba;

    Plant Virology Laboratory Plant Department Center for Genetic Engineering and Biotechnology P.O. Box 6162 10600 Havana Cuba;

    Plant Virology Laboratory Plant Department Center for Genetic Engineering and Biotechnology P.O. Box 6162 10600 Havana Cuba;

    Plant Virology Laboratory Plant Department Center for Genetic Engineering and Biotechnology P.O. Box 6162 10600 Havana Cuba;

    Plant Virology Laboratory Plant Department Center for Genetic Engineering and Biotechnology P.O. Box 6162 10600 Havana Cuba;

    Plant Virology Laboratory Plant Department Center for Genetic Engineering and Biotechnology P.O. Box 6162 10600 Havana Cuba;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    begomoviruses; pathogen-derived resistance; post-transcriptional gene silencing; tomato; transgenic plants; TYLCV;

    机译:贝莫病毒;病原体抗性;转录后基因沉默;番茄;转基因植物;TYLCV;

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