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Generation of transgenic watermelon resistant to Zucchini yellow mosaic virus and Papaya ringspot virus type W

机译:抗西葫芦黄花叶病毒和W型木瓜环斑病毒的转基因西瓜的产生

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Zucchini yellow mosaic virus (ZYMV) and Papaya ringspot virus type W (PRSV W) are major limiting factors for production of watermelon worldwide. For the effective control of these two viruses by transgenic resistance, an untranslatable chimeric construct containing truncated ZYMV coat protein (CP) and PRSV W CP genes was transferred to commercial watermelon cultivars by Agrobacterium-mediated transformation. Using our protocol, a total of 27 putative transgenic lines were obtained from three cultivars of ‘Feeling’ (23 lines), ‘China baby’ (3 lines), and ‘Quality’ (1 line). PCR and Southern blot analyses confirmed that the chimeric construct was incorporated into the genomic DNA of the transformants. Greenhouse evaluation of the selected ten transgenic lines of ‘Feeling’ cultivar revealed that two immune lines conferred complete resistance to ZYMV and PRSV W, from which virus accumulation were not detected by Western blotting 4 weeks after inoculation. The transgenic transcript was not detected, but small interfering RNA (siRNA) was readily detected from the two immune lines and T1 progeny of line ZW 10 before inoculation, indicating that RNA-mediated post-transcriptional gene silencing (PTGS) is the underlying mechanism for the double-virus resistance. The segregation ratio of T1 progeny of the immune line ZW10 indicated that the single inserted transgene is nuclearly inherited and associated with the phenotype of double-virus resistance as a dominant trait. The transgenic lines derived from the commercial watermelon cultivars have great potential for control of the two important viruses and can be implemented directly without further breeding.
机译:西葫芦黄色花叶病毒(ZYMV)和W型木瓜环斑病毒(PRSV W)是世界范围内西瓜生产的主要限制因素。为了通过转基因抗性有效控制这两种病毒,通过农杆菌介导的转化将包含截短的ZYMV外壳蛋白(CP)和PRSV W CP基因的不可翻译的嵌合构建体转移到商品西瓜品种中。使用我们的方案,从“感觉”(23个品系),“中国娃娃”(3个品系)和“品质”(1个品系)三个品种中获得了总共27个推定的转基因品系。 PCR和Southern印迹分析证实了嵌合构建体被整合到转化体的基因组DNA中。对选定的十个“感受”品种转基因系进行的温室评估显示,两个免疫系赋予了对ZYMV和PRSV W的完全抗性,接种后4周,Western印迹未检测到其中的病毒积累。未检测到转基因转录本,但在接种前很容易从ZW 10株的两个免疫系和T 1 后代中检测到小的干扰RNA(siRNA),表明RNA介导的转录后基因沉默(PTGS)是双重病毒抗性的潜在机制。免疫系ZW10的T 1 后代的分离率表明,单个插入的转基因是核遗传的,并且与双重病毒抗性的表型有关。来自商业西瓜品种的转基因品系具有控制两种重要病毒的巨大潜力,无需进一步育种即可直接实施。

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