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Broad-Spectrum Resistance to Different Geographic Strains of Papaya ringspot virus in Coat Protein Gene Transgenic Papaya

机译:在外套蛋白基因转基因番木瓜中对不同地理株的广谱抗性曲折葡萄藻病毒

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摘要

Papaya ringspot virus (PRSV) is a major limiting factor for cultivation of papaya (Carica papaya) in tropical and subtropical areas throughout the world. Although the coat protein (CP) gene of PRSV has been transferred into papaya by particle bombardment and transgenic lines with high resistance to Hawaii strains have been obtained, they are susceptible to PRSV isolates outside of Hawaii. This strain-specific resistance limits the application of the transgenic lines in other areas of the world. In this investigation, the CP gene of a local strain isolated from Taiwan, designated PRSV YK, was transferred into papaya via Agro-bacterium-mediated transformation. A total of 45 putative transgenic lines were obtained and the presence of the transgene in papaya was confirmed by polymerase chain reaction amplification. When the plants of transgenic lines were challenged with PRSV YK by mechanical inoculation, they showed different levels of resistance ranging from delay of symptom development to complete immunity. Molecular analysis of nine selected lines that exhibited different levels of resistance revealed that the expression level of the transgene is negatively correlated with the degree of resistance, suggesting that the resistance is manifested by a RNA-mediated mechanism. The segregation analysis showed that the transgene in the immune line 18-0-9 has an inheritance of two dominant loci and the other four highly resistant lines have a single dominant locus. Seven selected lines were tested further for resistance to three PRSV heterologous strains that originated in Hawaii, Thailand, and Mexico. Six of the seven lines showed varying degrees of resistance to the heterologous strains, and one line, 19-0-1, was immune not only to the homologous YK strain but also to the three heterologous strains. Thus, these CP-transgenic papaya lines with broad-spectrum resistance have great potential for use in Taiwan and other geographic areas to control PRSV.
机译:番木瓜ringspot病毒(PRSV)是全球热带和亚热带地区番薯(Carica Papaya)培养的主要限制因素。虽然PRSV的外套蛋白(CP)通过粒子轰击和具有高抗夏威夷菌株的转基因素转移到木瓜中,但已经获得了夏威夷以外的PRSV分离物。这种应变特异性电阻限制了转基因线在世界其他地区的应用。在这项研究中,通过农药介导的转化转移到台湾分离的局部菌株的CP基因,指定PRSV YK转移到木瓜中。得到总共45条推定的转基因系,通过聚合酶链反应扩增证实了番木瓜中转基因的存在。当通过机械接种用PRSV YK攻击转基因株的植物时,它们显示出不同水平的抗性,从症状发展延迟以完全免疫力。九种选定线的分子分析表现出不同水平的抗性显示,转基因的表达水平与抗性的程度负相关,表明阻力通过RNA介导的机制表现出。分离分析表明,免疫线18-0-9中的转基因具有两个优势基因座的遗传,另外四条高度抗性线具有单个优势基因座。测试七种选定的线条,用于抗夏威夷,泰国和墨西哥的三种PRSV异源菌株。七条线中的六条显示出不同程度的异源菌株,并且一行19-0-1不仅对同源YK菌株进行免疫,而且是三种异源菌株。因此,这些具有广谱抗性的这些CP-转基因木瓜线具有在台湾和其他地理区域使用的巨大潜力,以控制PRSV。

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