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Meloidogyne Virulence Locus Molecular Marker for Characterization of Selected Mi-Virulent Populations of Meloidogyne spp. Is Correlated with Several Genera of Betaproteobacteria

机译:根结线虫毒力基因座分子标记,用于表征部分根结线虫的微毒力种群。与betaproteobacteria的几个属相关

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摘要

Resistance to root-knot nematodes in tomato is conferred by the Mi resistance gene to the three most important species of Meloidogyne: M. arenaria, M. incognita, and M. javanica. Nevertheless, the Mi gene is unable to inhibit the reproduction of selected and naturally Mi-virulent populations of root-knot nematodes. As pathogenicity assays are time consuming, molecular markers were developed for the easy identification of Mi-virulent populations of Meloidogyne. The sequence characterized amplified region-Meloidogyne virulence locus (MVC) molecular marker is reported to differentiate Mi-avirulent and naturally Mi-virulent from selected Mi-virulent populations. This marker was used to compare acquired virulence in populations of M. javanica from Spain. The original populations used to develop the MVC marker were included as control for reference. Results showed that this marker did not amplify genomic DNA extracted from single juveniles or females of any of the populations tested either from Spain or Japan. In silico analyses performed with the recently published complete genome of M. incognita, indicated that the MVC marker is not correlated to a MVC or to any eukaryotic organism but to several betaproteobacteria genus from the family Comamonadaceae.
机译:Mi抵抗基因将番茄的根结线虫抗性赋予了根结线虫这三个最重要的物种:沙蚕(M. arenaria),隐身木(M. incognita)和爪哇木兰(M. javanica)。然而,Mi基因不能抑制根结线虫的选定的和自然的Mi毒力种群的繁殖。由于致病性测定非常耗时,因此开发了分子标记物,可轻松识别Meloidogyne的微毒力种群。据报道,该序列的特征在于扩增的区域-倍性生殖金属毒力位点(MVC)分子标记,可从选定的Mi毒力种群中区分出Mi毒力和天然Mi毒力。该标记用于比较西班牙的爪哇分枝杆菌种群的获得性毒力。包括用于开发MVC标记的原始种群作为对照,以供参考。结果表明,该标记物不能扩增从西班牙或日本的任何单个种群的少年或雌性中提取的基因组DNA。在计算机上对最近公开的隐姓氏梭状芽孢杆菌的完整基因组进行的计算机分析表明,MVC标记与MVC或任何真核生物无关,而与Comamonadaceae家族的几个β变形杆菌属相关。

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