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The Effects of Root-knot Nematode Infection and Mi-mediated Nematode Resistance in Tomato on Plant Fitness

机译:番茄根结线虫感染和Mi介导的线虫抗性对植物适应性的影响

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摘要

The Mi-1.2 resistance gene in tomato (Solanum lycopersicum) confers resistance against several species of root-knot nematodes (Meloidogyne spp.). This study examined the impact of M. javanica on the reproductive fitness of near-isogenic tomato cultivars with and without Mi-1.2 under field and greenhouse conditions. Surprisingly, neither nematode inoculation or host plant resistance impacted the yield of mature fruits in field microplots (inoculum=8,000 eggs/plant), or fruit or seed production in a follow-up greenhouse bioassay conducted with a higher inoculum level (20,000 eggs/plant). However, under heavy nematode pressure (200,000 eggs/plant), greenhouse-grown plants carrying Mi-1.2 had more than ten-fold greater fruit production than susceptible plants and nearly forty-fold greater estimated lifetime seed production, confirming prior reports of the benefits of Mi-1.2. In all cases Mi-mediated resistance significantly reduced nematode reproduction. These results indicated that tomato can utilize tolerance mechanisms to compensate for moderate levels of nematode infection, but that the Mi-1.2 resistance gene confers a dramatic fitness benefit under heavy nematode pressure. No significant cost of resistance was detected in the absence of nematode infection.
机译:番茄(Solanum lycopersicum)中的Mi-1.2抗性基因赋予了对几种根结线虫(Meloidogyne spp。)的抗性。这项研究检验了野菜和温室条件下爪哇分枝杆菌对含和不含Mi-1.2的近等基因番茄品种生殖适应性的影响。出人意料的是,线虫接种或寄主植物抗性都不会影响田间微孔中成熟果实的产量(接种量= 8,000个鸡蛋/株),或在后续接种量较高的温室生物测定法(20,000个鸡蛋/株)中的果实或种子产量)。然而,在线虫沉重的压力下(每棵植物200,000个卵),携带Mi-1.2的温室种植的植物的果实产量比易感植物高十倍以上,而估计的终生种子产量则高出近四十倍,这证实了先前报道的益处Mi-1.2。在所有情况下,Mi介导的抗性均显着降低线虫繁殖。这些结果表明,番茄可以利用耐受机制补偿中等水平的线虫感染,但是Mi-1.2抗性基因在重的线虫压力下具有显着的健身优势。在没有线虫感染的情况下,没有发现明显的耐药性成本。

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