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首页> 外文期刊>Plant Disease >Pathogenic Variability of Meloidogyne incognita Populations Occurring in Pepper-Production Greenhouses in Israel Toward Mel, Me3 and N Pepper Resistance Genes
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Pathogenic Variability of Meloidogyne incognita Populations Occurring in Pepper-Production Greenhouses in Israel Toward Mel, Me3 and N Pepper Resistance Genes

机译:Meloidogyne Incognita群体发生的致病性变异性,在以色列朝向MEL,ME3和N辣椒抗性基因中发生在辣椒 - 生产温室中发生的

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摘要

Natural variation in the root-knot nematode Meloidogyne incognita is problematic for breeding programs: populations possessing similar morphological characteristics can produce different reactions on the same host. We collected 30 widely dispersed M. incognita populations from protected pepper production systems in major pepper-growing regions of Israel and accurately identified their virulence characteristics by modified differential host test in a growth chamber on tomato, tobacco, cotton, melon, pepper, and peanut. Galling indices and reproduction were determined on the different hosts. All populations fit the published scheme for M. incognita race 2, except for reproduction on cotton plants by five out of 25 tested M. incognita populations, indicating host-range variations. Reaction of three genes that confer resistance to M. incognita-Mel, Me3 and N-to the collected populations was evaluated. Several M. incognita populations induced galling and reproduced successfully on pepper genotypes carrying Me3 and N, whereas plant resistance conferred by Mel was more robust for all examined populations. Moreover, the effect of genetic background on Mel resistance demonstrated a relative advantage of several genotypes in nematode infestations. Efficiency of Me3 under local nematode infestation was further studied with a homozygous line carrying two Me3 alleles. Reproduction of virulent populations on the homozygotes (Me3/Me3) and heterozygotes (Me3/Me3(+)) was similar, suggesting a limited quantitative effect of Me3. These results present the first characterization of host range, reproduction, and molecular aspects of M. incognita from Israel and highlight the importance of taking a multidimensional approach in pepper-breeding programs for resistance to M. incognita.
机译:根结Nematode Meloidogyne的自然变化是有问题的繁殖计划:具有相似形态特征的人群可以在同一宿主产生不同的反应。我们收集了30个广泛分散的M.Incognita群体,来自以色列的主要辣椒生长区域的受保护辣椒生产系统,并通过在番茄,烟草,棉花,甜瓜,辣椒和花生和花生和花生上进行改良的差异宿主测试,准确地确定了它们的毒力特征。在不同的主机上确定了陷入困境和繁殖。所有人口都适用于M. Incognita Race 2的发布计划,除了棉花植物的繁殖除了25个测试的M.Incognita群体中的五个,表明宿主范围变异。评价了三种基因的反应,其赋予M.Incognita-Mel,Me3和N-孔的抗性。几种M.Incognita群体诱导携带携带ME3和N的胡椒基因型成功携带,而MEL赋予的植物阻力更加稳健,对所有检查的种群更加坚固。此外,遗传背景对Mel抗性的影响呈现了线虫侵扰中几种基因型的相对优势。通过携带两种ME3等位基因的纯合线进一步研究ME3在局部线虫侵扰下的效率。在纯合蛋白(ME3 / ME3)和杂合子(ME3 / ME3(+))上的繁殖植物(ME3 / ME3(+))是相似的,表明ME3的有限定量效果。这些结果呈现了来自以色列的宿主范围,繁殖和分子方面的第一次表征,并突出了对养殖计划抗性患者抗性计划的多维方法的重要性。

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    《Plant Disease》 |2017年第8期|共11页
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  • 正文语种 eng
  • 中图分类 植物保护;
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