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首页> 外文期刊>HortScience >Root-knot Nematode Resistance, Yield, and Fruit Quality of Specialty Melons Grafted onto Cucumis metulifer
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Root-knot Nematode Resistance, Yield, and Fruit Quality of Specialty Melons Grafted onto Cucumis metulifer

机译:黄瓜枯萎病后嫁接特种瓜的根结线虫抗性,产量和果实品质

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Interest in specialty melons (Cucumis melo) with distinctive fruit characteristics has grown in the United States in recent years. However, disease management remains a major challenge in specialty melon production. In this study, grafting experiments were conducted to determine the effectiveness of using Cucumis metulifer, a species known for its genetic resistance to root-knot nematodes (RKNs; Meloidogyne spp.), as a potential rootstock for managing RKNs in susceptible specialty melon cultivars. In the greenhouse experiment, honeydew melon 'Honey Yellow' was grafted onto C. metulifer and inoculated with M. incognita race 1. The grafted plants exhibited significantly lower gall and egg mass indices and fewer eggs compared with non- and self-grafted 'Honey Yellow'. Cucumis metulifer was further tested as a rootstock in conventional and organic field trials using honeydew melon 'Honey Yellow' and galia melon 'Arava' as scions. 'Honey Yellow' and 'Arava' grafted onto C. metulifer exhibited significantly lower galling and reduced RKN population densities in the organic field; however, total and marketable fruit yields were not significantly different from non- and self-grafted plants. Although the improvement of RKN resistance did not translate into yield enhancements, incorporating grafted specialty melons with C. metulifer rootstock into double-cropping systems with RKN-susceptible vegetables may benefit the overall crop production by reducing RKN population densities in the soil. At the conventional field site, which was not infested with RKNs, 'Honey Yellow' grafted onto C. metulifer rootstock had a significantly lower total fruit yield than non-grafted 'Honey Yellow' plants; however, fruit yields were similar for 'Arava' grafted onto C. metulifer rootstock and non-grafted 'Arava' plants. Although no significant impacts on the fruit quality attributes of 'Honey Yellow' were observed, grafting onto C. metulifer decreased the flesh firmness of 'Arava' in both field trials and resulted in a reduction in total soluble solids content under conventional production. In summary, grafting RKN-susceptible melons onto C. metulifer rootstock offers promise for growing these specialty melons; however, more studies are needed to elucidate the scion rootstock interaction effect on fruit yield and quality
机译:近年来,对具有独特水果特征的特种甜瓜(Cucumis melo)的兴趣不断增长。然而,疾病管理仍然是特种瓜生产中的主要挑战。在这项研究中,进行了嫁接实验,以确定使用黄瓜(Cucumis metulifer)(其对根结线虫(RKNs; Meloidogyne spp。)的遗传抗性而闻名)作为在易感特产甜瓜品种中管理RKNs的潜在砧木的有效性。在温室试验中,将蜜瓜“蜂蜜黄”嫁接到小叶锦梭鱼上,并接种了隐身种M. incognita。与未嫁接的和自嫁的“蜂蜜”相比,嫁接的植株显示出明显更低的胆和蛋质量指数,更少的卵。黄色'。在常规和有机田间试验中,使用甜瓜“蜂蜜黄”和加利亚瓜“ Arava”作为接穗,进一步对黄瓜黄瓜作为砧木进行了测试。在有机田中,嫁接于小球藻的“蜂蜜黄”和“阿拉瓦”表现出显着降低的磨损和降低的RKN种群密度。然而,水果的总产量和可销售性与非嫁接和自嫁接植物没有显着差异。尽管对RKN抗性的提高并未转化为产量的提高,但将嫁接的特种甜瓜与met虫的砧木结合到含有RKN易感蔬菜的双作系统中,可能会通过降低土壤中RKN的人口密度而使整个作物的生产受益。在没有被RKN侵扰的常规田地上,嫁接于梅花棒茎砧木上的“蜜黄”的总果实产量明显低于未嫁接的“蜜黄”植物。但是,嫁接到美长梭菌砧木和未嫁接的“阿拉瓦”植物上的“阿拉瓦”的果实产量相似。尽管未观察到对“蜂蜜黄”果实品质属性的显着影响,但在两个田间试验中,嫁接到小球藻都降低了“阿拉瓦”的果肉硬度,并导致常规生产中总可溶性固形物含量降低。综上所述,将易感RKN的甜瓜嫁接到条形美root的砧木上为这些特殊甜瓜的生长提供了希望。然而,需要更多的研究来阐明接穗砧木相互作用对果实产量和品质的影响。

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