首页> 外文期刊>Canadian Journal of Plant Pathology: Revue Canadienne de phytopathologie >Meloidogyne incognita intensifies the severity of Fusarium wilt on watermelon caused by Fusarium oxysporum f. sp. niveum
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Meloidogyne incognita intensifies the severity of Fusarium wilt on watermelon caused by Fusarium oxysporum f. sp. niveum

机译:Meloidogyne Incognita将镰刀菌F的西瓜枯萎的严重程度加剧了镰刀虫枯萎病。 sp。 奈姆

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摘要

Fusarium wilt of watermelon, caused by Fusarium oxysporum f. sp. niveum (FON), is a devastating soil-borne disease in watermelon production. Race 1 and race 2 of the pathogen are widely distributed in different watermelon producing regions. To investigate whether the root-knot nematodes break resistance of watermelon genotypes with resistance to FON race 1 and race 2, four greenhouse experiments were conducted on two watermelon cultivars Calhoun Gray' and Fascination' that are resistant to race 1, and an accession PI 296 341-FR that is resistant to race 2. The treatments included seedlings of Calhoun Gray' and Fascination' inoculated with Meloidogyne incognita (1000 J2/plant) or FON race 1 alone, nematodes 5days before FON, FON 5days before nematodes, nematodes and FON simultaneously, and non-inoculated control. PI 296 341-FR was inoculated with FON race 2, with or without M. incognita inoculation. The presence of M. incognita enhanced the susceptibility of all watermelon genotypes to Fusarium wilt. Co-inoculation with M. incognita led to an early development of wilt symptoms and increased disease severity. Galls were observed on roots of all nematode-inoculated plants, and sequential inoculation of FON followed by nematodes resulted in numerically lower galling indices compared with other inoculation methods. Whereas inoculation of the nematodes alone did not reduce plant growth, growth suppression was evident when seedlings were inoculated with both pathogens. The results indicated that M. incognita could enhance susceptibility of resistant watermelon genotypes to respective FON races, and host resistance alone is not sufficient for managing Fusarium wilt on watermelon in soils infested with root-knot nematodes.
机译:镰刀菌枯萎的西瓜,由镰刀镰刀菌引起的。 SP。 Niveum(Fon),是西瓜生产中的一种破坏性的土壤传导疾病。病原体的参数和种族2在不同的西瓜产区中广泛分布。为了探讨西瓜基因型的根结线虫是否破坏具有抗性对FON比赛的耐抗性1和比赛2,在两个西瓜品种Calhoun灰色'和迷恋'中进行了四个温室实验,这些实验是对比赛1的抵抗力和加入PI 296 341-FR抵抗比赛2.该治疗包括Calhoun Gray'和Fascination'的幼苗接种着Meloidogyne Incognita(1000 J2 / Plant)或单独的FON比赛1,Nematodes 5days在Mematodes,Nematodes和Fon之前同时和非接种的控制。 PI 296 341-FR接种着FON比赛2,有或没有M.Inmognita接种。 N incognita的存在增强了所有西瓜基因型对镰刀菌枯萎的易感性。与M.Incognita共同接种导致枯萎病症的早期发展和疾病严重程度增加。在所有线虫接种植物的根部上观察到胆汁,并与其他接种方法相比,在线虫后跟线虫的连续接种产生。然而,单独接受线虫未降低植物生长,当幼苗接种两种病原体时,生长抑制是显而易见的。结果表明,M.Incognita可以提高抗性西瓜基因型对各自的FON种族的易感性,仅单独的宿主阻力是不足以管理用根结线虫侵染的土壤中西瓜的镰刀菌枯萎。

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