首页> 外文期刊>Journal of Plant Protection Research >The reaction of tomato plants carrying Mi-1 geneto different inoculation densities of Meloidogyne incognita(Kofoid and White, 1919) Chitwood, 1949
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The reaction of tomato plants carrying Mi-1 geneto different inoculation densities of Meloidogyne incognita(Kofoid and White, 1919) Chitwood, 1949

机译:番茄植物的反应携带MI-1 Geneto不同的Meloidogyne Incognita(Kofoid和White,1919)Chitwood,1949年

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摘要

The response of the Mi-1 gene to different densities of Meloidogyne incognita race 2 was investigated under controlled conditions. Susceptible and resistant tomato seedlings were inoculated with 25, 50, 100, 200, 400, 1000, 2000, 5000 and 10 000 second-stage juveniles of M. incognita. Plants were uprooted 8 weeks after inoculation and the numbers of egg masses and galls on the roots, and second-stage juveniles in 100 g soil per pot were counted. In susceptible plants, there was a correlation betweenthe number of egg masses on roots until 2000 J2 inoculum densities. In resistant plants, when inoculum densities increased, the number of egg masses and galls also increased. The reproduction factor ratio was >1 in the susceptible plant and <1 in the resistant plant. The data showed that the 5000 J2 inoculum was a critical limit, and 10 00012s were above threshold for resistant plants. The data indicate that densities of M. incognita can seriously affect the performance of the Mi-1 gene.
机译:在受控条件下研究了MI-1基因对Meloidogyne Incognita Race 2不同密度的响应。 用25,50,100,20,400,1000,2000,5000和10 000次阶段幼苗接种易感和抗性番茄幼苗。 在接种后8周拔除植物,并在根部的卵黄物和羊群上含有鸡蛋的数量,每壶100g土壤中的第二阶段幼年液。 在易感植物中,在根系上的卵块数量之间存在相关性,直至2000年J2接种物密度。 当接种物密度增加时,抗植物,蛋壳的数量也增加。 易受植物中的再现因子比> 1在抗性植物中的<1。 数据显示,5000 J2接种物是临界极限,并且10 00012S高于耐药植物的阈值。 数据表明M.Incognita的密度可以严重影响MI-1基因的性能。

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