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首页> 外文期刊>Australian Journal of Crop Science >Identification of sources of resistance to damping-off (Rhizoctonia solani) in two phenological phases of watermelon
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Identification of sources of resistance to damping-off (Rhizoctonia solani) in two phenological phases of watermelon

机译:确定西瓜两个物候期对阻尼的抗性来源(Rhizoctonia solani)

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Sources of resistance to damping-off caused by Rhizoctonia solani were researched in watermelon accessions, in which thirty accessions were inoculated in two phenological phases (at seeding and seedling stages). The completely randomized design with five replications per accession was used in both phenological stages. The inoculation in seeding stage was carried out at the time of sowing, while for seedling the inoculation was done 15 days after sowing. In both stages the evaluation occurred 15 days after inoculation using a rating scale. At seeding stage, six accessions were moderately resistant to CMM-2967 of R. solani. However, no accession resistant to CMM-1053 and CMM-1052 isolates was recognized. Three accessions were resistant to CMM-1053 at the seedling stage. Posteriorly, inoculation was carried out using only accessions classified as resistant in the previous evaluations using both phenological stages. For CMM-1053, factorial scheme of 2x4 were used (two stages and four accessions). For assessments against isolate CMM-2967 a factorial scheme of 2x12 (two stages and 12 accessions) was used. We confirmed the results of first two experiments for both isolates. At seeding stage, all accessions were classified as susceptible to CMM-1053. However, at the seedling stage, only Crimson Swett was susceptible. For the CMM-2967, inoculated at the seeding stage, the accessions were classified into two groups (resistant and susceptible) (Scott-Knott at 5%). At seedling stage there was no statistical difference among eleven accessions and they were all classified as resistant. Due to difficulty of finding sources of resistance to damping off, the method of inoculation at seedling stage showed more efficient for this pathosystem and could facilitate the work of breeders and plant pathologists.
机译:在西瓜种质中研究了由茄根丝枯菌引起的抑制阻尼的来源,其中在两个物候期(播种和幼苗期)接种了三十种种质。在两个物候阶段均使用每个登录重复5次的完全随机设计。播种时在播种时进行接种,而对于幼苗,在播种后15天进行接种。在两个阶段中,均在接种后15天使用等级量表进行评估。在播种期,有六个种质对solani solani的CMM-2967有中等抗性。然而,没有发现对CMM-1053和CMM-1052分离株有抗性。三种种在苗期对CMM-1053具有抗性。之后,仅使用在先前的评估中使用两个物候期的分类为抗性的种质进行接种。对于CMM-1053,使用了2x4的阶乘方案(两个阶段和四个要素)。为了评估分离株CMM-2967,使用了2x12的阶乘方案(两个阶段和12个登录)。我们确认了两个分离株的前两个实验的结果。在播种阶段,所有种质均被分类为对CMM-1053敏感。但是,在苗期,只有深红Swett易感。对于在播种期接种的CMM-2967,将种质分为两组(抗性和易感性)(Scott-Knott,5%)。在苗期,十一个种之间没有统计学差异,它们都被归类为抗性。由于难以找到抗病原的方法,苗期接种方法对该病原系统显示出更高的效率,可促进育种人员和植物病理学家的工作。

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