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首页> 外文期刊>HortScience >Effect of Detergent on the Quantification of Grapevine Downy Mildew Sporangia from Leaf Discs
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Effect of Detergent on the Quantification of Grapevine Downy Mildew Sporangia from Leaf Discs

机译:洗涤剂对叶圆盘葡萄霜霉菌孢子囊定量的影响

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Grapevine downy mildew (DM), caused by the oomycete Plasmopara viticola (Berk. & Curt.) Berlese & de Toni, is a major disease, especially in humid viticultural areas. Development of resistant cultivars is an important objective for grapevine breeding. To establish a reliable and inexpensive quantitative method to aid in breeding for DM resistance, we improved the method for counting the number of sporangia on leaf discs, and developed a method for counting the number of sporangia in solution. To prevent the loss of DM sporangia from adhesion onto plastic ware, we found as little as 0.01% Tween 20 was effective. On the other hand, this detergent was shown to have a severe inhibitory effect upon DM infection a leaves. We developed a sporangia counting method using dried droplets of DM suspensions, and the method was highly correlated with counting by hemacytometer (R-2>0.96). The nonparametric Spearman's rank correlations between visual rating and the number of the sporangia were as high as rho = 0.82 to 0.91, suggesting that evaluation by the visual rating could provide a good estimate of the sporangia numbers on leaf discs. We established a high-throughput and inexpensive method with acceptable accuracy for DM resistance evaluation based on a leaf disc assay, and our results suggested that visual ratings of infected leaf discs provide a good estimate of sporangia numbers.
机译:葡萄霜霉病(DM)是由卵菌的Plasmopara viticola(Berk。&Curt。)Berlese&de Toni引起的,是一种主要疾病,尤其是在潮湿的葡萄栽培区。抗性品种的发展是葡萄育种的重要目标。为了建立一种可靠且廉价的定量方法来辅助DM抗性育种,我们改进了计算叶盘上孢子囊数量的方法,并开发了一种计算溶液中孢子囊数量的方法。为了防止因粘附在塑料制品上而导致DM孢子囊丢失,我们发现只有0.01%的Tween 20有效。另一方面,该洗涤剂显示出对DM感染叶片具有严重的抑制作用。我们开发了使用干燥的DM悬浮液液滴的孢子囊计数方法,该方法与血细胞计数器计数高度相关(R-2> 0.96)。视觉评级与孢子囊数量之间的非参数Spearman等级相关性高达rho = 0.82至0.91,这表明通过视觉评级进行评估可以很好地估计叶盘上的孢子囊数量。我们建立了一种高通量,价格便宜的方法,基于叶盘测定法,其抗药性评估具有可接受的准确度,我们的结果表明,感染叶盘的目视等级可以很好地估计孢子囊数量。

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