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首页> 外文期刊>Plant Disease >Methods for the Quantification of Resistance of Apple Genotypes to European Fruit Tree Canker Caused by Neonectria ditissima
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Methods for the Quantification of Resistance of Apple Genotypes to European Fruit Tree Canker Caused by Neonectria ditissima

机译:苹果基因型对欧洲果树溃疡的定量抗性的方法,由NeoNectria ditissima引起

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摘要

European fruit tree canker, caused by Neonectria ditissima, is an important disease of pome fruit worldwide. Apple cultivars differ in their levels of susceptibility to N. ditissima. In order to design an effective plant resistance test, we examined the effectiveness of two resistance parameters: infection frequency and lesion growth. Both parameters were evaluated in parallel tests using 10 apple cultivars in three experimental years, applying seminatural infection of leaf scars (infection frequency) or inoculation of artificial wounds (lesion growth). We compared six parameters for lesion growth, of which a new parameter, lesion growth rate (LGR), appeared to be the best with respect to reproducibility and statistical significance. LGR is defined as the slope of the regression of lesion size versus time. The slope was estimated for each lesion, employing a common start date and a lesion-specific end date determined by the girdling of the lesion. The two parameters (infection frequency and LGR) were examined in separate experiments and in three successive years, and provided complementary information and resulted in reproducible conclusions on the relative resistance levels to N. ditissima of the tested cultivars. The presented methods can be used to develop strategies for the control of European fruit tree canker (e.g., in the breeding of new apple cultivars with high levels of resistance to N. ditissima).
机译:由Neonectria Ditissima引起的欧洲果树溃疡是全球沼泽水果的重要疾病。苹果品种对N. ditissima的易感程度不同。为了设计有效的植物抗性测试,我们检查了两种抗性参数的有效性:感染频率和病变生长。在三个实验岁月中使用10个苹果品种在并行试验中评估两种参数,应用叶片疤痕(感染频率)或接种人工伤口(病变生长)。我们比较了六个参数的病变生长,其中新参数,病变生长速率(LGR)似乎是对重现性和统计学意义的最佳。 LGR被定义为病变大小与时间的回归的斜率。估计每个病变的斜率,采用共同的开始日期和由病变的Girdling确定的特定病变特定的结束日期。在单独的实验中检查了两种参数(感染频率和LGR),并在三个连续的年份中进行了互补信息,并导致测试品种的N. ditissima的相对抗性水平可重复结论。本发明的方法可用于制定欧洲果树溃疡的控制策略(例如,在具有高耐受N. ditissima的新苹果品种的繁殖中)。

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    《Plant Disease》 |2017年第12期|共8页
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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物保护;
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