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Effectiveness and environmental stability of quantitative powdery mildew (Blumeria graminis) resistance among winter wheat cultivars

机译:冬小麦品种白粉病定量抗性的有效性和环境稳定性

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Powdery mildew in wheat (Blumeria graminis f. sp. tritici) is a major disease in Northern and Central Europe. The aim of the study was to analyse the effectiveness and environmental stability of quantitative powdery mildew resistance under high epidemic pressure in the field across years in the absence/presence of ineffective race-specific resistances. Cultivars with and without Pm (major) genes were inoculated in three experiments with a genetically broad mildew population with all matching virulences. Resistance was measured three times by assessing the percentage of leaf area covered by powdery mildew on a plot basis (0-100%). Mean powdery mildew severity of the highly susceptible cv. 'Kanzler' varied across 10 years from 24% to 66% (Exp. 1). Means of three cultivars without Pm genes, 'Ramiro', 'Miras' and 'Zentos', and several cultivars with ineffective Pm genes varied quantitatively from 4% to 13%. Environmental stability of the quantitative resistances was on average higher than that of susceptible genotypes, as revealed by a regression approach. In the second experiment, all groups of cultivars with ineffective Pm gene(s) contained a large proportion of entries with a similar low mildew rating as the quantitatively resistant standard 'Miras'. Mildew severity of pairs of cultivars with the same Pm gene(s) was significantly different across 6 years (Exp. 3) indicating the presence of additional quantitative resistances in some of these cultivars. In the analysis of variance, genotypic variance had a high impact (P < 0.01) with low importance of genotype x environment interaction. Consequently, heritabilites were high (0.95-0.97). In conclusion, breeders have already accumulated effective minor genes for powdery mildew resistance in many of the released German winter wheat cultivars. These quantitative resistances are long lasting, environmentally stable and provide a high level of protection to powdery mildew.
机译:小麦中的白粉病(Blumeria graminis f。sp。tritici)是北欧和中欧的主要疾病。这项研究的目的是分析在没有流行的种族特异性抗性存在/不存在的情况下,多年间在高流行压力下定量白粉病抗性的有效性和环境稳定性。在三个实验中,对具有所有匹配毒力的遗传广泛的霉菌种群接种了具有和不具有Pm(主要)基因的品种。通过以图为基础评估白粉病覆盖的叶面积百分比(0-100%)来测量三倍的抗性。高度易感简历的白粉病严重程度的平均值。十年间,“ Kanzler”的变化范围从24%到66%(实验1)。三种没有Pm基因的品种'Ramiro','Miras'和'Zentos'以及几种具有无效Pm基因的品种的平均值在4%至13%之间变化。回归方法显示,定量抗性的环境稳定性平均高于易感基因型。在第二个实验中,所有具有无效Pm基因的品种组都包含大量的具有与定量抗性标准'Miras'相似的低霉变等级的条目。具有相同Pm基因的一对变种的霉病严重程度在6年内有显着差异(实验3),表明其中一些变种还存在其他定量抗性。在方差分析中,基因型方差具有较高的影响(P <0.01),而基因型x环境相互作用的重要性较低。因此,Heritabilite很高(0.95-0.97)。总之,育种者已经在许多已发布的德国冬小麦品种中积累了有效的抗白粉病基因。这些定量抗性持久,环境稳定,并为白粉病提供了高水平的保护。

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