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DNA marker-assisted evaluation of potato genotypes for potential resistance to potato cyst nematode pathotypes not yet invading into Japan

机译:DNA标记辅助评估马铃薯基因型对尚未入侵日本的马铃薯孢囊线虫病潜在抗性

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One of major objectives of crop breeding is conferring resistance to diseases and pests. However, large-scale phenotypic evaluation for many diseases and pests is difficult because strict controls are required to prevent their spread. Detection of disease resistance genes by using DNA markers may be an alternative approach to select potentially resistant accessions. Potato ( Solanum tuberosum L.) breeders in Japan extensively use resistance gene H1 , which confers nearly absolute resistance to potato cyst nematode ( Globodera rostochiensis ) pathotype Ro1, the only pathotype found in Japan. However, considering the possibility of accidental introduction of the other pathotypes, breeding of resistant varieties is an important strategy to prevent infestation by non-invading pathotypes in Japan. In this study, to evaluate the prevalence of resistance genes in Japanese genetic resources, we developed a multiplex PCR method that simultaneously detects 3 resistance genes, H1 , Gpa2 and Gro1-4 . We revealed that many Japanese varieties possess not only H1 but Gpa2 , which are potentially resistant to other pathotypes of potato cyst nematode. On the other hand, no genotype was found to have the Gro1-4 , indicating importance of introduction of varieties having Gro1-4 . Our results demonstrate the applicability of DNA-marker assisted evaluation of resistant potato genotypes without phenotypic evaluation.
机译:作物育种的主要目标之一是赋予对病虫害的抗性。但是,由于需要严格的控制以防止其扩散,因此很难对许多疾病和害虫进行大规模的表型评估。通过使用DNA标记检测疾病抗性基因可能是选择潜在抗性种质的另一种方法。日本的马铃薯(Solanum tuberosum L.)育种者广泛使用抗性基因H1,该基因赋予马铃薯囊虫线虫(Globodera rostochiensis)致病型Ro1几乎绝对的抗性,这是日本唯一的致病型。但是,考虑到可能会偶然引入其他病原体,在日本,抗病品种的育种是防止非病原体侵染的重要策略。在这项研究中,为评估抗性基因在日本遗传资源中的普遍性,我们开发了一种多重PCR方法,该方法可同时检测3种抗性基因H1,Gpa2和Gro1-4。我们发现许多日本品种不仅拥有H1,而且拥有Gpa2,这可能对马铃薯囊肿线虫的其他病原体具有抗性。另一方面,未发现具有Gro1-4的基因型,这表明引入具有Gro1-4的品种的重要性。我们的结果证明了无需表型评估的DNA标记辅助评估抗性马铃薯基因型的适用性。

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