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首页> 外文期刊>Euphytica >Localisation and combination of resistance genes against soil-borne viruses of barley (BaMMV, BaYMV) using doubled haploids and molecular markers
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Localisation and combination of resistance genes against soil-borne viruses of barley (BaMMV, BaYMV) using doubled haploids and molecular markers

机译:利用双倍单倍体和分子标记对大麦土壤传播病毒(BaMMV,BaYMV)的抗性基因进行定位和组合

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摘要

Barley yellow mosaic virus disease caused by different strains of BaYMV and BaMMV is a major threat to winter barley cultivation in Europe. Different resistance genes against these viruses have been mapped and suitable PCR-based markers have been developed. In this respect doubled haploid (DH) populations proved to be advantageous as they facilitate a repeated test for resistance against all agents of the barley yellow mosaic virus complex and besides this, dominant marker systems are as informative as co-dominant ones in DHs due to the lack of heterozygous genotypes. Using DH populations resistance genes rym4, rym5, rym11, rym13, rym15 and the BaYMV/BaYMV-2 resistance of the barley cultivar ‘Chikurin Ibaraki 1’ have been mapped. DHs are also well suited to pyramiding resistance genes against BaMMV and BaYMV. Since homozygous recessive genotypes are more frequent in DHs than in segregating F2 populations, DHs can be efficiently used to create broad-spectrum resistance and to extend the usability of partly overcome resistance genes. Results from employing two different strategies for pyramiding, based on one and two DH-steps, respectively, combining three recessive resistance genes, i.e. rym4/rym5, rym9 and rym11, are presented. The faster strategy based on one haploidy step resulted in the identification of all three and two-way combinations of the respective resistance genes.
机译:由BaYMV和BaMMV不同菌株引起的大麦黄色花叶病毒病是欧洲冬季大麦栽培的主要威胁。已经绘制了针对这些病毒的不同抗性基因,并开发了合适​​的基于PCR的标记。在这方面,双倍单倍体(DH)群体被证明是有利的,因为它们促进了对大麦黄花叶病毒复合体的所有因子的抗性的重复测试,此外,由于缺乏杂合基因型。利用DH群体,绘制了大麦品种“ Chikurin Ibaraki 1”的抗性基因rym4,rym5,rym11,rym13,rym15和BaYMV / BaYMV-2抗性。 DH也非常适合于金字塔形针对BaMMV和BaYMV的抗性基因。由于纯合的隐性基因型在DHs中比在分离F2 群体中更为常见,因此DHs可有效地用于产生广谱抗性并扩展部分克服抗性基因的可用性。给出了分别基于一个和两个DH步骤,结合三个隐性抗性基因rym4 / rym5,rym9和rym11采取两种不同的金字塔策略的结果。基于一个单倍体步骤的更快策略导致鉴定了各个抗性基因的所有三种和双向组合。

著录项

  • 来源
    《Euphytica》 |2007年第3期|323-329|共7页
  • 作者单位

    Institute of Crop Science and Plant Breeding I Justus-Liebig-University Heinrich-Buff-Ring 26-32 35392 Giessen Germany;

    Institute of Crop Science and Plant Breeding I Justus-Liebig-University Heinrich-Buff-Ring 26-32 35392 Giessen Germany;

    Institute of Epidemiology and Resistance Resources Federal Centre for Breeding Research on Cultivated Plants Theodor-Roemer-Weg 4 06449 Aschersleben Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Barley (Hordeum vulgare L.); Doubled haploids (DHs); BaMMV; BaYMV; Resistance; Molecular markers; Pyramiding;

    机译:大麦;双倍体单倍体(DHs);BaMMV;BaYMV;抗性;分子标记;金字塔;

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