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首页> 外文期刊>Euphytica >Allelic variation for the rust resistance gene Lr34/Yr18 in Canadian wheat cultivars
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Allelic variation for the rust resistance gene Lr34/Yr18 in Canadian wheat cultivars

机译:加拿大小麦品种抗锈基因Lr34 / Yr18的等位基因变异

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摘要

The wheat (Triticum aestivum L.) gene Lr34/Yr18 conditions resistance to leaf rust, stripe rust, and stem rust, along with other diseases such as powdery mildew. This makes it one of the most important genes in wheat. In Canada, Lr34 has provided effective leaf rust resistance since it was first incorporated into the cultivar Glenlea, registered in 1972. Recently, molecular markers were discovered that are either closely linked to this locus, or contained within the gene. Canadian wheat cultivars released from 1900 to 2007, breeding lines and related parental lines, were tested for sequence based markers caSNP12, caIND11, caIND10, caSNP4, microsatellite markers wms1220, cam11, csLVMS1, swm10, csLV34, and insertion site based polymorphism marker caISBP1. Thirty different molecular marker haplotypes were found among the 375 lines tested; 5 haplotypes had the resistance allele for Lr34, and 25 haplotypes had a susceptibility allele at this locus. The numbers of lines in each haplotype group varied from 1 to 140. The largest group was represented by the leaf rust susceptible cultivar “Thatcher” and many lines derived from “Thatcher”. The 5 haplotypes that had the resistance allele for Lr34 were identical for the markers tested within the coding region of the gene but differed in the linked markers wms1220, caISBP1, cam11, and csLV34. The presence of the resistance or susceptibility allele at the Lr34 locus was tracked through the ancestries of the Canadian wheat classes, revealing that the resistance allele was present in many cultivars released since the 1970s, but not generally in the older cultivars.
机译:小麦(Triticum aestivum L.)基因Lr34 / Yr18可以抵抗叶锈病,条锈病和茎锈病,以及其他疾病,例如白粉病。这使其成为小麦中最重要的基因之一。在加拿大,Lr34自1972年首次注册到品种Glenlea以来就提供了有效的叶锈病抗性。最近,人们发现与该基因座紧密相关或包含在该基因中的分子标记。对1900年至2007年发布的加拿大小麦品种,育种系和相关亲本系进行了基于序列的标记caSNP12,caIND11,caIND10,caSNP4,微卫星标记wms1220,cam11,csLVMS1,swm10,csLV34和基于插入位点的多态性标记caISBP1的测试。在375个受试品系中发现了30种不同的分子标记单倍型。 5个单倍型具有针对Lr34的抗性等位基因,而25个单倍型在该基因座具有易感性等位基因。每个单倍型组的品系数从1到140不等。最大的组由易受叶锈病影响的品种“ Thatcher”和许多衍生自“ Thatcher”的品系代表。对于Lr34具有抗性等位基因的5个单倍型在该基因的编码区内测试的标记是相同的,但在链接的标记wms1220,caISBP1,cam11和csLV34上却有所不同。通过加拿大小麦种系的祖先追踪了Lr34基因座上抗药性或易感性等位基因的存在,揭示了抗药性等位基因存在于1970年代以来释放的许多品种中,但一般不存在于较早的品种中。

著录项

  • 来源
    《Euphytica》 |2012年第2期|p.261-274|共14页
  • 作者单位

    Cereal Research Centre, Agriculture and Agri-Food Canada, 195 Dafoe Road, Winnipeg, MB, R3T 2M9, Canada;

    Cereal Research Centre, Agriculture and Agri-Food Canada, 195 Dafoe Road, Winnipeg, MB, R3T 2M9, Canada;

    Vineland Research and Innovation Centre, 4890 Victoria Avenue N, PO Box 4000, Vineland Station, ON, L0R 2E0, Canada;

    Cereal Research Centre, Agriculture and Agri-Food Canada, 195 Dafoe Road, Winnipeg, MB, R3T 2M9, Canada;

    Cereal Research Centre, Agriculture and Agri-Food Canada, 195 Dafoe Road, Winnipeg, MB, R3T 2M9, Canada;

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

    Brown rust; Slow rusting; Adult plant resistance;

    机译:褐锈病;慢锈病;成年植物抗性;

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