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Lr80: A new and widely effective source of leaf rust resistance of wheat for enhancing diversity of resistance among modern cultivars

机译:LR80:小麦叶片锈病抗性的新且广泛有效源,以提高现代品种抗性的多样性

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摘要

Common wheat landrace Hango-2, collected in 2006 from the Himalayan area of Hango, District Kinnaur, in Himachal Pradesh, exhibited a very low infection type (IT;) at the seedling stage to all Indian Puccinia triticina (Pt) pathotypes, except the pathotype 5R9-7 which produced IT 3(+). Genetic analysis based on Agra Local/Hango-2-derived F-3 families indicated monogenic control of leaf rust resistance, and the underlying locus was temporarily named LrH2. Bulked segregant analysis using 303 simple sequence repeat (SSR) markers located LrH2 in the short arm of chromosome 2D. An additional set of 10 chromosome 2DS-specific markers showed polymorphism between the parents and these were mapped on the entire Agra Local/Hango-2 F-3 population. LrH2 was flanked by markers cau96 (distally) and barc124 (proximally). The 90 K Infinium SNP array was used to identify SNP markers linked with LrH2. Markers KASP_17425 and KASP_17148 showed association with LrH2. Comparison of seedling leaf rust response data and marker locations across different maps demonstrated the uniqueness of LrH2 and it was formally named Lr80. The Lr80-linked markers KASP_17425, KASP_17148 and barc124 amplified alleles/products different to Hango-2 in 82 Australian cultivars indicating their robustness for marker-assisted selection of this gene in wheat breeding programs.
机译:普通小麦长白Hango-2于2006年从喜马拉雅山喜马拉雅地区Himachal Pradesh Kinnaur区的Hango采集,表现出非常低的感染类型(IT;)在苗期,除产生3(+)的致病型5R9-7外,所有印度小麦叶锈菌(Pt)致病型均为阳性。基于Agra Local/Hango-2衍生的F-3家族的遗传分析表明,叶锈病抗性是单基因控制的,潜在位点暂时命名为LrH2。使用303个简单序列重复(SSR)标记进行大规模分离分析,将LrH2定位在2D染色体短臂上。另外一组10个2DS染色体特异性标记显示了亲本之间的多态性,并在整个Agra Local/Hango-2F-3群体中进行了定位。LrH2两侧有标记cau96(远端)和barc124(近端)。90 K Infinium SNP阵列用于识别与LrH2相关的SNP标记。标记KASP_17425和KASP_17148与LrH2相关。通过比较不同地图上的幼苗叶锈病反应数据和标记位置,证明了LrH2的独特性,并正式命名为Lr80。Lr80连锁标记KASP_17425、KASP_17148和barc124在82个澳大利亚品种中扩增了不同于Hango-2的等位基因/产物,表明它们在小麦育种项目中对该基因的标记辅助选择具有鲁棒性。

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    Indian Council Agr Res ICAR Indian Inst Wheat &

    Barley Res Reg Stn Shimla 171002 Himachal Prades India;

    Indian Council Agr Res ICAR Indian Inst Wheat &

    Barley Res Reg Stn Shimla 171002 Himachal Prades India;

    Indian Council Agr Res ICAR Indian Inst Wheat &

    Barley Res Reg Stn Shimla 171002 Himachal Prades India;

    Univ Sydney Plant Breeding Inst Fac Sci Sch Life Sci 107 Cobbitty Rd Sydney NSW 2570 Australia;

    Ctr AgriBiosci AgriBio Agr Victoria 5 Ring Rd Bundoora Vic 3083 Australia;

    Indian Agr Res Inst Reg Stn Indian Council Agr Res ICAR Nilgiris 643231 Tamil Nadu India;

    Indian Council Agr Res ICAR Indian Inst Wheat &

    Barley Res Reg Stn Shimla 171002 Himachal Prades India;

    Indian Council Agr Res ICAR Indian Inst Wheat &

    Barley Res Reg Stn Shimla 171002 Himachal Prades India;

    Univ Sydney Plant Breeding Inst Fac Sci Sch Life Sci 107 Cobbitty Rd Sydney NSW 2570 Australia;

    Indian Council Agr Res ICAR Indian Inst Wheat &

    Barley Res Karnal 132001 Haryana India;

    Indian Council Agr Res ICAR Indian Inst Wheat &

    Barley Res Reg Stn Shimla 171002 Himachal Prades India;

    Indian Council Agr Res ICAR Indian Inst Wheat &

    Barley Res Reg Stn Shimla 171002 Himachal Prades India;

    Ctr AgriBiosci AgriBio Agr Victoria 5 Ring Rd Bundoora Vic 3083 Australia;

    Univ Sydney Plant Breeding Inst Fac Sci Sch Life Sci 107 Cobbitty Rd Sydney NSW 2570 Australia;

    Univ Sydney Plant Breeding Inst Fac Sci Sch Life Sci 107 Cobbitty Rd Sydney NSW 2570 Australia;

    Univ Sydney Plant Breeding Inst Fac Sci Sch Life Sci 107 Cobbitty Rd Sydney NSW 2570 Australia;

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