首页> 外文期刊>Phytopathology >Four Consistent Loci Confer Adult Plant Resistance to Leaf Rust in the Durum Wheat Lines Heller#1 and Dunkler
【24h】

Four Consistent Loci Confer Adult Plant Resistance to Leaf Rust in the Durum Wheat Lines Heller#1 and Dunkler

机译:四个一致的基因座赋予成年植物抗叶锈病杜兰姆小麦线条Heller#1和Dunkler

获取原文
获取原文并翻译 | 示例
           

摘要

The durum wheat lines Heller#1 and Dunkler from the International Maize and Wheat Improvement Center Global Wheat Program showed moderate and stable adult plant resistance to leaf rust under high disease pressure over field environments in northwestern Mexico. Leaf rust phenotyping was performed on two recombinant inbred line (RIL) populations derived from crosses of Heller#1 and Dunkler with the susceptible parent Atred#2, conducted under artificially induced Puccinia triticina epidemics in 2013, 2014, 2015, and 2016. The Atred#2 x Heller#1 and Atred#2 x Dunkler populations were genotyped by single nucleotide polymorphism (SNP) platforms and diversity arrays technology markers, respectively. Four leaf rust resistance quantitative trait loci were detected simultaneously in the two RIL populations: Lr46, QLr.cim2BC, QLr.cim-5BL, and QLr.cim-6BL based on phenotypic data across all four crop seasons. They explained 11.7 to 46.8%, 7.2 to 26.1%, 8.4 to 24.1%, and 12.4 to 28.5%, respectively, of the phenotypic variation for leaf rust resistance in Atred#2 x Heller#1 and 16.3 to 56.6%, 6.7 to 15.7%, 4.1 to 10.1%, and 5.1 to 20.2% of the variation in the Atred#2 x Dunkler population. Only the resistance allele of QLr.cim-2BC was from the susceptible parent Atred#2, and resistance alleles at other loci came from the resistant parents Heller#1 and Dunkler. The SNP markers closely linked to Lr46 and QLr.cim-2BC were converted to kompetitive allele specific PCR markers for use in marker-assisted selection to improve leaf rust resistance through crosses with Heller#1 and Dunkler sources.
机译:杜兰姆小麦线条Heller#1和来自国际玉米和小麦改善中心的Dunkler全球小麦计划表明,在墨西哥西北部的高疾病压力下,在高疾病压力下对叶锈病的中度和稳定的成人植物抵抗力。在2013年,2013年,2014年,2015年和2016年,在2013年,2014年,2016年和2016年的两种重组母亲ATRED#2中衍生自过Heller#1和Dunkler的两次重组近交线(RIL)群体进行了源于Heller#1和Dunkler的群体群体。 #2 x Heller#1和Atred#2 x Dunkler群体分别由单核苷酸多态性(SNP)平台和多样性阵列技术标记进行基因分型。在两个RIL群体中同时检测到四片锈蚀定量性状轨迹:LR46,QLR.CIM2BC,QLR.CIM-5BL和QLR.CIM-6BL,基于所有四种作物季节的表型数据。他们分别向11.7%至46.8%,7.2%至26.1%,8.4%至24.1%,分别为12.4至28.5%,对叶子铁锈抗性的表型变异#2 x Heller#1和16.3至56.6%,6.7至15.7 %,4.1%至10.1%,5.1至20.2%的Atred#2 x Dunkler人口的变化。只有QLR.CIM-2BC的阻力等位基因来自易感父母ATRED#2,其他基因座的阻力等位基因来自耐药的父母Helder#1和Dunkler。与LR46和QLR.CIM-2BC紧密相关的SNP标记转化为KMPETITIVE等位基因特异性PCR标记,以用于标记辅助选择,以通过与Heller#1和Dunkler来源交叉来改善叶子锈蚀。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号