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首页> 外文期刊>Australasian Plant Pathology >Genetic analysis and molecular mapping of stripe rust resistance genes in Chinese native wheat (Triticum aestivum) Lankao 5
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Genetic analysis and molecular mapping of stripe rust resistance genes in Chinese native wheat (Triticum aestivum) Lankao 5

机译:中国土着小麦条纹锈病基因的遗传分析与分子映射(Triticum Aestivum)Lankao 5

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摘要

Lankao 5 is a common wheat (Triticum aestivum) landrace collected from Henan province, China, which exhibits a high level of resistance to stripe rust (Puccinia striiformis f.sp. tritici, 'Pst') in field trials over many years. To analysegenetic of resistance in Lankao 5, F-1 and F-2 progenies were obtained from a cross between wheat genotypes Lankao 5 and Chinese Spring (CS). Parents, F-1 and F-2 plants, were planted in greenhouse and tested at the seedling stage with Pst races CYR29, CYR30, CYR31, CYR32, Sun11-4, and Sun11-11. Genetic analysis showed that the resistance of Lankao 5 to race CYR30 were conferred independently all by one dominant gene and one recessive gene, independently, resistance to Sun11-11 by one dominant gene, resistance to CYR31, CYR32, and Sun11-4 all by two independent dominant genes, and resistance to CYR29 by two recessive genes of independent action. Using F-2 progenies from crosses between Lankao 5 and a set of 20 CS monosomic lines, the resistance gene in Lankao 5 to Pst race Sun11-11 was cytogenetically located on chromosome 7B. Using 141 F-2 plants and their F-3 generations with 7B specific simple sequence repeat (SSR) markers, a linkage map consisting of five SSR loci and the resistance gene locus YrLk was constructed. The linkage map spanned a genetic distance of 21.6 cM, and the SSR markers Xwmc396 and Xbarc267 were closely linked to YrLk with genetic distances of 3.3 and 4.4 cM, respectively. Analyses of chromosomal positions, reaction types to Pst race, and gene origin suggested that YrLk was very likely a novel resistance gene for stripe rust in wheat. Genetic analysis of the stripe rust resistance gene in Lankao 5 and closely linked markers for YrLk will facilitate the use of resistance in breeding programs to control wheat stripe rust.
机译:Lankao 5是从中国河南省收集的常见小麦(Triticum Aestivum)Landrace,它在多年来,在现场试验中表现出高度的抗条纹锈病(Puccinia Striormis F.Sp.Tritici,'PST')。对于Lankao 5中的抗性的分析生物,F-1和F-2后代是从小麦基因型兰夫5和中国弹簧(CS)之间的交叉中获得的。父母,F-1和F-2植物被种植在温室中,并在幼苗舞台上用PST比赛Cyr29,Cyr30,Cyr31,Cyr32,Sun11-4和Sun11-11进行了测试。遗传分析表明,Lankao 5对种族Cyr30的抗性独立地赋予了一个占主导体基因和一个隐性基因,独立地,抗Sun11-11,通过一个显性基因,抗Cyr31,Cyr32和Sun11-4全部两者独立的显性基因,以及由两种独立作用的两个隐性基因对Cyr29的抵抗力。使用来自Lankao 5和一组20cs单体线之间的F-2后代,Lankao 5至Pst族Sun11-11中的抗性基因在染色体7B上被细胞遗传学。使用141 F-2植物及其F-3世代具有7B特异性简单序列重复(SSR)标记,构建由五个SSR基因座和电阻基因座杆YRLK组成的连杆地图。连杆地图跨越遗传距离为21.6cm,SSR标记XWMC396和Xbarc267分别与Yrlk分别与3.3和4.4cm的遗传距离紧密相连。染色体位置,反应类型对PST种族的分析,以及基因来源表明YRLK非常可能是小麦锈病的新抗性基因。 Lankao 5的条纹抗锈病基因的遗传分析和YRLK的紧密联系标志物将促进使用育种计划的耐药来控制小麦条纹锈蚀。

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