首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Genetic mapping of a barley leaf rust resistance gene Rph26 introgressed from Hordeum bulbosum
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Genetic mapping of a barley leaf rust resistance gene Rph26 introgressed from Hordeum bulbosum

机译:大麦叶锈病基因RPH26的遗传映射来自部落泛骨

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Key messageThe quantitative barley leaf rust resistance gene, Rph26, was fine mapped within a H. bulbosum introgression on barley chromosome 1HL. This provides the tools for pyramiding with other resistance genes.AbstractA novel quantitative resistance gene, Rph26, effective against barley leaf rust (Puccinia hordei) was introgressed from Hordeum bulbosum into the barley (Hordeum vulgare) cultivar Emir'. The effect of Rph26 was to reduce the observed symptoms of leaf rust infection (uredinium number and infection type). In addition, this resistance also increased the fungal latency period and reduced the fungal biomass within infected leaves. The resulting introgression line 200A12, containing Rph26, was backcrossed to its barley parental cultivar Emir' to create an F-2 population focused on detecting interspecific recombination within the introgressed segment. A total of 1368 individuals from this F-2 population were genotyped with flanking markers at either end of the 1HL introgression, resulting in the identification of 19 genotypes, which had undergone interspecific recombination within the original introgression. F-3 seeds that were homozygous for the introgressions of reduced size were selected from each F-2 recombinant and were used for subsequent genotyping and phenotyping. Rph26 was genetically mapped to the proximal end of the introgressed segment located at the distal end of chromosome 1HL. Molecular markers closely linked to Rph26 were identified and will enable this disease resistance gene to be combined with other sources of quantitative resistance to maximize the effectiveness and durability of leaf rust resistance in barley breeding. Heterozygous genotypes containing a single copy of Rph26 had an intermediate phenotype when compared with the homozygous resistant and susceptible genotypes, indicating an incompletely dominant inheritance.
机译:钥匙梅吉特定量大麦叶防锈基因RPH26,在大麦染色体1HL上的H. tulbosum隙中映射。这提供了与其他抗性基因的金属间隙的工具.Abstracta新的定量抗性基因,RPH26,对大麦叶锈病(PUCCINIA HORDEI)有效地从部落鳞茎中血小肿进入大麦(Hordeum Vulgare)MADIL'EMIR'。 RPH26的效果是减少观察到的叶片锈病感染症状(尿道数量和感染型)。此外,这种抗性也增加了真菌潜伏期,并降低了感染叶片内的真菌生物量。含有RPH26的得到的斜突线200a12被回交至其大麦父母品种Emir'以产生重点是检测狭窄细分内的间隙重组的F-2种群。来自此F-2种群的总共1368个个体在1HL迟发的两端进行了基因分型,导致鉴定了19个基因型,该基因型在原始血栓增收内经过各种各样的重组。从每个F-2重组中选择纯合的纯合的F-3种子,并用于随后的基因分型和表型。 RPH26被遗传地映射到位于染色体1HL远端的狭窄段的近端。鉴定了与RPH26密切相关的分子标记,并将这种抗病基因与其他定量抗性的源相结合,以最大限度地提高大麦育种中叶片锈蚀的有效性和耐久性。含有单拷贝的RPH26含有单拷贝的杂合子基因型在与纯合的抗性和敏感的基因型相比时具有中间表型,表明遗传不完全显着。

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