首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Mapping and characterization of two stem rust resistance genes derived from cultivated emmer wheat accession PI 193883
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Mapping and characterization of two stem rust resistance genes derived from cultivated emmer wheat accession PI 193883

机译:培养型辐射麦片加入PI 193883源自玉米锈病基因的测绘与表征

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The wheat research community consistently strives to identify new genes that confer resistance to stem rust caused by the fungal pathogen Puccinia graminis f. sp. tritici Eriks & E. Henn (Pgt). In the current study, our objective was to identify and genetically characterize the stem rust resistance derived from the cultivated emmer accession PI 193883. A recombinant inbred line population developed from a cross between the susceptible durum wheat line Rusty and PI 193883 was genotyped and evaluated for reaction to Pgt races TTKSK, TRTTF, and TMLKC. Two QTLs conferring resistance were identified on chromosome arms 2BL (QSr.fcu-2B) and 6AL (QSr.fcu-6A). The stem rust resistance gene (Sr883-2B) underlying QSr.fcu-2B was recessive, and based on its physical location it is located proximal to the Sr9 region. QSr.fcu-6A was located in the Sr13 region, but PI 193883 is known to carry the susceptible haplotype S4 for Sr13, indicating that the gene underlying QSr.fcu-6A (Sr883-6A) is likely a new allele of Sr13 or a gene residing close to Sr13. Three IWGSC scaffold-based simple sequence repeat (SSR) and two SNP-based semi-thermal asymmetric reverse PCR (STARP) markers were developed for the Sr883-2B region, and one STARP marker was developed for Sr883-6A. Sr883-2B was epistatic to Sr883-6A for reaction to TTKSK and TRTTF, and the two genes had additive effects for TMLKC. These two genes and the markers developed in this research provide additional resources and tools for the improvement in stem rust resistance in durum and common wheat breeding programs.
机译:小麦研究界一直致力于识别赋予由真菌病原体普拉霉菌F引起的抗杆锈病抗性的新基因。 SP。 Tritici Eriks& E. Henn(PGT)。在目前的研究中,我们的目标是识别和遗传表征培养的emmer摘录PI 193883的茎耐锈抗性。从易感硬质小麦线生锈和PI 193883之间的交叉产生的重组近交系群体进行了基因分型和评估对PGT种族TTKSK,TRTTF和TMLKC的反应。在染色体臂2bl(qsr.fcu-2b)和6al(qsr.fcu-6a)上鉴定出赋予抵抗的两个qt1s。茎锈病基因(SR883-2B)下面的QSR.FCU-2B是隐性的,并且基于其物理位置,它位于SR9区域的近端。 QSR.FCU-6A位于SR13区域中,但已知PI 193883用于SR13携带易感单倍型S4,表明QSR.FCU-6a(SR883-6A)的基因可能是SR13或A的新等位基因基因居住靠近SR13。为SR883-2B区域开发了三种基于IWGSC的基于支架的简单序列重复(SSR)和两个SNP基半热不对称PCR(Starp)标记,并为SR883-6A开发了一个星形标记物。 SR883-2B是对TTKSK和TRTTF的反应的认证至SR883-6A,两种基因对TMLKC具有添加剂效应。这项研究中发育的这两个基因和标记提供了额外的资源和工具,用于改善杜兰姆和普通小麦养殖计划中的茎锈病抗性。

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