首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Genetic mapping of a putative Thinopyrum intermedium-derived stripe rust resistance gene on wheat chromosome 1B
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Genetic mapping of a putative Thinopyrum intermedium-derived stripe rust resistance gene on wheat chromosome 1B

机译:小麦1B染色体上推定的中等产麦草的抗条锈基因的遗传图谱

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摘要

Stripe rust resistance transferred from Thinopyrum intermedium into common wheat was controlled by a single dominant gene, which mapped to chromosome 1B near Yr26 and was designated YrL693. Stripe rust caused by Puccinia striiformis f. sp. tritici (Pst) is a highly destructive disease of wheat (Triticum aestivum). Stripe rust resistance was transferred from Thinopyrum intermedium to common wheat, and the resulting introgression line (L693) exhibited all-stage resistance to the widely virulent and predominant Chinese pathotypes CYR32 and CYR33 and to the new virulent pathotype V26. There was no cytological evidence that L693 had alien chromosomal segments from Th. intermedium. Genetic analysis of stripe rust resistance was performed by crossing L693 with the susceptible line L661. F-1, F-2, and F-2:3 populations from reciprocal crosses showed that resistance was controlled by a single dominant gene. A total 479 F-2:3 lines and 781 pairs of genomic simple sequence repeat (SSR) primers were employed to determine the chromosomal location of the resistance gene. The gene was linked to six publicly available and three recently developed wheat genomic SSR markers. The linked markers were localized to wheat chromosome 1B using Chinese Spring nulli-tetrasomic lines, and the resistance gene was localized to chromosome 1B based on SSR and wheat genomic information. A high-density genetic map was also produced. The pedigree, molecular marker data, and resistance response indicated that the stripe rust resistance gene in L693 is a novel gene, which was temporarily designated YrL693. The SSR markers that co-segregate with this gene (Xbarc187-1B, Xbarc187-1B-1, Xgwm18-1B, and Xgwm11-1B) have potential application in marker-assisted breeding of wheat, and YrL693 will be useful for broadening the genetic basis of stripe rust resistance in wheat.
机译:从中间Thin麦草转移到普通小麦中的抗条锈病由一个显性基因控制,该基因定位于Yr26附近的染色体1B,命名为YrL693。条锈菌引起的条锈病f。 sp。小麦(Pst)是小麦(Triticum aestivum)的高度破坏性疾病。条纹锈病抗性从中间Thin麦(Thinopyrum intermedium)转移到普通小麦,所得的渗入系(L693)对广泛的强毒和主要中国型CYR32和CYR33以及对新的毒力型V26表现出全阶段抗性。没有细胞学证据表明L693具有来自Th的外来染色体片段。中间的。通过使L693与易感系L661杂交来进行抗条锈性的遗传分析。来自相互杂交的F-1,F-2和F-2:3种群显示抗性由单个显性基因控制。共使用479条F-2:3品系和781对基因组简单序列重复(SSR)引物来确定抗性基因的染色体位置。该基因与六个公众可获得的基因和三个最近开发的小麦基因组SSR标记相关。利用中国春零-四体遗传系将连锁标记定位于小麦1B染色体,基于SSR和小麦基因组信息,将抗性基因定位于1B染色体。还绘制了高密度遗传图。谱系,分子标记数据和抗性反应表明,L693中的条锈病抗性基因是一个新基因,暂时称为YrL693。与该基因共同分离的SSR标记(Xbarc187-1B,Xbarc187-1B-1,Xgwm18-1B和Xgwm11-1B)在小麦的标记辅助育种中具有潜在的应用前景,YrL693将有助于拓宽遗传条纹抗锈病的基础。

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