首页> 外文期刊>Journal of genetics >Mapping of stripe rust resistance gene in an Aegilops caudata introgression line in wheat and its genetic association with leaf rust resistance
【24h】

Mapping of stripe rust resistance gene in an Aegilops caudata introgression line in wheat and its genetic association with leaf rust resistance

机译:小麦埃及羊草渗入系条纹抗锈基因的定位及其与叶片抗锈性的遗传关系。

获取原文
       

摘要

A pair of stripe rust and leaf rust resistance genes was introgressed from Aegilops caudata, a nonprogenitor diploid species with the CC genome, to cultivated wheat. Inheritance and genetic mapping of stripe rust resistance gene in backcrossrecombinant inbred line (BC-RIL) population derived from the cross of a wheata€“Ae. caudata introgression line (IL) T291-2(pau16060) with wheat cv. PBW343 is reported here. Segregation of BC-RILs for stripe rust resistance depicted a single major gene conditioning adult plant resistance (APR) with stripe rust reaction varying from TR-20MS in resistant RILs signifying the presence of some minor genes as well. Genetic association with leaf rust resistance revealed that two genes are located at a recombination distance of 13%. IL T291-2 had earlier been reported to carry introgressions on wheat chromosomes 2D, 3D, 4D, 5D, 6D and 7D. Genetic mapping indicated the introgression of stripe rust resistance gene on wheat chromosome 5DS in the region carrying leaf rust resistance gene LrAc, but as an independent introgression. Simple sequence repeat (SSR) and sequence-tagged site (STS) markers designed from the survey sequence data of 5DS enriched the target region harbouring stripe and leaf rust resistance genes. Stripe rust resistance locus, temporarily designated as YrAc, mapped at the distal most end of 5DS linked with a group of four colocated SSRs and two resistance gene analogue (RGA)-STS markers at a distanceof 5.3 cM. LrAc mapped at a distance of 9.0 cM from the YrAc and at 2.8 cM from RGA-STS marker Ta5DS_2737450, YrAc and LrAc appear to be the candidate genes for marker-assisted enrichment of the wheat gene pool for rust resistance.
机译:从具有CC基因组的非祖先二倍体物种Aegilops caudata导入了一对抗条锈和抗叶锈基因到栽培小麦。小麦Ae杂交后代回交重组自交系(BC-RIL)群体中条锈病抗性基因的遗传和遗传定位。具有小麦简历的caudata渗入系(IL)T291-2(pau16060) PBW343在这里报告。分离带状锈病的BC-RILs描绘了一个主要的成年植物抗性(APR)基因,其带锈病反应在抗性RILs中的TR-20MS有所不同,这表明也存在一些次要基因。与叶锈病抗性的遗传关联表明,两个基因的重组距离为13%。先前已经报道了IL T291-2在小麦2D,3D,4D,5D,6D和7D染色体上具有渗入性。遗传作图表明,在带有叶锈病抗性基因LrAc的区域中,小麦5DS染色体上的条锈病抗性基因渗入,但是独立渗入。根据5DS调查序列数据设计的简单序列重复(SSR)和序列标记位点(STS)标记物丰富了带有条纹和叶锈病抗性基因的目标区域。条纹锈病抗性基因座(临时命名为YrAc)位于5DS的最远端,与一组四个共位的SSR和两个抗性基因类似物(RGA)-STS标记相距5.3 cM。距离YrAc 9.0 cM和距离RGA-STS标记Ta5DS_2737450 2.8 cM的LrAc,YrAc和LrAc似乎是小麦辅助抗锈基因标记辅助富集的候选基因。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 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