首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Development and characterization of wheat lines carrying stem rust resistance gene Sr43 derived from Thinopyrum ponticum
【24h】

Development and characterization of wheat lines carrying stem rust resistance gene Sr43 derived from Thinopyrum ponticum

机译:携带来自ponticum ponticum的茎杆抗锈基因Sr43的小麦品系的发育和鉴定

获取原文
获取原文并翻译 | 示例
       

摘要

Wheat lines carrying Ug99-effective stem rust resistance gene Sr43 on shortened alien chromosome segments were produced using chromosome engineering, and molecular markers linked to Sr43 were identified for marker-assisted selection. Stem rust resistance gene Sr43, transferred into common wheat (Triticum aestivum) from Thinopyrum ponticum, is an effective gene against stem rust Ug99 races. However, this gene has not been used in wheat breeding because it is located on a large Th. ponticum 7el(2) chromosome segment, which also harbors genes for undesirable traits. The objective of this study was to eliminate excessive Th. ponticum chromatin surrounding Sr43 to make it usable in wheat breeding. The two original translocation lines KS10-2 and KS24-1 carrying Sr43 were first analyzed using simple sequence repeat (SSR) markers and florescent genomic in situ hybridization. Six SSR markers located on wheat chromosome arm 7DL were identified to be associated with the Th. ponticum chromatin in KS10-2 and KS24-1. The results confirmed that KS24-1 is a 7DS center dot 7el(2)L Robertsonian translocation as previously reported. However, KS10-2, which was previously designated as a 7el(2)S center dot 7el(2)L-7DL translocation, was identified as a 7DS-7el(2)S center dot 7el(2)L translocation. To reduce the Th. ponticum chromatin carrying Sr43, a BC2F1 population (Chinese Spring//Chinese Spring ph1bph1b*2/KS10-2) containing ph1b-induced homoeologous recombinants was developed, tested with stem rust, and genotyped with the six SSR markers identified above. Two new wheat lines (RWG33 and RWG34) carrying Sr43 on shortened alien chromosome segments (about 17.5 and 13.7 % of the translocation chromosomes, respectively) were obtained, and two molecular markers linked to Sr43 in these lines were identified. The new wheat lines with Sr43 and the closely linked markers provide new resources for improving resistance to Ug99 and other races of stem rust in wheat.
机译:利用染色体工程生产了在较短的外源染色体片段上带有Ug99有效茎锈病抗性基因Sr43的小麦品系,并鉴定了与Sr43连锁的分子标记以进行标记辅助选择。茎锈病抗性基因Sr43,从ponticum ponticum转移到普通小麦(Triticum aestivum)中,是对抗茎锈病Ug99的有效基因。但是,由于该基因位于大的Th上,因此尚未用于小麦育种。 ponticum 7el(2)染色体片段,它也包含不良性状的基因。这项研究的目的是消除过量的Th。 Sr43周围的染色质染色质使其可用于小麦育种。首先使用简单序列重复(SSR)标记和荧光基因组原位杂交分析了两个带有Sr43的原始易位系KS10-2和KS24-1。鉴定出位于小麦染色体7DL臂上的六个SSR标记与Th相关。 KS10-2和KS24-1中的ponticum染色质。结果证实KS24-1是7DS中心点7el(2)L罗伯逊易位,如先前报道。但是,KS10-2,以前被指定为7el(2)S中心点7el(2)L-7DL易位,被确定为7DS-7el(2)S中心点7el(2)L易位。降低Th。携带Sr43的斑白质染色质被开发出来,该BC2F1群体(中国春/中国春ph1bph1b * 2 / KS10-2)中含有ph1b诱导的同源重组体,并用茎锈病进行了测试,并用上述六个SSR标记进行了基因分型。获得了两个在较短的外来染色体片段(分别占易位染色体的约17.5%和13.7%)上携带Sr43的新小麦品系(RWG33和RWG34),并鉴定了在这些品系中与Sr43相关的两个分子标记。具有Sr43和紧密相连标记的新小麦品系为提高对Ug99和其他小麦茎锈病的抗性提供了新资源。

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