首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Fine mapping of a preharvest sprouting QTL interval on chromosome 2B in white wheat
【24h】

Fine mapping of a preharvest sprouting QTL interval on chromosome 2B in white wheat

机译:白小麦2B染色体上收获前发芽QTL间隔的精细作图

获取原文
获取原文并翻译 | 示例
           

摘要

Fine mapping by recombinant backcross populations revealed that a preharvest sprouting QTL on 2B contained two QTLs linked in coupling with different effects on the phenotype. Wheat preharvest sprouting (PHS) occurs when grain germinates on the plant before harvest, resulting in reduced grain quality. Previous mapping of quantitative trait locus (QTL) revealed a major PHS QTL, QPhs.cnl-2B.1, located on chromosome 2B significant in 16 environments that explained from 5 to 31 % of the phenotypic variation. The objective of this project was to fine map the QPhs.cnl-2B.1 interval. Fine mapping was carried out in recombinant backcross populations (BC1F4 and BC1F5) that were developed by backcrossing selected doubled haploids to a recurrent parent and self-pollinating the BC1F4 and BC1F5 generations. In each generation, three markers in the QPhs.cnl-2B.1 interval were used to screen for recombinants. Fine mapping revealed that the QPhs.cnl-2B.1 interval contained two PHS QTLs linked in coupling. The distal PHS QTL, located between Wmc453c and Barc55, contributed 8 % of the phenotypic variation and also co-located with a major seed dormancy QTL determined by germination index. The proximal PHS QTL, between Wmc474 and CNL415-rCDPK, contributed 16 % of the variation. Several candidate genes including Mg-chelatase H subunit family protein, GTP-binding protein and calmodulin/Ca2+-dependent protein kinase were linked to the PHS QTL. Although many recombinant lines were identified, the lack of polymorphism for markers in the QTL interval prevented the localization of the recombination breakpoints and identification of the gene underlying the phenotype
机译:重组回交种群的精细作图揭示了2B上的收获前发芽QTL包含两个QTL,这些QTL通过耦合作用而对表型产生不同的影响。小麦收获前发芽是指谷物在收获前在植物上发芽,导致谷物品质下降。先前对数量性状基因座(QTL)进行的定位揭示了一个主要的PHS QTL QPhs.cnl-2B.1,位于2B染色体上,在16个环​​境中具有显着性,解释了表型变异的5%至31%。该项目的目的是精细映射QPhs.cnl-2B.1间隔。在重组回交群体(BC1F4和BC1F5)中进行了精细定位,这些群体是通过将选定的双倍单倍体回交到轮回亲本并自花授粉BC1F4和BC1F5世代而开发的。在每一代中,使用QPhs.cnl-2B.1区间的三个标记来筛选重组子。精细映射显示QPhs.cnl-2B.1间隔包含两个以耦合方式链接的PHS QTL。位于Wmc453c和Barc55之间的远端PHS QTL贡献了8%的表型变异,并且与发芽指数确定的主要种子休眠QTL位于同一位置。 Wmc474和CNL415-rCDPK之间的近端PHS QTL贡献了16%的变异。几个候选基因包括Mg螯合酶H亚基家族蛋白,GTP结合蛋白和钙调蛋白/ Ca2 +依赖性蛋白激酶与PHS QTL连接。尽管鉴定了许多重组品系,但在QTL区间缺乏标记的多态性阻止了重组断点的定位和表型潜在基因的鉴定

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