...
首页> 外文期刊>Plant Production Science >Identification of quantitative trait loci for panicle structure and grain filling using a cross between indica- and japonica-type high-yielding rice cultivars
【24h】

Identification of quantitative trait loci for panicle structure and grain filling using a cross between indica- and japonica-type high-yielding rice cultivars

机译:用籼稻和粳稻高产水稻品种交叉识别穗结构和籽粒填充的定量特征基因座

获取原文
           

摘要

To enhance the yield potential of rice by breeding, it is important to reveal the genetic factors affecting yield components in high-yielding cultivars. Quantitative trait loci (QTL) analysis for panicle structure and spikelet weight as an index of grain filling was conducted using recombinant inbred lines (RILs) derived from a cross between an indica -dominant high-yielding cultivar, Takanari, and a japonica -dominant high-yielding cultivar, Momiroman in 2012 and 2013 in eastern Japan. The grain-filling ability of Takanari is reported to be better than that of Momiroman. Since grain filling is generally better near the tip of the panicle and decreases as the number of branches from the rachis increases, we classified whole panicles into upper and lower side panicles and spikelets into primary, secondary, and tertiary spikelets according to the number of branches from the rachis. On chromosomes 1, 4, and 6, QTLs regulating the number of spikelets per panicle and panicle structure were detected and were most likely identical to GN1a, SPIKE , and APO1 , respectively, which has been previously reported as QTLs regulating the number of spikelets per panicle. Takanari produced much heavier secondary and tertiary spikelets than Momiroman on the lower side panicle. On chromosome 5, novel QTLs regulating spikelet weight were detected. The Takanari allele enhanced secondary and tertiary spikelet weight on the lower side panicle. These results indicate that it may be possible to enhance sink capacity and translocation of source with a combination of novel QTLs detected on chromosome 5 and GN1, APO1 , and SPIKE .
机译:为了通过育种提高水稻的产量潜力,重要的是揭示影响高产品种产量组分的遗传因素。用衍生自衍生自递交的杂交填充指数的穗结构和小穗重量的定量特性基因座(QTL)分析是使用来自inda-adminant高产品种,Takanari和A <的RILS和A <我>粳稻族高产品种,2012年和2013年在日本东部的2012年。据报道,Takanari的灌浆能力比Momiroman更好。由于谷物填充在穗尖附近通常更好并随着来自rachis的分支的数量而降低,因此我们将整个硅粉作为根据分支的数量进入上部和下侧圆锥片和小穗,分为初级,次级和三级尖峰来自rachis。在染色体1,4和6中,检测调节每穗和穗结构的尖峰数的QTL分别与 Gn1a,穗和 apo1相同,以前已被报告为QTLS调节每穗尖的尖峰数。 Takanari在下侧穗上产生了比Momiroman更重的次级和三级尖峰。在染色体5中,检测到调节小穗重量的新型QTLS。高级等位基因增强次侧穗上的二级和三级小穗重量。这些结果表明,在染色体5和 GN1,APO1和峰值上检测到的新QTL的组合可以增强源极和源的差流源。

著录项

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