...
首页> 外文期刊>The Journal of Heredity >Genes and QTLs controlling inflorescence and stem branch architecture in Leymus (Poaceae: Triticeae) wildrye
【24h】

Genes and QTLs controlling inflorescence and stem branch architecture in Leymus (Poaceae: Triticeae) wildrye

机译:控制羊草(禾本科)的花序和茎分支结构的基因和QTL

获取原文
获取原文并翻译 | 示例
           

摘要

Grass inflorescence and stem branches show recognizable architectural differences among species. The inflorescence branches of Triticeae cereals and grasses, including wheat, barley, and 400-500 wild species, are usually contracted into a spike formation, with the number of flowering branches (spikelets) per node conserved within species and genera. Perennial Triticeae grasses of genus Leymus are unusual in that the number of spikelets per node varies, inflorescences may have panicle branches, and vegetative stems may form subterranean rhizomes. Leymus cinereus and L. triticoides show discrete differences in inflorescence length, branching architecture, node number, and density; number of spikelets per node and florets per spikelet; culm length and width; and perimeter of rhizomatous spreading. Quantitative trait loci controlling these traits were detected in 2 pseudo-backcross populations derived from the interspecific hybrids using a linkage map with 360 expressed gene sequence markers from Leymus tiller and rhizome branch meristems. Alignments of genes, mutations, and quantitative trait loci controlling similar traits in other grass species were identified using the Brachypodium genome reference sequence. Evidence suggests that loci controlling inflorescence and stem branch architecture in Leymus are conserved among the grasses, are governed by natural selection, and can serve as possible gene targets for improving seed, forage, and grain production.
机译:草花序和茎枝在种间显示出可识别的建筑差异。小麦,大麦和400-500种野生物种的小麦和谷物的花序分支通常收缩成穗状花序,每节的花枝(小穗)数目在物种和属内都得到保存。羊草属的多年生黑麦草是不寻常的,因为每个结节的小穗数目不同,花序可能有圆锥花序分枝,而营养茎可能形成地下根状茎。灰藓羊草和L. triticoides在花序长度,分支结构,节数和密度上显示出离散的差异。每个结节的小穗数和每个小穗的小花数;茎长和宽;和根茎蔓延的范围。使用带有来自羊草分till和根茎分生组织的360个表达的基因序列标记的连锁图,在源自种间杂种的2个伪回交种群中检测到控制这些性状的数量性状基因座。使用腕足动物基因组参考序列鉴定了控制其他草种相似性状的基因,突变和定量性状基因座的比对。有证据表明,控制羊草的花序和茎枝结构的基因座在草丛中是保守的,受自然选择支配,并且可以作为改善种子,饲料和谷物产量的基因靶点。

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