首页> 外文期刊>Agronomy >Characterization of Chromosomal Rearrangement in New Wheat— Thinopyrum intermedium Addition Lines Carrying Thinopyrum —Specific Grain Hardness Genes
【24h】

Characterization of Chromosomal Rearrangement in New Wheat— Thinopyrum intermedium Addition Lines Carrying Thinopyrum —Specific Grain Hardness Genes

机译:新小麦染色体携带的杂种麦草中间Thin麦的染色体重排特性-特定的谷物硬度基因

获取原文
           

摘要

The wild species, Thinopyrum intermedium. (Genome StStJ S J S JJ), serves as a valuable germplasm resource providing novel genes for wheat improvement. In the current study, non-denaturing fluorescence in situ hybridization (ND-FISH) with multiple probes and comparative molecular markers were applied to characterize two wheat- Th. intermedium chromosome additions. Sequential ND-FISH with new labeled Th. intermedium specific oligo-probes were used to precisely determine the chromosomal constitution of Th. intermedium , wheat— Th. intermedium partial amphiploids and addition lines Hy36 and Hy37. The ND-FISH results showed that the added J S -St translocated chromosomes in Hy36 had minor Oligo-5S ribosomal DNA (rDNA) signals at the short arm, while a pair of J-St chromosomes in Hy37 had major Oligo-pTa71 and minor Oligo-5S rDNA signals. The 90K SNP array and PCR-based molecular markers that mapped on wheat linkage group 5 and 3 facilitated the identification of Thinopyrum chromosome introgressions in the addition lines, and confirmed that added chromosomes in Hy36 and Hy37 were 5J S S.3StS and 5JS.3StS, respectively. Complete coding sequences at the paralogous puroindoline-a ( Pina ) loci from Th. intermedium were cloned and localized on the short arm of chromosome 5J S of Hy36. Line Hy36 showed a reduction in the hardness index, which suggested that Th. intermedium -specific Pina gene sequences may be associated with the softness trait in wheat background. The molecular cytogenetic identification of novel wheat— Th. intermedium derivatives indicated that the frequent chromosome rearrangement occurred in the progenies of wheat- Thinopyrum hybridization. The new wheat- Thinopyrum derived lines may increase the genetic diversity for wheat breeding.
机译:野生种,中间Thin草。 (基因组StStJ S J S JJ)是一种有价值的种质资源,可为小麦改良提供新的基因。在当前的研究中,使用具有多个探针和比较分子标记的非变性荧光原位杂交(ND-FISH)来表征两种小麦Th。中间染色体的添加。序列ND-FISH与新标记的Th。中间特异性寡核苷酸被用来精确地确定Th的染色体组成。中间的小麦。中间部分二倍体和附加系Hy36和Hy37。 ND-FISH结果表明,在Hy36中添加的JS -St易位染色体在短臂处具有次要的Oligo-5S核糖体DNA(rDNA)信号,而在Hy37中的一对J-St染色体具有主要的Oligo-pTa71和次要的Oligo -5S rDNA信号。定位于小麦连锁5和3的90K SNP阵列和基于PCR的分子标记有助于鉴定添加系中的薄壁锥虫染色体渗入,并确认Hy36和Hy37中添加的染色体分别为5J S S.3StS和5JS.3StS , 分别。来自Th的同源Puroindoline-a(Pina)基因座的完整编码序列。中间体被克隆并定位在Hy36的5J染色体的短臂上。 Hy36线显示硬度指数降低,这表明Th。中间特异性的Pina基因序列可能与小麦背景的柔软性状有关。新型小麦Th的分子细胞遗传学鉴定。中间衍生物表明,频繁的染色体重排发生在小麦与Thin草的杂交后代中。新的小麦-Theepopyrum衍生品系可能会增加小麦育种的遗传多样性。

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