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首页> 外文期刊>BMC Plant Biology >Development and characterisation of interspecific hybrid lines with genome-wide introgressions from Triticum timopheevii in a hexaploid wheat background
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Development and characterisation of interspecific hybrid lines with genome-wide introgressions from Triticum timopheevii in a hexaploid wheat background

机译:六倍体小麦背景下小麦小麦全基因组种质间种间杂交系的开发和鉴定

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Triticum timopheevii (2n?=?4x?=?28; AtAtGG), is an important source for new genetic variation for wheat improvement with genes for potential disease resistance and salt tolerance. By generating a range of interspecific hybrid lines, T. timopheevii can contribute to wheat’s narrow gene-pool and be practically utilised in wheat breeding programmes. Previous studies that have generated such introgression lines between wheat and its wild relatives have been unable to use high-throughput methods to detect the presence of wild relative segments in such lines. A whole genome introgression approach, exploiting homoeologous recombination in the absence of the Ph1 locus, has resulted in the transfer of different chromosome segments from both the At and G genomes of T. timopheevii into wheat. These introgressions have been detected and characterised using single nucleotide polymorphism (SNP) markers present on a high-throughput Axiom? Genotyping Array. The analysis of these interspecific hybrid lines has resulted in the detection of 276 putative unique introgressions from T. timopheevii, thereby allowing the generation of a genetic map of T. timopheevii containing 1582 SNP markers, spread across 14 linkage groups representing each of the seven chromosomes of the At and G genomes of T. timopheevii. The genotyping of the hybrid lines was validated through fluorescence in situ hybridisation (FISH). Comparative analysis of the genetic map of T. timopheevii and the physical map of the hexaploid wheat genome showed that synteny between the two species is highly conserved at the macro-level and confirmed the presence of inter- and intra-genomic translocations within the At and G genomes of T. timopheevii that have been previously only detected through cytological techniques. In this work, we report a set of SNP markers present on a high-throughput genotyping array, able to detect the presence of T. timopheevii in a hexaploid wheat background making it a potentially valuable tool for marker assisted selection (MAS) in wheat pre-breeding programs. These valuable resources of high-density molecular markers and wheat-T. timopheevii hybrid lines will greatly enhance the work being undertaken for wheat improvement through wild relative introgressions.
机译:Triticum timopheevii(2n?=?4x?=?28; AtAtGG)是小麦改良新遗传变异的重要来源,具有潜在的抗病性和耐盐性基因。通过产生一系列种间杂种系,Timopheevii可以促进小麦的狭窄基因库,并在小麦育种计划中得到实际应用。先前在小麦及其野生近缘种之间产生这种渗入系的研究一直无法使用高通量方法来检测这些野生系中野生近缘片段的存在。在不存在Ph1基因座的情况下利用同源重组的全基因组基因渗入方法已导致不同的染色体片段从T. timopheevii的At和G基因组转移到小麦中。已经使用高通量Axiom?上存在的单核苷酸多态性(SNP)标记物检测并表征了这些基因渗入。基因分型阵列。这些种间杂种系的分析已导致从Timopheevii检出276种推定的独特基因渗入,从而允许生成包含1582个SNP标记的Timopheevii遗传图谱,分布在代表七个染色体中每个染色体的14个连锁组上T.phemopheevii的At和G基因组通过荧光原位杂交(FISH)验证了杂交品系的基因型。对Timopheevii遗传图谱和六倍体小麦基因组物理图谱的比较分析表明,这两个物种之间的同义在宏观水平上是高度保守的,并证实了At和Thr内存在基因组间和基因组内易位。以前仅通过细胞学技术检测到的T. timopheevii G基因组。在这项工作中,我们报告了高通量基因分型阵列上存在的一组SNP标记,能够检测六倍体小麦背景中的T. timopheevii的存在,使其成为小麦前期标记辅助选择(MAS)的潜在有价值的工具育种程序。这些宝贵的资源包括高密度分子标记和小麦-T。 timopheevii杂交品系将通过野生相对渗入大大增强小麦改良工作。

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