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High?¢????density SNP genotyping array for hexaploid wheat and its secondary and tertiary gene pool

机译:六倍体小麦的高密度SNP基因分型阵列及其二级和三级基因库

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In wheat, a lack of genetic diversity between breeding lines has been recognized as a significant block to future yield increases. Species belonging to bread wheat's secondary and tertiary gene pools harbour a much greater level of genetic variability, and are an important source of genes to broaden its genetic base. Introgression of novel genes from progenitors and related species has been widely employed to improve the agronomic characteristics of hexaploid wheat, but this approach has been hampered by a lack of markers that can be used to track introduced chromosome segments. Here, we describe the identification of a large number of single nucleotide polymorphisms that can be used to genotype hexaploid wheat and to identify and track introgressions from a variety of sources. We have validated these markers using an ultra?¢????high?¢????density Axiom ???? genotyping array to characterize a range of diploid, tetraploid and hexaploid wheat accessions and wheat relatives. To facilitate the use of these, both the markers and the associated sequence and genotype information have been made available through an interactive web site.
机译:在小麦中,育种品系之间缺乏遗传多样性已被认为是未来单产增加的重要障碍。面包小麦二级和三级基因库中的物种具有更高的遗传变异水平,并且是扩大其遗传基础的重要基因来源。来自祖细胞和相关物种的新基因渗入已被广泛用于改善六倍体小麦的农艺特性,但是由于缺乏可用于追踪引入的染色体片段的标记,这种方法受到了阻碍。在这里,我们描述了大量的单核苷酸多态性的鉴定,可用于对六倍体小麦进行基因分型,并鉴定和跟踪来自各种来源的基因渗入。我们已经使用超高密度密度公理对这些标记物进行了验证。基因分型阵列可表征一系列二倍体,四倍体和六倍体小麦种质和小麦亲缘种。为了促进这些标记的使用,已经通过交互式网站提供了标记以及相关的序列和基因型信息。

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