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Identification and High-Density Mapping of Gene-Rich Regions in Chromosome Group 5 of Wheat

机译:小麦第5染色体组基因富集区的鉴定和高密度定位

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摘要

The distribution of genes and recombination in the wheat genome was studied by comparing physical maps with the genetic linkage maps. The physical maps were generated by mapping 80 DNA and two phenotypic markers on an array of 65 deletion lines for homoeologous group 5 chromosomes. The genetic maps were constructed for chromosome 5B in wheat and 5D in Triticum tauschii. No marker mapped in the proximal 20% chromosome region surrounding the centromere. More than 60% of the long arm markers were present in three major clusters that physically encompassed <18% of the arm. Because 48% of the markers were cDNA clones and the distributions of the cDNA and genomic clones were similar, the marker distribution may represent the distribution of genes. The gene clusters were identified and allocated to very small chromosome regions because of a higher number of deletions in their surrounding regions. The recombination was suppressed in the centromeric regions and mainly occurred in the gene-rich regions. The bp/cM estimates varied from 118 kb for gene-rich regions to 22 Mb for gene-poor regions. The wheat genes present in these clusters are, therefore, amenable to molecular manipulations parallel to the plants with smaller genomes like rice.
机译:通过比较物理图谱和遗传连锁图谱,研究了小麦基因组中基因的分布和重组。物理图谱是通过将80个DNA和两个表型标记绘制在65个缺失系的阵列上得出的,这些图谱是同源5组染色体的。构建了小麦5B染色体和taticum tauschii 5D染色体的遗传图谱。在着丝粒周围的近20%染色体区域中没有标记。超过60%的长臂标记物存在于三个主要簇中,它们物理上占臂的18%以下。因为48%的标记是cDNA克隆,并且cDNA和基因组克隆的分布相似,所以标记的分布可能代表了基因的分布。由于其周围区域的缺失数量较高,因此已鉴定出基因簇并将其分配到非常小的染色体区域。重组在着丝粒区域被抑制,并且主要发生在基因丰富的区域。 bp / cM估计值从基因富集区域的118 kb到基因贫乏区域的22 Mb不等。因此,这些簇中存在的小麦基因适合于与具有较小基因组的植物(如水稻)平行的分子操作。

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