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Saturation Mapping of a Gene-Rich Recombination Hot Spot Region in Wheat

机译:小麦中富含基因的重组热点区域的饱和度定位

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Physical mapping of wheat chromosomes has revealed small chromosome segments of high gene density and frequent recombination interspersed with relatively large regions of low gene density and infrequent recombination. We constructed a detailed genetic and physical map of one highly recombinant region on the long arm of chromosome 5B. This distally located region accounts for 4% of the physical size of the long arm and at least 30% of the recombination along the entire chromosome. Multiple crossovers occurred within this region, and the degree of recombination is at least 11-fold greater than the genomic average. Characteristics of the region such as gene order and frequency of recombination appear to be conserved throughout the evolution of the Triticeae. The region is more prone to chromosome breakage by gametocidal gene action than gene-poor regions, and evidence for genomic instability was implied by loss of gene collinearity for six loci among the homeologous regions. These data suggest that a unique level of chromatin organization exists within gene-rich recombination hot spots. The many agronomically important genes in this region should be accessible by positional cloning.
机译:小麦染色体的物理作图显示高基因密度和频繁重组的小染色体片段散布着低基因密度和不频繁重组的相对较大的区域。我们在5B号染色体长臂上构建了一个高度重组区域的详细遗传和物理图谱。位于远端的区域占长臂物理尺寸的4%,并且占整个染色体的重组的至少30%。在该区域内发生多次交换,重组程度至少比基因组平均值大11倍。在小麦的整个进化过程中,该区域的特征(如基因顺序和重组频率)似乎是保守的。该区域比具有基因杀灭性的区域更容易被杀杀基因作用破坏染色体,而同源区域中六个基因座的基因共线性丧失则暗示了基因组不稳定的证据。这些数据表明,在富含基因的重组热点中存在独特水平的染色质组织。该区域中许多农学上重要的基因应可通过位置克隆获得。

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