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A genome-wide linkage map for the house sparrow (Passer domesticus) provides insights into the evolutionary history of the avian genome

机译:房屋麻雀的基因组联动地图(通过Domesticus)为禽类基因组的进化史提供了见解

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The house sparrow is an important model species for studying physiological, ecological and evolutionary processes in wild populations. Here, we present a medium density, genome wide linkage map for house sparrow (Passer domesticus) that has aided the assembly of the house sparrow reference genome, and that will provide an important resource for ongoing mapping of genes controlling important traits in the ecology and evolution of this species. Using a custom house sparrow 10 K iSelect Illumina SNP chip we have assigned 6,498 SNPs to 29 autosomal linkage groups, based on a mean of 430 informative meioses per SNP. The map was constructed by combining the information from linkage with that of the physical position of SNPs within scaffold sequences in an iterative process. Averaged between the sexes; the linkage map had a total length of 2,004 cM, with a longer map for females (2,240 cM) than males (1,801 cM). Additionally, recombination rates also varied along the chromosomes. Comparison of the linkage map to the reference genomes of zebra finch, collared flycatcher and chicken, showed a chromosome fusion of the two avian chromosomes 8 and 4A in house sparrow. Lastly, information from the linkage map was utilized to conduct analysis of linkage disequilibrium (LD) in eight populations with different effective population sizes (N-e) in order to quantify the background level LD. Together, these results aid the design of future association studies, facilitate the development of new genomic tools and support the body of research that describes the evolution of the avian genome.
机译:麻雀是野生种群研究的生理,生态和进化过程的重要模式物种。在这里,我们提出了一个中等密度,全基因组图谱为麻雀(麻雀)已组装的麻雀参照基因组的辅助,并且将提供的基因在生态控制重要性状的正在进行的映射的重要资源和这个物种进化。使用自定义麻雀为10K I选择Illumina的SNP芯片我们已经分配6,498个SNP至29常染色体连锁群的基础上,每个SNP 430次翔实的减数分裂平均。该地图是由信息从连杆与支架序列内的SNP的在迭代过程中的物理位置的组合构成。两性之间平均;连锁图谱具有2004厘米的总长度,与男性相比,女性(1801厘米)的较长的地图(2240厘米)。此外,重组率也沿着染色体变化。连锁图谱到斑胸草雀,领捕蝇和鸡的基因组参考的比较,显示出在麻雀两个禽类染色体8和图4A的染色体融合。最后,从连锁图谱信息被利用在8个种群具有不同的有效种群大小(N-E),以便量化所述背景水平LD进行连锁不平衡(LD)的分析。总之,这些结果有助于未来的相关性研究的设计,方便的新的基因组工具的开发和支持的研究机构,介绍了禽流感基因组的进化。

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