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Genome-wide deserts for copy number variation in vertebrates

机译:全基因组沙漠中脊椎动物的拷贝数变异

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Most copy number variations are neutral, but some are deleterious and associated with various human diseases. Copy number variations are distributed non-randomly in vertebrate genomes, and it was recently reported that ohnologs, which are duplicated genes derived from whole genome duplication, are refractory to copy number variations. However, it is unclear what genomic factors affect the deleterious effects of copy number variations and the biological significance of the biased genomic distribution of copy number variations remains poorly understood. Here we show that non-ohnologs neighbouring ohnologs are unlikely to have copy number variations, resulting in ohnolog-rich regions in vertebrate genomes being copy number variation deserts. Our results suggest that the genomic location of ohnologs is a determining factor in the retention of copy number variations and that the dosage-balanced ohnologs are likely to cause the deleterious effects of copy number variations in these regions. We propose that investigating copy number variation of genes in regions that are typically copy number variation deserts is an efficient means to find disease-related copy number variations.
机译:大多数拷贝数变异是中性的,但有些是有害的并与各种人类疾病有关。拷贝数变异在脊椎动物基因组中是非随机分布的,最近有报道说,同源物是复制自全基因组重复的复制基因,难于抵抗拷贝数变异。但是,尚不清楚什么基因组因素会影响拷贝数变异的有害影响,并且拷贝数变异的偏向基因组分布的生物学意义仍知之甚少。在这里,我们显示非邻近同源物的非同源物不太可能具有拷贝数变异,从而导致脊椎动物基因组中富含同源物的区域成为拷贝数变异沙漠。我们的结果表明,同源物的基因组位置是保留拷贝数变异的决定因素,并且剂量平衡的同源物很可能在这些区域引起拷贝数变异的有害影响。我们建议,调查通常为拷贝数变异沙漠的区域中基因的拷贝数变异是找到与疾病相关的拷贝数变异的有效手段。

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