Department Mejora Genética Animal, SGIT-INIA, 28040, Madrid, Spain.
Anim Genet. 2012 Oct;43(5):620-3. doi: 10.1111/j.1365-2052.2011.02301.x. Epub 2011 Dec 7.
Studies of the variation in recombination rate across the genome provide a better understanding of evolutionary genomics and are also an important step towards mapping and dissecting complex traits in domestic animals. With the recent completion of the porcine genome sequence and the availability of a high-density porcine single nucleotide polymorphism (SNP) array, it is now possible to construct a high-density porcine linkage map and estimate recombination rate across the genome. A total of 416 animals were genotyped with the Porcine SNP60BeadChip, and high-density chromosome linkage maps were constructed using CRI-MAP, assuming the physical order of the Sscrofa10 assembly. The total linkage map length was 2018.79 cM, using 658 meioses and 14,503 SNPs. The estimated average recombination rate across the porcine autosomes was 0.86 cM/Mb. However, a large variation in recombination rate was observed among chromosomes. The estimated average recombination rates (cM/Mb) per chromosome ranged from 0.48 in SSC1 to 1.48 in SSC10, displaying a significant negative correlation with the chromosome sizes. In addition, the analysis of the variation in the recombination rates taking 1-Mb sliding windows has allowed us to demonstrate the variation in recombination rates within chromosomes. In general, a larger recombination rate was observed in the extremes than in the centre of the chromosome. Finally, the ratio between female and male recombination rates was also inferred, obtaining a value of 1.38, with the heterogametic sex having the least recombination.
对基因组重组率变异的研究有助于更好地了解进化基因组学,也是绘制和剖析家畜复杂性状图谱的重要步骤。随着猪基因组序列的最近完成以及高密度猪单核苷酸多态性(SNP)芯片的可用性,现在可以构建高密度猪连锁图谱并估计基因组范围内的重组率。共有 416 头动物用 Porcine SNP60BeadChip 进行了基因分型,并使用 CRI-MAP 构建了高密度染色体连锁图谱,假设 Sscrofa10 组装的物理顺序。总连锁图谱长度为 2018.79cM,使用 658 个减数分裂和 14503 个 SNP。估计猪常染色体的平均重组率为 0.86cM/Mb。然而,在染色体之间观察到重组率的很大差异。每个染色体的平均重组率(cM/Mb)范围从 SSC1 的 0.48 到 SSC10 的 1.48,与染色体大小呈显著负相关。此外,通过 1-Mb 滑动窗口分析重组率的变化,我们能够证明染色体内部的重组率变化。一般来说,在染色体的极端比在中心观察到更大的重组率。最后,还推断了雌性和雄性重组率之间的比值,得到了 1.38 的值,其中异配性性别具有最小的重组率。