Watanabe T, Hirano T, Takano A, Mizoguchi Y, Sugimoto Y, Takasuga A
Shirakawa Institute of Animal Genetics, Odakura, Nishigo, Nishi-shirakawa, Fukushima 961-8061, Japan.
Anim Genet. 2008 Aug;39(4):374-82. doi: 10.1111/j.1365-2052.2008.01742.x. Epub 2008 May 27.
We examined the extent of linkage disequilibrium (LD) block lengths in four breed populations: Japanese Black, Angus, Hereford and Holstein. Three chromosomal regions in which QTL were previously mapped in Japanese Black populations were scanned with 84 microsatellite markers. The estimated LD lengths in these four purebred populations varied from 535 to 683 kb, which is much shorter than the values reported previously. Our findings suggest that QTL can be mapped in sub-centimorgan regions in these populations using an LD-mapping method. We also developed breed identification methods to distinguish Japanese Black from Angus, Hereford, Holstein and F(1) animals (Japanese Black x Holstein) respectively using the haplotypic frequencies of a pair of markers in the breed populations. After assessing the distributions of posterior probabilities to be Japanese Black, we obtained several pairs of markers that completely distinguished Japanese Black from the other breeds. We also obtained several combinations of six markers that completely distinguished Japanese Black animals from F(1) animals.
我们研究了四个品种群体(日本黑牛、安格斯牛、赫里福德牛和荷斯坦牛)中连锁不平衡(LD)块长度的情况。利用84个微卫星标记扫描了先前在日本黑牛群体中定位到QTL的三个染色体区域。这四个纯种群体中估计的LD长度在535至683 kb之间,比先前报道的值短得多。我们的研究结果表明,使用LD定位方法可以在这些群体的亚厘摩区域内定位QTL。我们还开发了品种鉴定方法,分别利用品种群体中一对标记的单倍型频率来区分日本黑牛与安格斯牛、赫里福德牛、荷斯坦牛以及F1代动物(日本黑牛×荷斯坦牛)。在评估了判定为日本黑牛的后验概率分布后,我们获得了几对能够完全区分日本黑牛与其他品种的标记。我们还获得了六种标记的几种组合,能够完全区分日本黑牛与F1代动物。