Li Miao-Xin, Jiang Lin, Song You-Qiang, Sham Pak C
Department of Biochemistry, The University of Hong Kong, Pokfulam, Hong Kong SAR, China.
Genet Epidemiol. 2008 Jul;32(5):434-44. doi: 10.1002/gepi.20316.
The power of transmission/disequilibrium tests (TDTs) for detecting disease susceptibility loci is expected to be influenced by population admixture through its impact on the degree of linkage disequilibrium (LD) between the genetic marker and the DSL. However, few studies have been done to systematically examine this behavior of the TDTs in admixed populations. In the present study, extensive computer simulations were conducted to explore how population admixture affects the power of TDTs. It was found that (1) in newly admixed populations, the LD due to admixture makes no contribution to the power of TDTs, and it is the averaged background LD in the parental populations that determines the power of TDTs; but (2) after random mating between the admixed populations, the LD due to admixture becomes effective in increasing or decreasing the power of the tests, and (3) incomplete random mating can prolong the time for the LD due to admixture to become effective. This study clarifies the potential influence of population admixture on the performance of TDTs.
传递/不平衡检验(TDTs)检测疾病易感基因座的效能预期会受到群体混合的影响,这是因为群体混合会影响遗传标记与疾病易感基因座(DSL)之间的连锁不平衡(LD)程度。然而,很少有研究系统地考察TDTs在混合群体中的这种行为。在本研究中,我们进行了广泛的计算机模拟,以探究群体混合如何影响TDTs的效能。结果发现:(1)在新形成的混合群体中,由混合导致的LD对TDTs的效能没有贡献,决定TDTs效能的是亲代群体中的平均背景LD;但是(2)混合群体之间随机交配后,由混合导致的LD会有效地增加或降低检验效能,并且(3)不完全随机交配会延长由混合导致的LD变得有效的时间。本研究阐明了群体混合对TDTs性能的潜在影响。