Carlborg Orjan, Kerje Susanne, Schütz Karin, Jacobsson Lina, Jensen Per, Andersson Leif
Department of Animal Breeding and Genetics, Swedish University of Agricultural Sciences, S-751 24 Uppsala, Sweden.
Genome Res. 2003 Mar;13(3):413-21. doi: 10.1101/gr.528003.
We have identified quantitative trait loci (QTL) explaining a large proportion of the variation in body weights at different ages and growth between chronological ages in an F(2) intercross between red junglefowl and White Leghorn chickens. QTL were mapped using forward selection for loci with significant marginal genetic effects and with a simultaneous search for epistatic QTL pairs. We found 22 significant loci contributing to these traits, nine of these were only found by the simultaneous two-dimensional search, which demonstrates the power of this approach for detecting loci affecting complex traits. We have also estimated the relative contribution of additive, dominance, and epistasis effects to growth and the contribution of epistasis was more pronounced prior to 46 days of age, whereas additive genetic effects explained the major portion of the genetic variance later in life. Several of the detected loci affected either early or late growth but not both. Very few loci affected the entire growth process, which points out that early and late growth, at least to some extent, have different genetic regulation.
我们已经在红原鸡和白来航鸡的F(2)杂交群体中,鉴定出了数量性状基因座(QTL),这些基因座解释了不同年龄体重变化的很大一部分,以及实际年龄之间生长的差异。使用正向选择法对具有显著边际遗传效应的基因座进行定位,并同时搜索上位性QTL对。我们发现有22个显著基因座影响这些性状,其中9个仅通过二维同步搜索才被发现,这证明了该方法在检测影响复杂性状基因座方面的强大功能。我们还估计了加性、显性和上位性效应对生长的相对贡献,上位性效应在46日龄之前更为明显,而加性遗传效应在生命后期解释了大部分遗传方差。检测到的几个基因座只影响早期或晚期生长,而非两者都影响。很少有基因座影响整个生长过程,这表明早期和晚期生长至少在一定程度上具有不同的遗传调控。