Ek Weronica, Marklund Stefan, Ragavendran Ashok, Siegel Paul, Muir William, Carlborg Orjan
Department of Animal Breeding and Genetics, Swedish University of Agricultural Sciences Uppsala, Sweden.
Front Genet. 2012 Mar 2;3:29. doi: 10.3389/fgene.2012.00029. eCollection 2012.
Most biological traits are regulated by a complex interplay between genetic and environmental factors. By intercrossing divergent lines, it is possible to identify individual and interacting QTL involved in the genetic architecture of these traits. When the loci have been mapped, alternative strategies are needed for fine-mapping and studying the individual and interactive effects of the QTL in detail. We have previously identified, replicated, and fine mapped a four-locus QTL network that determines nearly half of the eightfold difference in body weight at 56 days of age between two divergently selected chicken lines. Here, we describe, to our knowledge, the first generation of a three-locus QTL introgression line in chickens. Recurrent marker-assisted backcrossing was used to simultaneously transfer QTL alleles from the low-weight selected line into the high-weight selected line. Three generations of backcrossing and one generation of intercrossing resulted in an introgression line where all three introgressed QTL and several unlinked and linked control-loci were segregating at nearly expected allele frequencies. We show how intensive selection can be applied using artificial insemination to rapidly generate a multi-locus introgression line and provide recommendations for future breeding of introgression lines. This confirmed introgression line will facilitate later detailed studies of the effects of genetic interactions on complex traits in this population, including growth, and body-composition traits.
大多数生物学性状是由遗传和环境因素之间复杂的相互作用所调控的。通过对不同品系进行杂交,可以识别参与这些性状遗传结构的单个和相互作用的数量性状基因座(QTL)。当这些基因座被定位后,需要采用其他策略来进行精细定位,并详细研究QTL的个体效应和相互作用效应。我们之前已经鉴定、复制并精细定位了一个四基因座QTL网络,该网络决定了两个经过不同选择的鸡品系在56日龄时体重八倍差异中的近一半。在此,据我们所知,我们描述了鸡中第一代三基因座QTL渐渗系。通过反复的标记辅助回交,将低体重选择品系的QTL等位基因同时导入高体重选择品系。经过三代回交和一代杂交,得到了一个渐渗系,其中所有三个渐渗的QTL以及几个不连锁和连锁的控制基因座都以接近预期的等位基因频率进行分离。我们展示了如何通过人工授精应用密集选择来快速产生一个多基因座渐渗系,并为渐渗系的未来育种提供建议。这个经过确认的渐渗系将有助于以后详细研究该群体中遗传相互作用对复杂性状(包括生长和身体组成性状)的影响。