de Koning D J, Janss L L, Rattink A P, van Oers P A, de Vries B J, Groenen M A, van der Poel J J, de Groot P N, Brascamp E W, van Arendonk J A
Animal Breeding and Genetics Group, Wageningen Institute of Animal Sciences, Wageningen Agricultural University, 6700 AH Wageningen, The Netherlands.
Genetics. 1999 Aug;152(4):1679-90. doi: 10.1093/genetics/152.4.1679.
In an experimental cross between Meishan and Dutch Large White and Landrace lines, 619 F(2) animals and their parents were typed for molecular markers covering the entire porcine genome. Associations were studied between these markers and two fatness traits: intramuscular fat content and backfat thickness. Association analyses were performed using interval mapping by regression under two genetic models: (1) an outbred line-cross model where the founder lines were assumed to be fixed for different QTL alleles; and (2) a half-sib model where a unique allele substitution effect was fitted within each of the 19 half-sib families. Both approaches revealed for backfat thickness a highly significant QTL on chromosome 7 and suggestive evidence for a QTL at chromosome 2. Furthermore, suggestive QTL affecting backfat thickness were detected on chromosomes 1 and 6 under the line-cross model. For intramuscular fat content the line-cross approach showed suggestive evidence for QTL on chromosomes 2, 4, and 6, whereas the half-sib analysis showed suggestive linkage for chromosomes 4 and 7. The nature of the QTL effects and assumptions underlying both models could explain discrepancies between the findings under the two models. It is concluded that both approaches can complement each other in the analysis of data from outbred line crosses.
在梅山猪与荷兰大白猪和长白猪品系的实验杂交中,对619只F(2)代动物及其亲本进行了覆盖整个猪基因组的分子标记分型。研究了这些标记与两个脂肪性状之间的关联:肌内脂肪含量和背膘厚度。在两种遗传模型下,通过回归进行区间作图来进行关联分析:(1) 一个远交系杂交模型,其中假定奠基系对于不同的QTL等位基因是固定的;(2) 一个半同胞模型,其中在19个半同胞家系中的每一个家系内拟合一个独特的等位基因替代效应。两种方法都揭示了7号染色体上一个对背膘厚度高度显著的QTL以及2号染色体上一个QTL的暗示性证据。此外,在系间杂交模型下,在1号和6号染色体上检测到影响背膘厚度的暗示性QTL。对于肌内脂肪含量,系间杂交方法显示了2号、4号和6号染色体上QTL的暗示性证据,而半同胞分析显示了4号和7号染色体上的暗示性连锁。QTL效应的性质以及两种模型所依据的假设可以解释两种模型下研究结果之间的差异。得出的结论是,在分析远交系杂交数据时,两种方法可以相互补充。