Edwards Alexis C, Rollmann Stephanie M, Morgan Theodore J, Mackay Trudy F C
Department of Genetics and W. M. Keck Center for Behavioral Biology, North Carolina State University, Raleigh, North Carolina, United States of America.
PLoS Genet. 2006 Sep 15;2(9):e154. doi: 10.1371/journal.pgen.0020154. Epub 2006 Aug 2.
Aggressive behavior is important for animal survival and reproduction, and excessive aggression is an enormous social and economic burden for human society. Although the role of biogenic amines in modulating aggressive behavior is well characterized, other genetic mechanisms affecting this complex behavior remain elusive. Here, we developed an assay to rapidly quantify aggressive behavior in Drosophila melanogaster, and generated replicate selection lines with divergent levels of aggression. The realized heritability of aggressive behavior was approximately 0.10, and the phenotypic response to selection specifically affected aggression. We used whole-genome expression analysis to identify 1,539 probe sets with different expression levels between the selection lines when pooled across replicates, at a false discovery rate of 0.001. We quantified the aggressive behavior of 19 mutations in candidate genes that were generated in a common co-isogenic background, and identified 15 novel genes affecting aggressive behavior. Expression profiling of genetically divergent lines is an effective strategy for identifying genes affecting complex traits.
攻击行为对动物的生存和繁殖至关重要,而过度攻击对人类社会则是巨大的社会和经济负担。尽管生物胺在调节攻击行为中的作用已得到充分表征,但影响这种复杂行为的其他遗传机制仍不清楚。在这里,我们开发了一种测定方法来快速量化黑腹果蝇的攻击行为,并生成了具有不同攻击水平的重复选择品系。攻击行为的实现遗传力约为0.10,对选择的表型反应特别影响攻击行为。我们使用全基因组表达分析,以0.001的错误发现率,在重复样本合并时鉴定出选择品系之间具有不同表达水平的1539个探针集。我们对在共同的同基因背景中产生的候选基因中的19个突变的攻击行为进行了量化,并鉴定出15个影响攻击行为的新基因。对遗传上不同的品系进行表达谱分析是鉴定影响复杂性状基因的有效策略。