Ayroles Julien F, Carbone Mary Anna, Stone Eric A, Jordan Katherine W, Lyman Richard F, Magwire Michael M, Rollmann Stephanie M, Duncan Laura H, Lawrence Faye, Anholt Robert R H, Mackay Trudy F C
Department of Genetics, North Carolina State University, Raleigh, North Carolina 27695, USA.
Nat Genet. 2009 Mar;41(3):299-307. doi: 10.1038/ng.332. Epub 2009 Feb 22.
Determining the genetic architecture of complex traits is challenging because phenotypic variation arises from interactions between multiple, environmentally sensitive alleles. We quantified genome-wide transcript abundance and phenotypes for six ecologically relevant traits in D. melanogaster wild-derived inbred lines. We observed 10,096 genetically variable transcripts and high heritabilities for all organismal phenotypes. The transcriptome is highly genetically intercorrelated, forming 241 transcriptional modules. Modules are enriched for transcripts in common pathways, gene ontology categories, tissue-specific expression and transcription factor binding sites. The high degree of transcriptional connectivity allows us to infer genetic networks and the function of predicted genes from annotations of other genes in the network. Regressions of organismal phenotypes on transcript abundance implicate several hundred candidate genes that form modules of biologically meaningful correlated transcripts affecting each phenotype. Overlapping transcripts in modules associated with different traits provide insight into the molecular basis of pleiotropy between complex traits.
确定复杂性状的遗传结构具有挑战性,因为表型变异源于多个对环境敏感的等位基因之间的相互作用。我们对黑腹果蝇野生近交系中六个与生态相关的性状进行了全基因组转录本丰度和表型的量化。我们观察到10096个遗传可变转录本,并且所有生物体表型都具有高遗传力。转录组在遗传上高度相互关联,形成了241个转录模块。模块在常见途径、基因本体类别、组织特异性表达和转录因子结合位点的转录本中富集。高度的转录连接性使我们能够从网络中其他基因的注释推断遗传网络和预测基因的功能。生物体表型对转录本丰度的回归涉及数百个候选基因,这些基因形成影响每个表型的具有生物学意义的相关转录本模块。与不同性状相关的模块中的重叠转录本为复杂性状之间多效性的分子基础提供了见解。