Zou Yangyun, Su Zhixi, Yang Jian, Zeng Yanwu, Gu Xun
Institutes of Biomedical Sciences, Fudan University, Shanghai, China.
J Exp Zool B Mol Dev Evol. 2009 Nov 15;312(7):722-33. doi: 10.1002/jez.b.21290.
Genetical genomics, a novel approach combining microarray technology and quantitative genetic analysis, aims to identify the expression quantitative trait loci (eQTLs), which may regulate the genome-wide expression pattern. In this article, we have studied yeast genomic eQTL data to investigate how the genetic eQTL regulation of ancestral gene has diverged since gene duplication. Our findings are as follows: (i) Duplicate genes have higher heritability for gene expression than single-copy genes, but little difference in their epistasis and directional effect. (ii) The divergence of trans-acting eQTLs between duplicate pairs increases with the evolutionary time since gene duplication. (iii) Trans-acting eQTL divergence can explain about 21% of the variation in expression divergence between duplicate pairs with K(S)<2.0, which increases to 27% when the transcription factor (TF)-target interaction divergence is combined. Moreover, under the partial correlation analysis, trans-acting eQTL divergence seems make a bigger contribution to expression divergence than does TF divergence. (iv) Trans-acting eQTL divergence between duplicate pairs is correlated with gene ontology categories "Biological processes" and "Cellular components," but not with "Molecular functions," and is related to fitness defect under treatment conditions, but not with fitness under normal condition. We conclude that eQTL analysis provides a novel approach to explore the effect of gene duplications on the genetic regulatory network.
遗传基因组学是一种将微阵列技术与定量遗传分析相结合的新方法,旨在识别可能调控全基因组表达模式的表达数量性状基因座(eQTL)。在本文中,我们研究了酵母基因组eQTL数据,以探讨自基因复制以来祖先基因的遗传eQTL调控是如何分化的。我们的研究结果如下:(i)复制基因在基因表达方面比单拷贝基因具有更高的遗传力,但它们的上位性和定向效应差异不大。(ii)复制对之间反式作用eQTL的差异随着基因复制后的进化时间而增加。(iii)反式作用eQTL差异可以解释K(S)<2.0的复制对之间表达差异中约21%的变异,当结合转录因子(TF)-靶标相互作用差异时,这一比例增加到27%。此外,在偏相关分析下,反式作用eQTL差异似乎比TF差异对表达差异的贡献更大。(iv)复制对之间的反式作用eQTL差异与基因本体类别“生物过程”和“细胞成分”相关,但与“分子功能”无关,并且与处理条件下的适应性缺陷相关,但与正常条件下的适应性无关。我们得出结论,eQTL分析为探索基因复制对遗传调控网络的影响提供了一种新方法。