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果蝇转录组中共表达基因簇的协同进化。

Coordinated evolution of co-expressed gene clusters in the Drosophila transcriptome.

作者信息

Mezey Jason G, Nuzhdin Sergey V, Ye Fangfei, Jones Corbin D

机构信息

Department of Biological Statistics and Computational Biology, Cornell University, Ithaca, NY 14853, USA.

出版信息

BMC Evol Biol. 2008 Jan 7;8:2. doi: 10.1186/1471-2148-8-2.

Abstract

BACKGROUND

Co-expression of genes that physically cluster together is a common characteristic of eukaryotic transcriptomes. This organization of transcriptomes suggests that coordinated evolution of gene expression for clustered genes may also be common. Clusters where expression evolution of each gene is not independent of their neighbors are important units for understanding transcriptome evolution.

RESULTS

We used a common microarray platform to measure gene expression in seven closely related species in the Drosophila melanogaster subgroup, accounting for confounding effects of sequence divergence. To summarize the correlation structure among genes in a chromosomal region, we analyzed the fraction of variation along the first principal component of the correlation matrix. We analyzed the correlation for blocks of consecutive genes to assess patterns of correlation that may be manifest at different scales of coordinated expression. We find that expression of physically clustered genes does evolve in a coordinated manner in many locations throughout the genome. Our analysis shows that relatively few of these clusters are near heterochromatin regions and that these clusters tend to be over-dispersed relative to the rest of the genome. This suggests that these clusters are not the byproduct of local gene clustering. We also analyzed the pattern of co-expression among neighboring genes within a single Drosophila species: D. simulans. For the co-expression clusters identified within this species, we find an under-representation of genes displaying a signature of recurrent adaptive amino acid evolution consistent with previous findings. However, clusters displaying co-evolution of expression among species are enriched for adaptively evolving genes. This finding points to a tie between adaptive sequence evolution and evolution of the transcriptome.

CONCLUSION

Our results demonstrate that co-evolution of expression in gene clusters is relatively common among species in the D. melanogaster subgroup. We consider the possibility that local regulation of expression in gene clusters may drive the connection between adaptive sequence and coordinated gene expression evolution.

摘要

背景

在物理上聚集在一起的基因的共表达是真核生物转录组的一个共同特征。转录组的这种组织方式表明,聚集基因的基因表达的协同进化可能也很常见。每个基因的表达进化与其相邻基因不独立的基因簇是理解转录组进化的重要单元。

结果

我们使用一个常见的微阵列平台来测量黑腹果蝇亚组中七个密切相关物种的基因表达,同时考虑了序列差异的混杂效应。为了总结染色体区域中基因之间的相关结构,我们分析了相关矩阵第一主成分上的变异比例。我们分析了连续基因块的相关性,以评估在不同协同表达尺度上可能表现出的相关模式。我们发现,在整个基因组的许多位置,物理聚集基因的表达确实以协同方式进化。我们的分析表明,这些基因簇中相对较少的位于异染色质区域附近,并且相对于基因组的其他部分,这些基因簇往往分布过度分散。这表明这些基因簇不是局部基因聚集的副产物。我们还分析了单个果蝇物种——拟暗果蝇中相邻基因的共表达模式。对于在该物种中鉴定出的共表达基因簇,我们发现显示出反复适应性氨基酸进化特征的基因代表性不足,这与先前的发现一致。然而,显示物种间表达协同进化的基因簇富含适应性进化的基因。这一发现表明适应性序列进化与转录组进化之间存在联系。

结论

我们的结果表明,基因簇中表达的协同进化在黑腹果蝇亚组的物种中相对普遍。我们考虑了基因簇中局部表达调控可能驱动适应性序列与协同基因表达进化之间联系的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d493/2266709/315ad182390c/1471-2148-8-2-1.jpg

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