Tuller Tamir, Kupiec Martin, Ruppin Eytan
School of Computer Sciences, Tel Aviv University, Ramat Aviv, Israel.
Genome Biol. 2008;9(9):R142. doi: 10.1186/gb-2008-9-9-r142.
The evolutionary rate of a protein is a basic measure of evolution at the molecular level. Previous studies have shown that genes expressed in the brain have significantly lower evolutionary rates than those expressed in somatic tissues.
We study the evolutionary rates of genes expressed in 21 different human brain regions. We find that genes highly expressed in the more recent cortical regions of the brain have lower evolutionary rates than genes highly expressed in subcortical regions. This may partially result from the observation that genes that are highly expressed in cortical regions tend to be highly expressed in subcortical regions, and thus their evolution faces a richer set of functional constraints. The frequency of mammal-specific and primate-specific genes is higher in the highly expressed gene sets of subcortical brain regions than in those of cortical brain regions. The basic inverse correlation between evolutionary rate and gene expression is significantly stronger in brain versus nonbrain tissues, and in cortical versus subcortical regions. Extending upon this cortical/subcortical trend, this inverse correlation is generally more marked for tissues that are located higher along the cranial vertical axis during development, giving rise to the possibility that these tissues are also more evolutionarily recent.
We find that cortically expressed genes are more conserved than subcortical ones, and that gene expression levels exert stronger constraints on sequence evolution in cortical versus subcortical regions. Taken together, these findings suggest that cortically expressed genes are under stronger selective pressure than subcortically expressed genes.
蛋白质的进化速率是分子水平进化的一项基本衡量指标。先前的研究表明,在大脑中表达的基因的进化速率显著低于在体细胞组织中表达的基因。
我们研究了在21个不同人类脑区中表达的基因的进化速率。我们发现,在大脑较新的皮质区域中高表达的基因,其进化速率低于在皮质下区域中高表达的基因。这可能部分源于以下观察结果:在皮质区域高表达的基因往往在皮质下区域也高表达,因此它们的进化面临着更丰富的功能限制集合。在皮质下脑区的高表达基因集中,哺乳动物特异性和灵长类特异性基因的频率高于皮质脑区的高表达基因集。进化速率与基因表达之间的基本负相关在脑与非脑组织以及皮质与皮质下区域中显著更强。基于这种皮质/皮质下趋势进行拓展,这种负相关在发育过程中沿颅垂直轴位置较高的组织中通常更为明显,这就产生了这些组织在进化上也更新近的可能性。
我们发现皮质表达的基因比皮质下表达的基因更保守,并且基因表达水平在皮质与皮质下区域对序列进化施加了更强的限制。综上所述,这些发现表明皮质表达的基因比皮质下表达的基因承受着更强的选择压力。