Department of Computer Science, Virginia Tech, Blacksburg, VA, USA.
BMC Evol Biol. 2010 May 1;10:125. doi: 10.1186/1471-2148-10-125.
Characteristics derived from mutation and other mechanisms that are advantageous for survival are often preserved during evolution by natural selection. Some genes are conserved in many organisms because they are responsible for fundamental biological function, others are conserved for their unique functional characteristics. Therefore one would expect the rate of molecular evolution for individual genes to be dependent on their biological function. Whether this expectation holds for genes duplicated by whole genome duplication is not known.
We empirically demonstrate here, using duplicated genes generated from the Arabidopsis thaliana alpha-duplication event, that the rate of molecular evolution of genes duplicated in this event depend on biological function. Using functional clustering based on gene ontology annotation of gene pairs, we show that some duplicated genes, such as defense response genes, are under weaker purifying selection or under stronger diversifying selection than other duplicated genes, such as protein translation genes, as measured by the ratio of nonsynonymous to synonymous divergence (dN/dS).
These results provide empirical evidence indicating that molecular evolution rate for genes duplicated in whole genome duplication, as measured by dN/dS, may depend on biological function, which we characterize using gene ontology annotation. Furthermore, the general approach used here provides a framework for comparative analysis of molecular evolution rate for genes based on their biological function.
在进化过程中,通过自然选择,有利于生存的突变和其他机制特征通常会被保留下来。一些基因在许多生物体中是保守的,因为它们负责基本的生物功能,而另一些基因则因其独特的功能特征而保守。因此,人们预计单个基因的分子进化速度取决于其生物学功能。对于由全基因组复制产生的重复基因,这种预期是否成立尚不清楚。
我们在这里通过使用拟南芥α复制事件产生的重复基因进行实证研究,证明了在这种事件中重复的基因的分子进化速度取决于生物学功能。通过基于基因本体注释的基因对功能聚类,我们表明,一些重复基因,如防御反应基因,比其他重复基因,如蛋白质翻译基因,受到较弱的净化选择或较强的多样化选择,这可以通过非同义替换与同义替换的比值(dN/dS)来衡量。
这些结果提供了经验证据,表明全基因组复制产生的重复基因的分子进化速度(以 dN/dS 衡量)可能取决于生物学功能,我们使用基因本体注释来描述这种功能。此外,这里使用的一般方法为基于基因生物学功能的比较分析提供了一个基因分子进化速度的分析框架。