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评估脊索动物中加速的蛋白质进化是在基因复制之前、之后还是与基因复制同时发生的。

Evaluation of whether accelerated protein evolution in chordates has occurred before, after, or simultaneously with gene duplication.

作者信息

Johnston Catrióna R, O'Dushlaine Colm, Fitzpatrick David A, Edwards Richard J, Shields Denis C

机构信息

UCD Conway Institute for Biomolecular and Biomedical Research, University College Dublin, Belfield, Dublin 4, Ireland.

出版信息

Mol Biol Evol. 2007 Jan;24(1):315-23. doi: 10.1093/molbev/msl162. Epub 2006 Oct 25.

Abstract

Gene duplication and loss are predicted to be at least of the order of the substitution rate and are key contributors to the development of novel gene function and overall genome evolution. Although it has been established that proteins evolve more rapidly after gene duplication, we were interested in testing to what extent this reflects causation or association. Therefore, we investigated the rate of evolution prior to gene duplication in chordates. Two patterns emerged; firstly, branches, which are both preceded by a duplication and followed by a duplication, display an elevated rate of amino acid replacement. This is reflected in the ratio of nonsynonymous to synonymous substitution (mean nonsynonymous to synonymous nucleotide substitution rate ratio [Ka:Ks]) of 0.44 compared with branches preceded by and followed by a speciation (mean Ka:Ks of 0.23). The observed patterns suggest that there can be simultaneous alteration in the selection pressures on both gene duplication and amino acid replacement, which may be consistent with co-occurring increases in positive selection, or alternatively with concurrent relaxation of purifying selection. The pattern is largely, but perhaps not completely, explained by the existence of certain families that have elevated rates of both gene duplication and amino acid replacement. Secondly, we observed accelerated amino acid replacement prior to duplication (mean Ka:Ks for postspeciation preduplication branches was 0.27). In some cases, this could reflect adaptive changes in protein function precipitating a gene duplication event. In conclusion, the circumstances surrounding the birth of new proteins may frequently involve a simultaneous change in selection pressures on both gene-copy number and amino acid replacement. More precise modeling of the relative importance of preduplication, postduplication, and simultaneous amino acid replacement will require larger and denser genomic data sets from multiple species, allowing simultaneous estimation of lineage-specific fluctuations in mutation rates and adaptive constraints.

摘要

基因复制和丢失预计至少与替换率处于同一数量级,并且是新基因功能发展和整个基因组进化的关键因素。尽管已经确定基因复制后蛋白质进化得更快,但我们感兴趣的是测试这在多大程度上反映了因果关系或关联。因此,我们研究了脊索动物基因复制前的进化速率。出现了两种模式;首先,那些在复制之前和之后都有复制的分支,显示出氨基酸替换率升高。这反映在非同义替换与同义替换的比率(平均非同义核苷酸替换率与同义核苷酸替换率之比[Ka:Ks])为0.44,而在物种形成之前和之后的分支(平均Ka:Ks为0.23)。观察到的模式表明,在基因复制和氨基酸替换上的选择压力可能会同时发生改变,这可能与正选择的同时增加一致,或者与纯化选择的同时放松一致。这种模式在很大程度上,但可能不是完全由某些基因复制率和氨基酸替换率都升高的家族的存在来解释。其次,我们观察到在复制之前氨基酸替换加速(物种形成后复制前分支的平均Ka:Ks为0.27)。在某些情况下,这可能反映了蛋白质功能的适应性变化引发了基因复制事件。总之,新蛋白质诞生时的情况可能经常涉及基因拷贝数和氨基酸替换上的选择压力同时发生变化。对复制前、复制后以及同时发生的氨基酸替换的相对重要性进行更精确的建模将需要来自多个物种的更大、更密集的基因组数据集,以便同时估计突变率和适应性限制的谱系特异性波动。

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