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β-珠蛋白基因家族中的基因转换与功能分化

Gene conversion and functional divergence in the beta-globin gene family.

作者信息

Aguileta Gabriela, Bielawski Joseph P, Yang Ziheng

机构信息

Department of Biology, University College London, Darwin Building, Gower Street, WC1E 6BT, London, England.

出版信息

J Mol Evol. 2004 Aug;59(2):177-89. doi: 10.1007/s00239-004-2612-0.

Abstract

Different models of gene family evolution have been proposed to explain the mechanism whereby gene copies created by gene duplications are maintained and diverge in function. Ohta proposed a model which predicts a burst of nonsynonymous substitutions following gene duplication and the preservation of duplicates through positive selection. An alternative model, the duplication-degeneration-complementation (DDC) model, does not explicitly require the action of positive Darwinian selection for the maintenance of duplicated gene copies, although purifying selection is assumed to continue to act on both copies. A potential outcome of the DDC model is heterogeneity in purifying selection among the gene copies, due to partitioning of subfunctions which complement each other. By using the d(N)/ d(S) (omega) rate ratio to measure selection pressure, we can distinguish between these two very different evolutionary scenarios. In this study we investigated these scenarios in the beta-globin family of genes, a textbook example of evolution by gene duplication. We assembled a comprehensive dataset of 72 vertebrate beta-globin sequences. The estimated phylogeny suggested multiple gene duplication and gene conversion events. By using different programs to detect recombination, we confirmed several cases of gene conversion and detected two new cases. We tested evolutionary scenarios derived from Ohta's model and the DDC model by examining selective pressures along lineages in a phylogeny of beta-globin genes in eutherian mammals. We did not find significant evidence for an increase in the omega ratio following major duplication events in this family. However, one exception to this pattern was the duplication of gamma-globin in simian primates, after which a few sites were identified to be under positive selection. Overall, our results suggest that following gene duplications, paralogous copies of beta-globin genes evolved under a nonepisodic process of functional divergence.

摘要

人们提出了不同的基因家族进化模型来解释基因复制产生的基因拷贝得以维持并在功能上发生分化的机制。太田提出了一个模型,该模型预测基因复制后非同义替换会激增,并通过正选择来保留复制基因。另一种模型,即复制-退化-互补(DDC)模型,虽然假定纯化选择继续作用于两个拷贝,但并不明确要求正达尔文选择的作用来维持复制的基因拷贝。DDC模型的一个潜在结果是,由于相互补充的亚功能的划分,基因拷贝之间的纯化选择存在异质性。通过使用d(N)/d(S)(ω)比率来衡量选择压力,我们可以区分这两种截然不同的进化情景。在本研究中,我们在β-珠蛋白基因家族中研究了这些情景,该家族是基因复制进化的一个典型例子。我们组装了一个包含72个脊椎动物β-珠蛋白序列的综合数据集。估计的系统发育表明存在多个基因复制和基因转换事件。通过使用不同的程序检测重组,我们证实了几例基因转换,并发现了两例新的基因转换。我们通过检查真兽亚纲哺乳动物β-珠蛋白基因系统发育中各谱系上 的选择压力,测试了源自太田模型和DDC模型的进化情景。我们没有找到显著证据表明该家族主要复制事件后ω比率增加。然而,这一模式的一个例外是猿猴灵长类动物中γ-珠蛋白的复制,之后发现一些位点处于正选择之下。总体而言,我们的结果表明,基因复制后,β-珠蛋白基因的旁系同源拷贝在功能分化的非偶发过程中进化。

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