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鲤科鱼类MHC IIβ基因的进化与跨物种多态性

Evolution and trans-species polymorphism of MHC class IIbeta genes in cyprinid fish.

作者信息

Ottová Eva, Simková Andrea, Martin Jean-François, de Bellocq Joëlle Goüy, Gelnar Milan, Allienne Jean-François, Morand Serge

机构信息

Department of Zoology and Ecology, Faculty of Science, Masaryk University, Kotlárská 2, 61137 Brno, Czech Republic.

出版信息

Fish Shellfish Immunol. 2005 Mar;18(3):199-222. doi: 10.1016/j.fsi.2004.07.004.

Abstract

The polymorphism of DAB genes encoding MHC IIbeta was investigated in 11 cyprinid species from central Europe. The species belonged to four subfamilies: Cyprininae, Tincinae, Gobioninae and Leuciscinae. Two paralogous groups of sequences, DAB1 and DAB3, were recognised according to the similarity of their nucleotide and amino-acid sequences and from phylogenetic analyses using either partial exon 2 or partial exon 3 sequences. A high allelic variability among species was found for exon 2, indicating extensive MHC polymorphism. Time divergence estimation supports the separation of DAB1 and DAB3 groups predating the separation into fish subfamilies, and a cyprinid origin of the DAB genes. Phylogenetic trees using exon 2 support the hypothesis of trans-species polymorphism, which appears to be limited to the subfamily level, i.e. the presence of sequences from different species in the same allelic group was more often recognised within subfamilies Cyprininae and Leuciscinae than between them. Phylogenetic trees using exon 3 reflect the phylogenetic patterns previously found for Cyprinidae systematics. Specific nucleotides and amino-acids in exon 3 that separate both subfamilies, as well as the species within the Cyprininae subfamily were observed. A lack of segregation in leuciscin species was recognised and the alleles of different leuciscin species tend to share similar motifs in exon 3. This could be explained by the ancient and complicated dispersion history of Cyprininae and the radiation of Leuciscinae. The effects of selective pressures were investigated: (1) within species, (2) among lineages, and (3) among sites. From intraspecific analyses, exon 2 sequences were identified as the targets of diversifying selection, whilst the evolution of exon 3 seems to be under the influence of purifying selection. The analyses among lineages indicate positive selection in many branches when using exon 2, therefore confirming trans-species polymorphism, whilst the DAB lineages of exon 3 are potentially submitted to purifying selection to some extent. Moreover, our results suggest the secondary acquisition of function of DAB1 group after duplication. The analyses among sites reveal that exon 2 exhibits sites under positive selection mostly corresponding to the putative PBR sites involved in the alpha-helix structure of the protein.

摘要

我们对来自中欧的11种鲤科鱼类中编码MHC IIβ的DAB基因的多态性进行了研究。这些物种分属于四个亚科:鲤亚科、丁鱥亚科、鮈亚科和雅罗鱼亚科。根据核苷酸和氨基酸序列的相似性以及使用部分外显子2或部分外显子3序列进行的系统发育分析,识别出了两个同源序列组,即DAB1和DAB3。外显子2在物种间表现出高度的等位基因变异性,表明存在广泛的MHC多态性。时间分歧估计支持DAB1和DAB3组的分离早于鱼类亚科的分离,以及DAB基因的鲤科起源。使用外显子2构建的系统发育树支持跨物种多态性的假设,这种多态性似乎仅限于亚科水平,即同一等位基因组中来自不同物种的序列在鲤亚科和雅罗鱼亚科内比在它们之间更常被识别。使用外显子3构建的系统发育树反映了先前在鲤科系统发育中发现的系统发育模式。观察到外显子3中区分两个亚科以及鲤亚科内物种的特定核苷酸和氨基酸。在雅罗鱼亚科物种中未发现分离现象,不同雅罗鱼亚科物种的等位基因在外显子3中倾向于共享相似的基序。这可以用鲤亚科古老而复杂的扩散历史以及雅罗鱼亚科的辐射来解释。我们研究了选择压力的影响:(1) 在物种内,(2) 在谱系间,以及(3) 在位点间。从种内分析来看,外显子2序列被确定为多样化选择的目标,而外显子3的进化似乎受到纯化选择的影响。谱系间分析表明,使用外显子2时许多分支存在正选择,从而证实了跨物种多态性,而外显子3的DAB谱系在一定程度上可能受到纯化选择。此外, 我们的结果表明DAB1组在复制后功能的二次获得。位点间分析表明,外显子2表现出正选择位点,这些位点大多对应于蛋白质α螺旋结构中假定的PBR位点。

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