Scherman Kristin, Råberg Lars, Westerdahl Helena
Department of Biology, MEMEG, Lund University, Sölvegatan 37, 223 62, Lund, Sweden,
J Mol Evol. 2014 May;78(5):293-305. doi: 10.1007/s00239-014-9618-z. Epub 2014 Apr 20.
The major histocompatibility complex (MHC) class IIB genes show considerable sequence similarity between loci. The MHC class II DQB and DRB genes are known to exhibit a high level of polymorphism, most likely maintained by parasite-mediated selection. Studies of the MHC in wild rodents have focused on DRB, whilst DQB has been given much less attention. Here, we characterised DQB genes in Swedish bank voles Myodes glareolus, using full-length transcripts. We then designed primers that specifically amplify exon 2 from DRB (202 bp) and DQB (205 bp) and investigated molecular signatures of natural selection on DRB and DQB alleles. The presence of two separate gene clusters was confirmed using BLASTN and phylogenetic analysis, where our seven transcripts clustered according to either DQB or DRB homologues. These gene clusters were again confirmed on exon 2 data from 454-amplicon sequencing. Our DRB primers amplify a similar number of alleles per individual as previously published DRB primers, though our reads are longer. Traditional d N/d S analyses of DRB sequences in the bank vole have not found a conclusive signal of positive selection. Using a more advanced substitution model (the Kumar method) we found positive selection in the peptide binding region (PBR) of both DRB and DQB genes. Maximum likelihood models of codon substitutions detected positively selected sites located in the PBR of both DQB and DRB. Interestingly, these analyses detected at least twice as many positively selected sites in DQB than DRB, suggesting that DQB has been under stronger positive selection than DRB over evolutionary time.
主要组织相容性复合体(MHC)IIB类基因在不同基因座之间表现出相当大的序列相似性。已知MHC II类DQB和DRB基因具有高度多态性,很可能是由寄生虫介导的选择所维持。对野生啮齿动物MHC的研究主要集中在DRB上,而DQB受到的关注则少得多。在这里,我们利用全长转录本对瑞典田鼠(Myodes glareolus)的DQB基因进行了表征。然后,我们设计了特异性扩增DRB(202 bp)和DQB(205 bp)外显子2的引物,并研究了DRB和DQB等位基因上自然选择的分子特征。使用BLASTN和系统发育分析证实了两个独立基因簇的存在,我们的七个转录本根据DQB或DRB同源物聚类。这些基因簇在454扩增子测序的外显子2数据上再次得到证实。我们的DRB引物每个个体扩增的等位基因数量与之前发表的DRB引物相似,不过我们的读数更长。对田鼠DRB序列进行的传统dN/dS分析尚未发现明确的正选择信号。使用更先进的替代模型(Kumar方法),我们在DRB和DQB基因的肽结合区(PBR)中发现了正选择。密码子替代的最大似然模型检测到位于DQB和DRB的PBR中的正选择位点。有趣的是,这些分析检测到DQB中的正选择位点数量至少是DRB中的两倍,这表明在进化过程中,DQB受到的正选择比DRB更强。