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Ancient Duplications and Expression Divergence in the Globin Gene Superfamily of Vertebrates: Insights from the Elephant Shark Genome and Transcriptome

机译:脊椎动物球蛋白基因超家族中的古代复制和表达差异:来自象鲨基因组和转录组的见解

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摘要

Comparative analyses of vertebrate genomes continue to uncover a surprising diversity of genes in the globin gene superfamily, some of which have very restricted phyletic distributions despite their antiquity. Genomic analysis of the globin gene repertoire of cartilaginous fish (Chondrichthyes) should be especially informative about the duplicative origins and ancestral functions of vertebrate globins, as divergence between Chondrichthyes and bony vertebrates represents the most basal split within the jawed vertebrates. Here, we report a comparative genomic analysis of the vertebrate globin gene family that includes the complete globin gene repertoire of the elephant shark (Callorhinchus milii). Using genomic sequence data from representatives of all major vertebrate classes, integrated analyses of conserved synteny and phylogenetic relationships revealed that the last common ancestor of vertebrates possessed a repertoire of at least seven globin genes: single copies of androglobin and neuroglobin, four paralogous copies of globin X, and the single-copy progenitor of the entire set of vertebrate-specific globins. Combined with expression data, the genomic inventory of elephant shark globins yielded four especially surprising findings: 1) there is no trace of the neuroglobin gene (a highly conserved gene that is present in all other jawed vertebrates that have been examined to date), 2) myoglobin is highly expressed in heart, but not in skeletal muscle (reflecting a possible ancestral condition in vertebrates with single-circuit circulatory systems), 3) elephant shark possesses two highly divergent globin X paralogs, one of which is preferentially expressed in gonads, and 4) elephant shark possesses two structurally distinct α-globin paralogs, one of which is preferentially expressed in the brain. Expression profiles of elephant shark globin genes reveal distinct specializations of function relative to orthologs in bony vertebrates and suggest hypotheses about ancestral functions of vertebrate globins.
机译:脊椎动物基因组的比较分析继续发现珠蛋白基因超家族中令人惊讶的基因多样性,其中一些尽管具有悠久的历史,但它们的系统分布却非常有限。软骨鱼(Chondrichthyes)球蛋白基因库的基因组分析应特别有益于脊椎动物球蛋白的重复来源和祖先功能,因为软骨鱼和骨脊椎动物之间的差异代表了有颚脊椎动物中最基础的分裂。在这里,我们报告了脊椎动物球蛋白基因家族的比较基因组分析,其中包括象鲨(Callorhinchus milii)的完整球蛋白基因库。使用来自所有主要脊椎动物类别的代表的基因组序列数据,对保守性同构关系和系统发育关系的综合分析显示,脊椎动物的最后共同祖先拥有至少七个球蛋白基因库:单拷贝的雄球蛋白和神经球蛋白,四个旁系的球蛋白X,以及整个脊椎动物特异性球蛋白的单拷贝祖细胞。结合表达数据,象鲨珠蛋白的基因组学清单产生了四个特别令人惊讶的发现:1)没有发现神经珠蛋白基因的痕迹(迄今为止,所有其他有颚脊椎动物中都存在高度保守的基因),2 )肌红蛋白在心脏中高表达,但在骨骼肌中不高表达(反映出单回路循环系统脊椎动物可能存在的祖先状况),3)象鲨拥有两个高度分歧的球蛋白X旁系同源物,其中一个优先在性腺中表达, 4)象鲨拥有两个结构上不同的α-珠蛋白旁系同源物,其中一个优先在大脑中表达。象鲨珠蛋白基因的表达谱揭示了相对于直系同源物在骨脊椎动物中功能的独特性,并提出了有关脊椎动物球蛋白祖先功能的假设。

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