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The fate of recent duplicated genes following a fourth-round whole genome duplication in a tetraploid fish, common carp (Cyprinus carpio)

机译:近四轮全基因组重复在四倍体鱼中,常见的鲤鱼( cyprinus carpio

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Whole genome duplication (WGD) results in extensive genetic redundancy. In plants and yeast, WGD is followed by rapid gene deletions and intense expression differentiation with slow functional divergence. However, the early evolution of the gene differentiation processes is poorly understood in vertebrates because almost all studied WGDs are extremely ancient, and the genomes have returned to a diploid status. Common carp had a very recent fourth round of WGD dated to 8 million years ago. It therefore constitutes an ideal model to study early-stage functional divergence and expression differentiation in vertebrates. We identified 1,757 pairs of recently duplicated genes (RDGs) originating from this specific WGD and found that most ancestral genes were retained in duplicate. Most RDGs were conserved and under selective pressure. Gene expression analysis across six tissues revealed that 92.5% of RDG pairs were co-expressed in at least one tissue and that the expression of nearly half pairs ceased to be strongly correlated, indicating slow spatial divergence but rapid expression dissociation. Functional comparison revealed that 25% of pairs had functional divergence, of which neo- and sub-functionalization were the main outcomes. Our analysis revealed slow gene loss but rapid and intense expression and function differentiation after WGD.
机译:全基因组重复(WGD)导致广泛的遗传冗余。在植物和酵母中,WGD随后是快速基因缺失和强烈的表达分化,具有缓慢的功能性分歧。然而,在脊椎动物中,基因分化过程的早期演化很差,因为几乎所有研究的WGD都非常古老,并且基因组已经恢复到二倍体状态。普通的鲤鱼在最近的第四轮WGD日期为800万年前。因此,它构成了研究脊椎动物早期函数分歧和表达分化的理想模型。我们确定了来自该特定WGD的1,757对最近重复的基因(RDGS),发现大多数祖先基因重复保留。大多数rdgs都是保守的并且在选择性压力下。六种组织中的基因表达分析显示,92.5%的RDG对在至少一个组织中共同表达,并且近半对的表达被停止强烈地相关,表明缓慢的空间发散但快速的表达解离。功能比较显示,25%的对具有功能性分歧,其中新和子官能化是主要结果。我们的分析显示,WGD后的基因损失较慢,但表达迅速和激烈的表达和功能分化。

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