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对已测序硬骨鱼类基因组中基因重复模式的分析:最近串联重复介导的快速谱系特异性基因组扩张的证据。

Profiling of gene duplication patterns of sequenced teleost genomes: evidence for rapid lineage-specific genome expansion mediated by recent tandem duplications.

机构信息

Department of Fisheries and Allied Aquacultures and Program of Cell and Molecular Biosciences, Auburn University, Auburn, AL 36849, USA.

出版信息

BMC Genomics. 2012 Jun 15;13:246. doi: 10.1186/1471-2164-13-246.

Abstract

BACKGROUND

Gene duplication has had a major impact on genome evolution. Localized (or tandem) duplication resulting from unequal crossing over and whole genome duplication are believed to be the two dominant mechanisms contributing to vertebrate genome evolution. While much scrutiny has been directed toward discerning patterns indicative of whole-genome duplication events in teleost species, less attention has been paid to the continuous nature of gene duplications and their impact on the size, gene content, functional diversity, and overall architecture of teleost genomes.

RESULTS

Here, using a Markov clustering algorithm directed approach we catalogue and analyze patterns of gene duplication in the four model teleost species with chromosomal coordinates: zebrafish, medaka, stickleback, and Tetraodon. Our analyses based on set size, duplication type, synonymous substitution rate (Ks), and gene ontology emphasize shared and lineage-specific patterns of genome evolution via gene duplication. Most strikingly, our analyses highlight the extraordinary duplication and retention rate of recent duplicates in zebrafish and their likely role in the structural and functional expansion of the zebrafish genome. We find that the zebrafish genome is remarkable in its large number of duplicated genes, small duplicate set size, biased Ks distribution toward minimal mutational divergence, and proportion of tandem and intra-chromosomal duplicates when compared with the other teleost model genomes. The observed gene duplication patterns have played significant roles in shaping the architecture of teleost genomes and appear to have contributed to the recent functional diversification and divergence of important physiological processes in zebrafish.

CONCLUSIONS

We have analyzed gene duplication patterns and duplication types among the available teleost genomes and found that a large number of genes were tandemly and intrachromosomally duplicated, suggesting their origin of independent and continuous duplication. This is particularly true for the zebrafish genome. Further analysis of the duplicated gene sets indicated that a significant portion of duplicated genes in the zebrafish genome were of recent, lineage-specific duplication events. Most strikingly, a subset of duplicated genes is enriched among the recently duplicated genes involved in immune or sensory response pathways. Such findings demonstrated the significance of continuous gene duplication as well as that of whole genome duplication in the course of genome evolution.

摘要

背景

基因复制对基因组的进化产生了重大影响。不均等交叉和全基因组复制导致的局部(或串联)复制被认为是导致脊椎动物基因组进化的两种主要机制。虽然人们对辨别鱼类物种中全基因组复制事件的模式进行了大量研究,但对基因复制的连续性及其对鱼类基因组大小、基因含量、功能多样性和整体结构的影响关注较少。

结果

在这里,我们使用基于马尔可夫聚类算法的方法,对具有染色体坐标的四种模式鱼类(斑马鱼、青鳉、棘鱼和东方鲀)中的基因复制模式进行分类和分析。我们的分析基于集合大小、复制类型、同义替代率(Ks)和基因本体论,强调了通过基因复制共享和谱系特异性的基因组进化模式。最引人注目的是,我们的分析强调了斑马鱼中最近复制的基因的惊人复制和保留率,以及它们在斑马鱼基因组结构和功能扩展中的可能作用。我们发现,与其他鱼类模型基因组相比,斑马鱼基因组具有大量的重复基因、小的重复集大小、偏向最小突变分歧的 Ks 分布以及串联和染色体内重复的比例,这是非常显著的。观察到的基因复制模式在塑造鱼类基因组的结构方面发挥了重要作用,并似乎促成了斑马鱼中重要生理过程的近期功能多样化和分化。

结论

我们分析了现有鱼类基因组中的基因复制模式和复制类型,发现大量基因是串联和染色体内重复的,这表明它们起源于独立和连续的复制。这对斑马鱼基因组尤其如此。对重复基因集的进一步分析表明,斑马鱼基因组中大量重复基因是最近发生的谱系特异性复制事件的产物。最引人注目的是,一部分重复基因在涉及免疫或感觉反应途径的最近复制基因中富集。这些发现表明,连续基因复制以及全基因组复制在基因组进化过程中具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c9f/3464592/48cf2b26157d/1471-2164-13-246-1.jpg

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