首页> 美国卫生研究院文献>G3: GenesGenomesGenetics >Comparative Mapping Between Coho Salmon (Oncorhynchus kisutch) and Three Other Salmonids Suggests a Role for Chromosomal Rearrangements in the Retention of Duplicated Regions Following a Whole Genome Duplication Event
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Comparative Mapping Between Coho Salmon (Oncorhynchus kisutch) and Three Other Salmonids Suggests a Role for Chromosomal Rearrangements in the Retention of Duplicated Regions Following a Whole Genome Duplication Event

机译:Coho鲑鱼(Oncorhynchus kisutch)和其他三种鲑鱼之间的比较映射表明染色体重排在整个基因组复制事件发生后保留重复区域中的作用。

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摘要

Whole genome duplication has been implicated in evolutionary innovation and rapid diversification. In salmonid fishes, however, whole genome duplication significantly pre-dates major transitions across the family, and re-diploidization has been a gradual process between genomes that have remained essentially collinear. Nevertheless, pairs of duplicated chromosome arms have diverged at different rates from each other, suggesting that the retention of duplicated regions through occasional pairing between homeologous chromosomes may have played an evolutionary role across species pairs. Extensive chromosomal arm rearrangements have been a key mechanism involved in re-dipliodization of the salmonid genome; therefore, we investigated their influence on degree of differentiation between homeologs across salmon species. We derived a linkage map for coho salmon and performed comparative mapping across syntenic arms within the genus Oncorhynchus, and with the genus Salmo, to determine the phylogenetic relationship between chromosome arrangements and the retention of undifferentiated duplicated regions. A 6596.7 cM female coho salmon map, comprising 30 linkage groups with 7415 and 1266 nonduplicated and duplicated loci, respectively, revealed uneven distribution of duplicated loci along and between chromosome arms. These duplicated regions were conserved across syntenic arms across Oncorhynchus species and were identified in metacentric chromosomes likely formed ancestrally to the divergence of Oncorhynchus from Salmo. These findings support previous studies in which observed pairings involved at least one metacentric chromosome. Re-diploidization in salmon may have been prevented or retarded by the formation of metacentric chromosomes after the whole genome duplication event and may explain lineage-specific innovations in salmon species if functional genes are found in these regions.
机译:全基因组复制与进化创新和快速多样化有关。然而,在鲑鱼中,整个基因组的复制早于整个家族的重大转变,并且重新二倍体化一直是基本保持共线的基因组之间的渐进过程。然而,成对的复制染色体臂以彼此不同的速率分开,这表明通过同源染色体之间的偶然配对而保留的复制区域可能在物种对之间起着进化的作用。广泛的染色体臂重排已成为鲑鱼基因组再扩增的关键机制。因此,我们研究了它们对鲑鱼同源同源物之间分化程度的影响。我们推导了银大麻哈鱼的连锁图,并在Oncorhynchus属和Salmo属之间的同系臂之间进行了比较作图,以确定染色体排列与未分化重复区域的保留之间的系统发育关系。一张6596.7 cM的雌性coho鲑鱼图,包括30个连锁组,分别具有7415和1266个非重复和重复的基因座,揭示了沿着染色体臂和在染色体臂之间的重复基因座分布不均。这些重复的区域在整个Onhyhynchus物种的同义臂之间是保守的,并在可能是从Onmohyhynchus与Salmo分化的祖先形成的亚中心染色体中鉴定出来。这些发现支持了先前的研究,其中观察到的配对涉及至少一个亚中心染色体。整个基因组复制事件发生后,亚中心染色体的形成可能阻止或阻碍了鲑鱼的再二倍化,如果在这些区域发现了功能基因,则可能解释了鲑鱼物种的谱系特异性创新。

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