首页> 美国卫生研究院文献>G3: GenesGenomesGenetics >A Dense Linkage Map for Chinook salmon (Oncorhynchus tshawytscha) Reveals Variable Chromosomal Divergence After an Ancestral Whole Genome Duplication Event
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A Dense Linkage Map for Chinook salmon (Oncorhynchus tshawytscha) Reveals Variable Chromosomal Divergence After an Ancestral Whole Genome Duplication Event

机译:奇努克鲑鱼(Oncorhynchus tshawytscha)的密集连锁图显示了祖先全基因组复制事件后可变的染色体发散

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摘要

Comparisons between the genomes of salmon species reveal that they underwent extensive chromosomal rearrangements following whole genome duplication that occurred in their lineage 58−63 million years ago. Extant salmonids are diploid, but occasional pairing between homeologous chromosomes exists in males. The consequences of re-diploidization can be characterized by mapping the position of duplicated loci in such species. Linkage maps are also a valuable tool for genome-wide applications such as genome-wide association studies, quantitative trait loci mapping or genome scans. Here, we investigated chromosomal evolution in Chinook salmon (Oncorhynchus tshawytscha) after genome duplication by mapping 7146 restriction-site associated DNA loci in gynogenetic haploid, gynogenetic diploid, and diploid crosses. In the process, we developed a reference database of restriction-site associated DNA loci for Chinook salmon comprising 48528 non-duplicated loci and 6409 known duplicated loci, which will facilitate locus identification and data sharing. We created a very dense linkage map anchored to all 34 chromosomes for the species, and all arms were identified through centromere mapping. The map positions of 799 duplicated loci revealed that homeologous pairs have diverged at different rates following whole genome duplication, and that degree of differentiation along arms was variable. Many of the homeologous pairs with high numbers of duplicated markers appear conserved with other salmon species, suggesting that retention of conserved homeologous pairing in some arms preceded species divergence. As chromosome arms are highly conserved across species, the major resources developed for Chinook salmon in this study are also relevant for other related species.
机译:鲑鱼物种的基因组之间的比较表明,它们在58-63百万年前在其谱系中发生了全基因组复制后经历了广泛的染色体重排。现存的鲑鱼类是二倍体,但雄性中同源染色体之间偶有配对。重二倍体化的后果可以通过绘制此类物种中重复基因座的位置来表征。连锁图谱也是全基因组应用的宝贵工具,例如全基因组关联研究,定量性状位点作图或基因组扫描。在这里,我们通过绘制雌核单倍体,雌核二倍体和二倍体杂交中的7146个限制性位点相关的DNA位点,研究了基因组复制后奇努克鲑鱼(Oncorhynchus tshawytscha)的染色体进化。在此过程中,我们开发了奇努克鲑鱼限制性内切酶相关DNA基因座的参考数据库,其中包括48528个非重复基因座和6409个已知重复基因座,这将有助于基因座鉴定和数据共享。我们创建了一个非常紧密的连锁图谱,锚定该物种的所有34条染色体,并通过着丝粒图谱确定了所有臂。 799个重复基因座的图谱位置显示,在全基因组复制后,同源对以不同的速率发生了分化,并且沿臂的分化程度是可变的。许多具有大量重复标记的同源序列对似乎与其他鲑鱼物种保守,这表明在某些物种中,某些物种中保守同源对的保留是先于物种发散。由于跨物种的染色体臂高度保守,因此这项研究中为奇努克鲑开发的主要资源也与其他相关物种有关。

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