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De novo assembly of the goldfish (Carassius auratus) genome and the evolution of genes after whole-genome duplication

机译:金鱼(Car鱼)基因组的从头组装和全基因组复制后基因的进化

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摘要

For over a thousand years, the common goldfish (Carassius auratus) was raised throughout Asia for food and as an ornamental pet. As a very close relative of the common carp (Cyprinus carpio), goldfish share the recent genome duplication that occurred approximately 14 million years ago in their common ancestor. The combination of centuries of breeding and a wide array of interesting body morphologies provides an exciting opportunity to link genotype to phenotype and to understand the dynamics of genome evolution and speciation. We generated a high-quality draft sequence and gene annotations of a “Wakin” goldfish using 71X PacBio long reads. The two subgenomes in goldfish retained extensive synteny and collinearity between goldfish and zebrafish. However, genes were lost quickly after the carp whole-genome duplication, and the expression of 30% of the retained duplicated gene diverged substantially across seven tissues sampled. Loss of sequence identity and/or exons determined the divergence of the expression levels across all tissues, while loss of conserved noncoding elements determined expression variance between different tissues. This assembly provides an important resource for comparative genomics and understanding the causes of goldfish variants.
机译:一千多年以来,常见的金鱼(Car鱼)在整个亚洲都被饲养作为食物和观赏宠物。作为鲤鱼(Cyprinus carpio)的近亲,金鱼拥有大约1400万年前在其共同祖先发生的最近的基因组复制。几个世纪的育种与各种各样有趣的身体形态相结合,为将基因型与表型联系起来并了解基因组进化和物种形成的动力学提供了令人兴奋的机会。我们使用71X PacBio长读法生成了“ Wakin”金鱼的高质量草稿序列和基因注释。金鱼中的两个亚基因组在金鱼和斑马鱼之间保留了广泛的共线性和共线性。然而,在鲤鱼全基因组复制后,基因迅速丢失,并且保留的复制基因中有30%的表达在采样的7个组织中基本不同。序列同一性和/或外显子的丧失决定了所有组织中表达水平的差异,而保守的非编码元件的丧失决定了不同组织之间的表达差异。该程序集为比较基因组学和了解金鱼变异的原因提供了重要资源。

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