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Avian Genomes Revisited: Hidden Genes Uncovered and the Rates versus Traits Paradox in Birds

机译:重新审视鸟类基因组:发现隐藏的基因以及鸟类的比率与性状悖论

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摘要

According to current assemblies, avian genomes differ from those of the other lineages of amniotes in 1) containing a lower number of genes; 2) displaying a high stability of karyotype and recombination map; and 3) lacking any correlation between evolutionary rates (dN/dS) and life-history traits, unlike mammals and nonavian reptiles. We question the reality of the bird missing genes and investigate whether insufficient representation of bird gene content might have biased previous evolutionary analyses. Mining RNAseq data, we show that the vast majority of the genes missing from avian genome assemblies are actually present in most species of birds. These mainly correspond to the GC-rich fraction of the bird genome, which is the most difficult to sequence, assemble and annotate. With the inclusion of these genes in a phylogenomic analysis of high-quality alignments, we uncover a positive and significant correlation between the ratio of nonsynonymous to synonymous substitution rate (dN/dS) and life-history traits in Neoaves. We report a strong effect of GC-biased gene conversion on the dN/dS ratio in birds and a peculiar behavior of Palaeognathae (ostrich and allies) and Galloanserae (chickens, ducks and allies). Avian genomes do not contain fewer genes than mammals or nonavian reptiles. Previous analyses have overlooked ~15 of the bird gene complement. GC-rich regions, which are the most difficult to access, are a key component of amniote genomes. They experience peculiar molecular processes and must be included for unbiased functional and comparative genomic analyses in birds.
机译:根据目前的组装,鸟类基因组与其他羊膜动物谱系的基因组不同:1)包含较少数量的基因;2)核型和重组图谱稳定性高;3)与哺乳动物和非鸟类爬行动物不同,进化速率(dN / dS)与生活史特征之间缺乏任何相关性。我们质疑鸟类缺失基因的真实性,并调查鸟类基因含量的不足是否可能使先前的进化分析产生偏差。通过挖掘RNAseq数据,我们发现鸟类基因组组装中缺失的绝大多数基因实际上存在于大多数鸟类中。这些主要对应于鸟类基因组中富含GC的部分,这是最难测序、组装和注释的。通过将这些基因纳入高质量比对的系统发育分析中,我们发现了 Neoaves 中非同义替换率与同义替换率 (dN/dS) 与生活史性状之间的正相关和显着相关性。我们报告了 GC 偏向基因转换对鸟类 dN/dS 比率的强烈影响,以及古颌科(鸵鸟和盟友)和 Galloanserae(鸡、鸭和盟友)的特殊行为。鸟类基因组包含的基因并不比哺乳动物或非鸟类爬行动物少。以前的分析忽略了~15%的鸟类基因补体。富含GC的区域是最难进入的,是羊膜动物基因组的关键组成部分。它们经历了特殊的分子过程,必须包括在鸟类中进行无偏倚的功能和比较基因组分析。

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