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Characterization of a pericentric inversion in plateau fence lizards (Sceloporus tristichus): evidence from chromosome-scale genomes

机译:高原围栏蜥蜴(CoLoforus Tristichus)中泌乳反演的表征:来自染色体尺度基因组的证据

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摘要

Spiny lizards in the genus Sceloporus are a model system among squamate reptiles for studies of chromosomal evolution. While most pleurodont iguanians retain an ancestral karyotype formula of 2n = 36 chromosomes, Sceloporus exhibits substantial karyotype variation ranging from 2n =  22 to 46 chromosomes. We present two annotated chromosome-scale genome assemblies for the Plateau Fence Lizard (Sceloporus tristichus) to facilitate research on the role of pericentric inversion polymorphisms on adaptation and speciation. Based on previous karyotype work using conventional staining, the S. tristichus genome is characterized as 2n =  22 with six pairs of macrochromosomes and five pairs of microchromosomes and a pericentric inversion polymorphism on chromosome 7 that is geographically variable. We provide annotated, chromosome-scale genomes for two lizards located at opposite ends of a dynamic hybrid zone that are each fixed for different inversion polymorphisms. The assembled genomes are 1.84–1.87 Gb (1.72 Gb for scaffolds mapping to chromosomes) with a scaffold N50 of 267.5 Mb. Functional annotation of the genomes resulted in ∼15K predicted gene models. Our assemblies confirmed the presence of a 4.62-Mb pericentric inversion on chromosome 7, which contains 62 annotated coding genes with known functions. In addition, we collected population genomics data using double digest RAD-sequencing for 44 S. tristichus to estimate population structure and phylogeny across the Colorado Plateau. These new genomic resources provide opportunities to perform genomic scans and investigate the formation and spread of pericentric inversions in a naturally occurring hybrid zone.
机译:在CoLoforus中的刺蜥蜴是鳞片爬行动物中的模型系统,用于研究染色体进化。虽然大多数Pleurodont Iguanians保留了祖先核型公式的2N = 36染色体,但CoLoforus表现出从2N = 22-46染色体的大量核型变化。我们为高原围栏蜥蜴(CoOloforus Tristichus)提出了两个带有的染色体尺度基因组组件,以促进终端反转多态性对适应和形态的作用。基于先前的核型使用常规染色,S. Tristichus Genome的表征为2N = 22,六对宏观瘤组和五对微颅形元素和在染色体7上具有地理上可变的泌乳倒置多态性。我们为位于动态混合区域的相对端的两个蜥蜴提供注释,染色体尺寸基因组,每个蜥蜴各自固定用于不同的反转多态性。组装的基因组为1.84-1.87GB(用于染色体的支架映射的1.72GB),具有267.5mb的支架N50。基因组的功能注释导致〜15K预测基因模型。我们的组件确认存在于染色体7上4.62mb的终点反演,其含有具有已知功能的62个注释的编码基因。此外,我们使用双重摘要Rad-Resements为44秒的Tristichus收集群体基因组学数据,以估计Colorado高原的群体结构和系统发生。这些新的基因组资源提供了执行基因组扫描的机会,并调查在天然存在的杂交区中的渗透反应的形成和传播。

著录项

  • 期刊名称 G3: GenesGenomesGenetics
  • 作者

    Ana M Bedoya; Adam D Leaché;

  • 作者单位
  • 年(卷),期 2021(11),2
  • 年度 2021
  • 页码 jkab036
  • 总页数 5
  • 原文格式 PDF
  • 正文语种
  • 中图分类 遗传学;
  • 关键词

    机译:染色体重排;DDRADSEQ;基因组测序;杂交区;渗透反转;

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