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家养猫的线粒体基因组序列显示线粒体微卫星中的谱系扩张和动态突变过程。

Mitogenome sequences of domestic cats demonstrate lineage expansions and dynamic mutation processes in a mitochondrial minisatellite.

机构信息

Department of Genetics & Genome Biology, University of Leicester, University Road, Leicester, LE1 7RH, UK.

Present Address: Oxford Nanopore Technologies Plc., Oxford Science Park, Edmund Halley Rd, Oxford, OX4 4DQ, UK.

出版信息

BMC Genomics. 2023 Nov 17;24(1):690. doi: 10.1186/s12864-023-09789-1.

Abstract

BACKGROUND

As a population genetic tool, mitochondrial DNA is commonly divided into the ~ 1-kb control region (CR), in which single nucleotide variant (SNV) diversity is relatively high, and the coding region, in which selective constraint is greater and diversity lower, but which provides an informative phylogeny. In some species, the CR contains variable tandemly repeated sequences that are understudied due to heteroplasmy. Domestic cats (Felis catus) have a recent origin and therefore traditional CR-based analysis of populations yields only a small number of haplotypes.

RESULTS

To increase resolution we used Nanopore sequencing to analyse 119 cat mitogenomes via a long-amplicon approach. This greatly improves discrimination (from 15 to 87 distinct haplotypes in our dataset) and defines a phylogeny showing similar starlike topologies within all major clades (haplogroups), likely reflecting post-domestication expansion. We sequenced RS2, a CR tandem array of 80-bp repeat units, placing RS2 array structures within the phylogeny and increasing overall haplotype diversity. Repeat number varies between 3 and 12 (median: 4) with over 30 different repeat unit types differing largely by SNVs. Five SNVs show evidence of independent recurrence within the phylogeny, and seven are involved in at least 11 instances of rapid spread along repeat arrays within haplogroups.

CONCLUSIONS

In defining mitogenome variation our study provides key information for the forensic genetic analysis of cat hair evidence, and for the first time a phylogenetically informed picture of tandem repeat variation that reveals remarkably dynamic mutation processes at work in the mitochondrion.

摘要

背景

作为一种群体遗传学工具,线粒体 DNA 通常分为约 1kb 的控制区(CR),其单核苷酸变异(SNV)多样性较高,以及编码区,其选择约束较大,多样性较低,但提供了一个信息丰富的系统发育。在一些物种中,CR 包含可变串联重复序列,由于异质性而研究较少。家猫(Felis catus)起源较近,因此传统的基于 CR 的种群分析只能产生少数单倍型。

结果

为了提高分辨率,我们使用纳米孔测序通过长扩增子方法分析了 119 个猫线粒体基因组。这大大提高了分辨率(在我们的数据集从 15 个到 87 个不同的单倍型),并定义了一个系统发育,在所有主要分支(单倍群)中显示出类似的星状拓扑结构,可能反映了驯化后的扩张。我们对 RS2 进行了测序,这是一个 80bp 重复单元的 CR 串联阵列,将 RS2 阵列结构置于系统发育内,并增加了总体单倍型多样性。重复数在 3 到 12 之间变化(中位数:4),有 30 多种不同的重复单元类型,主要通过 SNV 不同。五个 SNV 显示出在系统发育内独立重复的证据,七个涉及至少 11 个快速在单倍群内重复阵列上传播的实例。

结论

在定义线粒体基因组变异方面,我们的研究为猫毛证据的法医遗传分析提供了关键信息,并且首次提供了一个在系统发育上有信息的串联重复变异图,揭示了线粒体中非常动态的突变过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db9d/10655372/f88bec59ad45/12864_2023_9789_Fig1_HTML.jpg

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