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线粒体基因渗入家猫的核基因组。

Mitochondrial introgressions into the nuclear genome of the domestic cat.

作者信息

Antunes Agostinho, Pontius Joan, Ramos Maria João, O'Brien Stephen J, Johnson Warren E

机构信息

Laboratory of Genomic Diversity, National Cancer Institute-Frederick Cancer Research and Development Center, Frederick, MD 21702-1201, USA.

出版信息

J Hered. 2007;98(5):414-20. doi: 10.1093/jhered/esm062. Epub 2007 Jul 28.

Abstract

Translocation of mtDNA into the nuclear genome, also referred to as numt, was first reported in the domestic cat (Felis catus) by Lopez et al. (1994). The Lopez-numt consisted of a translocation of 7.9 kbp of mtDNA that inserted into the domestic cat chromosome D2 around 1.8 million years ago. More than a decade later, the release of the domestic cat whole-genome shotgun sequences (1.9x coverage) provides the resource to obtain more comprehensive insight into the extent of mtDNA transfer over time in the domestic cat genome. MegaBLAST searches revealed that the cat genome harbors a wide variety of numts (298 320 bp), one-third of which likely correspond to the Lopez-numt tandem repeat, whereas the remaining numts are probably derived from multiple independent insertions, which in some cases were followed by segmental duplication after insertion in the nucleus. Numts were detected across most cat chromosomes, but the number of numts assigned to chromosomes is underestimated due to the relatively high number of numt sequences with insufficient flanking sequence to map. The catalog of cat numts provides a valuable resource for future studies in Felidae species, including its use as a tool to avoid numt contaminations that may confound population genetics and phylogenetic studies.

摘要

线粒体DNA(mtDNA)易位到核基因组中,也被称为核线粒体DNA(numt),最早由洛佩斯等人(1994年)在家猫(Felis catus)中报道。洛佩斯核线粒体DNA由一段7.9千碱基对的mtDNA易位片段组成,该片段于约180万年前插入家猫的D2染色体。十多年后,家猫全基因组鸟枪法测序数据(覆盖度为1.9倍)的发布,为更全面地了解家猫基因组中mtDNA随时间转移的程度提供了资源。MegaBLAST搜索显示,猫基因组中存在各种各样的核线粒体DNA(298320碱基对),其中三分之一可能对应于洛佩斯核线粒体DNA串联重复序列,而其余的核线粒体DNA可能来自多个独立插入事件,在某些情况下,这些插入事件在插入细胞核后还伴随着片段重复。在大多数猫染色体上都检测到了核线粒体DNA,但由于侧翼序列不足而无法定位的核线粒体DNA序列数量相对较多,因此分配到各染色体上的核线粒体DNA数量被低估了。猫核线粒体DNA目录为未来猫科动物物种的研究提供了宝贵资源,包括用作避免可能混淆种群遗传学和系统发育研究的核线粒体DNA污染的工具。

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