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小家鼠属中B1反转录转座子的进化史。

Evolutionary history of B1 retroposons in the genus Mus.

作者信息

Kass D H, Raynor M E, Williams T M

机构信息

Department of Biology, 316 Mark Jefferson, Eastern Michigan University, Ypsilanti, MI 48197, USA.

出版信息

J Mol Evol. 2000 Sep;51(3):256-64. doi: 10.1007/s002390010087.

Abstract

Short interspersed DNA elements (SINEs) amplify by retroposition either by (i) successive waves of amplification from one or a few evolving master genes or by (ii) the generation of new master genes that coexist with their progenitors. Individual, highly conserved, elements of the B1 SINE family were identified from the GenBank nucleotide database using various B1 subfamily consensus query sequences to determine their integration times into the mouse genome. A comparison of orthologous loci in various species of the genus Mus demonstrated that four subfamilies of B1 elements have been amplifying within the last 1-3 million years. Therefore, B1 sequences are generated by coexisting source genes. Additionally, three B1 subfamilies have been concurrently propagated during subspecies divergence and strain formation in Mus, indicating very recent activity of this retroposon family. The patterns of intra- and interspecies variations of orthologous loci demonstrate the usefulness of B1 integrations as a phylogenetic tool. A single inconsistency in the phylogenetic trends was depicted by the presence of a B1 insert in an orthologous locus exclusively in M. musculus and M. pahari. However, DNA sequence analysis revealed that these were independent integrations at the same genomic site. One highly conserved B1 element that integrated at least 4-6 million years ago suggests the possibility of occasional function for B1 integrations.

摘要

短散在DNA元件(SINEs)通过逆转座进行扩增,方式有两种:(i)从一个或几个不断进化的主基因连续进行多轮扩增;(ii)产生与其祖先共存的新主基因。使用各种B1亚家族共有查询序列,从GenBank核苷酸数据库中鉴定出B1 SINE家族中高度保守的单个元件,以确定它们整合到小鼠基因组中的时间。对小家鼠属不同物种直系同源基因座的比较表明,在过去100万至300万年中,B1元件的四个亚家族一直在进行扩增。因此,B1序列是由共存的源基因产生的。此外,在小家鼠的亚种分化和品系形成过程中,三个B1亚家族同时进行了传播,这表明这个逆转座子家族的活动非常新。直系同源基因座的种内和种间变异模式证明了B1整合作为一种系统发育工具的有用性。在小家鼠和高山姬鼠的直系同源基因座中,仅小家鼠存在一个B1插入,这显示了系统发育趋势中的一个单一不一致之处。然而,DNA序列分析表明,这些是在同一基因组位点的独立整合。一个至少在400万至600万年前整合的高度保守的B1元件表明,B1整合偶尔可能具有功能。

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