Ray David A, Pagan Heidi J T, Thompson Michelle L, Stevens Richard D
Department of Biology, West Virginia University, USA.
Mol Biol Evol. 2007 Mar;24(3):632-9. doi: 10.1093/molbev/msl192. Epub 2006 Dec 5.
Transposable elements make up a significant fraction of many eukaryotic genomes. Although both classes of transposable elements, the DNA transposons and the retrotransposons, show substantial expansion in plants and invertebrates, the DNA transposons are thought to have become inactive in mammalian genomes long ago. Here, we report the first evidence for recent activity of DNA transposons in a mammalian lineage, the bat genus Myotis. Six recently active families of nonautonomous hobo/Activator/TAM transposons were identified in the Myotis lucifugus genome using computational tools. Low sequence divergence among the individual sequences and between individual sequences and their respective consensus sequences suggest their recent expansion in the M. lucifugus genome. Furthermore, amplification and sequencing of polymorphic insertion loci in a related taxon, M. austroriparius, confirms their recent activity. Myotis is one of the largest mammalian genera with 103 species. The discovery of DNA transposon activity in this genus may therefore influence our understanding of genome evolution and diversification in bats and in mammals in general. Furthermore, the identification of a likely autonomous element may lead to new approaches for mammalian genetic manipulation.
转座元件在许多真核生物基因组中占相当大的比例。尽管两类转座元件,即DNA转座子和逆转座子,在植物和无脊椎动物中都有显著扩增,但DNA转座子被认为在很久以前就已在哺乳动物基因组中失去活性。在此,我们报告了哺乳动物谱系——鼠耳蝠属中DNA转座子近期活跃的首个证据。利用计算工具在鲁氏鼠耳蝠基因组中鉴定出六个近期活跃的非自主hobo/Activator/TAM转座子家族。各个序列之间以及各个序列与其各自的共有序列之间的低序列差异表明它们近期在鲁氏鼠耳蝠基因组中发生了扩增。此外,在相关分类群南长翼蝠中对多态性插入位点进行扩增和测序,证实了它们近期的活性。鼠耳蝠是最大的哺乳动物属之一,有103个物种。因此,在该属中发现DNA转座子活性可能会影响我们对蝙蝠乃至整个哺乳动物基因组进化和多样化的理解。此外,鉴定出一个可能的自主元件可能会带来哺乳动物基因操作的新方法。