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在仓鼠科 Neoctominae 亚科内发现了多个活跃的 mys 相关 LTR 反转录转座子。

The discovery of multiple active mys-related LTR-retroelements within the Neotominae subfamily of cricetid rodents.

机构信息

Department of Biology, Eastern Michigan University, Ypsilanti, MI, USA.

出版信息

Genetica. 2023 Jun;151(3):179-199. doi: 10.1007/s10709-023-00183-z. Epub 2023 Mar 4.

Abstract

Retrotransposon families in the rodent family Cricetidae have been understudied in contrast to Muridae, both taxa classified within the superfamily Muroidea. Therefore, we carried out a study to advance our knowledge of the unique mys LTR-retroelement identified in Peromyscus leucopus, by incorporating intra-ORF PCR, quantitative dot blots, DNA and protein library screens, the generation of molecular phylogenies, and analyses of orthologous LTR-retroelement loci. These analyses led to the discovery of three additional related families of LTR-retroelements, which include a 2900 bp full-length element of mys-related sequences (mysRS), an 8000 bp element containing the mys ORF1 sequence (mORF1) with ERV-related sequences downstream in the reverse orientation, as well as an 1800 bp element primarily consisting of mys ORF2 (mORF2) related sequences flanked by LTRs. Our data revealed only a few full-length mys elements among genera of the Neotominae subfamily of cricetid rodents, most existing as partial copies. The mysRS and mORF1 elements are also limited to the genomes of the Neotominae subfamily, whereas mORF2 appears to be restricted to the Peromyscus genus. Molecular phylogenies demonstrating concerted evolution along with an assessment of orthologous loci in Peromyscus for the presence or absence of elements are consistent with activity of these novel LTR-retroelement families within this genus. Together with known activity of various families of non-LTR retroelements in Peromyscus species, we propose that retrotransposons have been continually contributing to the dynamics of Peromyscus genomes promoting genomic diversity and may be correlated with the evolution of more than 50 identified Peromyscus species.

摘要

在与 Muroidea 超科中的 Muridae 相比,啮齿目仓鼠科中的逆转录转座子家族研究较少。因此,我们开展了一项研究,通过整合 ORF 内 PCR、定量斑点印迹、DNA 和蛋白质文库筛选、分子系统发育分析以及同源 LTR-逆转录元件基因座分析,来深入了解 Peromyscus leucopus 中独特的 mys LTR-逆转录元件。这些分析导致发现了另外三个相关的 LTR-逆转录元件家族,包括 2900bp 全长 mys 相关序列(mysRS)元件、包含 mys ORF1 序列(mORF1)的 8000bp 元件,其下游以反转方向含有 ERV 相关序列,以及主要由 mys ORF2(mORF2)相关序列组成的 1800bp 元件,两侧为 LTR。我们的数据表明,在仓鼠科 Neotominae 亚科的属中仅有少数完整的 mys 元件,大多数以部分拷贝存在。mysRS 和 mORF1 元件也仅限于 Neotominae 亚科的基因组,而 mORF2 似乎仅限于 Peromyscus 属。协同进化的分子系统发育以及对 Peromyscus 中存在或不存在元件的同源基因座的评估与这些新的 LTR-逆转录元件家族在该属中的活性一致。与 Peromyscus 物种中各种非 LTR 逆转录元件家族的已知活性一起,我们提出逆转座子一直在为 Peromyscus 基因组的动态做出贡献,促进基因组多样性,并且可能与 50 多种已识别的 Peromyscus 物种的进化相关。

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