首页> 外文期刊>Mobile DNA >Phylogenetic analysis of the Tc1/mariner superfamily reveals the unexplored diversity of pogo -like elements
【24h】

Phylogenetic analysis of the Tc1/mariner superfamily reveals the unexplored diversity of pogo -like elements

机译:TC1 / Mariner Superfamily的系统发育分析揭示了Pogo-mike元件的未探测多样性

获取原文
           

摘要

Tc1/mariner transposons are widespread DNA transposable elements (TEs) that have made important contributions to the evolution of host genomic complexity in metazoans. However, the evolution and diversity of the Tc1/mariner superfamily remains poorly understood. Following recent developments in genome sequencing and the availability of a wealth of new genomes, Tc1/mariner TEs have been identified in many new taxa across the eukaryotic tree of life. To date, the majority of studies focussing on Tc1/mariner elements have considered only a single host lineage or just a small number of host lineages. Thus, much remains to be learnt about the evolution of Tc1/mariner TEs by performing analyses that consider elements that originate from across host diversity. We mined the non-redundant database of NCBI using BLASTp searches, with transposase sequences from a diverse set of reference Tc1/mariner elements as queries. A total of 5158 Tc1/mariner elements were retrieved and used to reconstruct evolutionary relationships within the superfamily. The resulting phylogeny is well resolved and includes several new groups of Tc1/mariner elements. In particular, we identify a new family of plant-genome restricted Tc1/mariner elements, which we call PlantMar. We also show that the pogo family is much larger and more diverse than previously appreciated, and we review evidence for a potential revision of its status to become a separate superfamily. Our study provides an overview of Tc1-mariner phylogeny and summarises the impressive diversity of Tc1-mariner TEs among sequenced eukaryotes. Tc1/mariner TEs are successful in a wide range of eukaryotes, especially unikonts (the taxonomic supergroup containing Amoebozoa, Opisthokonta, Breviatea, and Apusomonadida). In particular, ecdysozoa, and especially arthropods, emerge as important hosts for Tc1/mariner elements (except the PlantMar family). Meanwhile, the pogo family, which is by far the largest Tc1/mariner family, also includes many elements from fungal and chordate genomes. Moreover, there is evidence of the repeated exaptation of pogo elements in vertebrates, including humans, in addition to the well-known example of CENP-B. Collectively, our findings provide a considerable advancement in understanding of Tc1/mariner elements, and more generally they suggest that much work remains to improve understanding of the diversity and evolution of DNA TEs.
机译:TC1 /海工转座子是广泛的DNA转换元素(TES),对美唑烷的宿主基因组复杂性的演变作出了重要贡献。然而,TC1 / Mariner Superfamily的演变和多样性仍然很清楚。在最近的基因组测序和丰富的新基因组的可用性之后,TC1 / MARINER TES已经在许多新的生命周围的新征区中鉴定出来。迄今为止,聚焦在TC1 /水手元素的大多数研究都仅考虑了单个主机谱系或只是少数主机谱系。因此,通过执行分析来考虑源于主机多样性的元素,仍有许多关于TC1 / MARINER TES的演变。我们使用BLASTP搜索挖掘了NCBI的非冗余数据库,其中来自多样化的参考TC1 / MARINER元素的转座酶序列作为查询。共检测到5158个TC1 /水手元素,并用于重建超家族内的进化关系。所得的系统发育是良好的解决,包括几组新的TC1 /水母细胞元件。特别是,我们识别新的植物基因组受限的TC1 /水手元素,我们称之为植物。我们还表明,Pogo家族比以前更大,更多样化,我们审查了潜在修订其地位的证据,以成为一个单独的超级家族。我们的研究概述了TC1-MARINER Phylocyy的概述,总结了测序真核生物中TC1-MARINER TES的令人印象深刻的多样性。 TC1 / Mariner Tes在各种真核中成功,特别是Unyconts(含有amoebozoa,Opisthokonta,Breviatea和apusomonadida的分类学超群)。特别是Ecdysozoa,特别是节肢动物,作为TC1 /海事母牛元素的重要宿主(植物家庭除外)。与此同时,迄今为止最大的TC1 /海事家庭的Pogo家族还包括来自真菌和脊索的许多元素。此外,除了CENP-B的众所周知的例子之外,还存在脊椎动物中的PoGo元素的重复展开,包括人类。统称,我们的调查结果提供了对TC1 /水手元素的理解的相当大进步,更普遍认为,许多工作仍然是提高对DNA TES的多样性和演变的理解。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号