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家蚕(Bombyx mori)基因组中TC1/Mariner的全基因组鉴定与进化

Genome-wide identification and evolution of TC1/Mariner in the silkworm (Bombyx mori) genome.

作者信息

Xie Li-Qin, Wang Ping-Lan, Jiang Shen-Hua, Zhang Ze, Zhang Hua-Hao

机构信息

College of Pharmacy and Life Science, Jiujiang University, Jiujiang, China.

School of Life Sciences, Chongqing University, Chongqing, 400044, China.

出版信息

Genes Genomics. 2018 May;40(5):485-495. doi: 10.1007/s13258-018-0648-6. Epub 2018 Feb 3.

Abstract

TC1/Mariner transposons belong to class II transposable elements (TEs) that use DNA-mediated "cut and paste" mechanism to transpose, and they have been identified in almost all organisms. Although silkworm (Bombyx mori) has a large amount of TC1/Mariner elements, the genome wide information of this superfamily in the silkworm is unknown. In this study, we have identified 2670 TC1/Mariner (Bmmar) elements in the silkworm genome. All the TEs were classified into 22 families by means of fgclust, a tool of repetitive sequence classification, seven of which was first reported in this study. Phylogenetic and structure analyses based on the catalytic domain (DDxD/E) of transposase sequences indicated that all members of TC1/Mariner were grouped into five subgroups: Mariner, Tc1, maT, DD40D and DD41D/E. Of these five subgroups, maT rather than Mariner possessed most members of TC1/Mariner (51.23%) in the silkworm genome. In particular, phylogenetic analysis and structure analysis revealed that Bmmar15 (DD40D) formed a new basal subgroup of TC1/Mariner element in insects, which was referred to as bmori. Furthermore, we concluded that DD40D appeared to intermediate between mariner and Tc1. Finally, we estimated the insertion time for each copy of TC1/Mariner in the silkworm and found that most of members were dramatically amplified during a period from 0 to 1 mya. Moreover, the detailed functional data analysis showed that Bmmar1, Bmmar6 and Bmmar9 had EST evidence and intact transposases. These implied that TC1/Mariner might have potential transpositional activity. In conclusion, this study provides some new insights into the landscape, origin and evolution of TC1/Mariner in the insect genomes.

摘要

TC1/水手座转座子属于II类转座元件(TEs),其利用DNA介导的“剪切与粘贴”机制进行转座,并且在几乎所有生物中都已被鉴定出来。尽管家蚕(Bombyx mori)含有大量的TC1/水手座元件,但该超家族在家蚕中的全基因组信息尚不清楚。在本研究中,我们在家蚕基因组中鉴定出了2670个TC1/水手座(Bmmar)元件。所有这些转座元件通过重复序列分类工具fgclust被分为22个家族,其中7个是本研究首次报道的。基于转座酶序列催化结构域(DDxD/E)的系统发育和结构分析表明,TC1/水手座的所有成员被分为五个亚组:水手座、Tc1、maT、DD40D和DD41D/E。在这五个亚组中,maT而非水手座在家蚕基因组中拥有TC1/水手座的大多数成员(51.23%)。特别地,系统发育分析和结构分析表明,Bmmar15(DD40D)在昆虫中形成了一个新的TC1/水手座元件基础亚组,被称为bmori。此外,我们得出结论,DD40D似乎介于水手座和Tc1之间。最后,我们估计了家蚕中TC1/水手座每个拷贝的插入时间,发现大多数成员在0至1百万年前的一段时间内急剧扩增。此外,详细的功能数据分析表明,Bmmar1、Bmmar6和Bmmar9有EST证据且转座酶完整。这些表明TC1/水手座可能具有潜在的转座活性。总之,本研究为昆虫基因组中TC1/水手座的格局、起源和进化提供了一些新的见解。

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