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The diversification of PHIS transposon superfamily in eukaryotes

机译:真核生物中PHIS转座子超家族的多样化

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Background PHIS transposon superfamily belongs to DNA transposons and includes PIF/Harbinger, ISL2EU, and Spy transposon groups. These three groups have similar DDE domain-containing transposases; however, their coding capacity, species distribution, and target site duplications (TSDs) are significantly different. Results In this study, we systematically identified and analyzed PHIS transposons in 836 sequenced eukaryotic genomes using transposase homology search and structure approach. In total, 380 PHIS families were identified in 112 genomes and 168 of 380 families were firstly reported in this study. Besides previous identified PIF/Harbinger, ISL2EU, and Spy groups, three new types (called Pangu, NuwaI, and NuwaII) of PHIS superfamily were identified; each has its own distinctive characteristics, especially in TSDs. Pangu and NuwaII transposons are characterized by 5′-ANT-3′ and 5′-C|TNA|G-3′ TSDs, respectively. Both transposons are widely distributed in plants, fungi, and animals; the NuwaI transposons are characterized by 5′-CWG-3′ TSDs and mainly distributed in animals. Conclusions Here, in total, 380 PHIS families were identified in eukaryotes. Among these 380 families, 168 were firstly reported in this study. Furthermore, three new types of PHIS superfamily were identified. Our results not only enrich the transposon diversity but also have extensive significance for improving genome sequence assembly and annotation of higher organisms.
机译:背景PHIS转座子超家族属于DNA转座子,包括PIF / Harbinger,ISL2EU和Spy转座子组。这三组具有相似的含DDE结构域的转座酶。但是,它们的编码能力,物种分布和目标位点重复(TSD)明显不同。结果在这项研究中,我们使用转座酶同源性搜索和结构方法,系统地鉴定和分析了836个测序的真核生物基因组中的PHIS转座子。总共在112个基因组中鉴定出380个PHIS家族,并且在该研究中首次报道了380个家族中的168个。除了先前确定的PIF / Harbinger,ISL2EU和Spy组之外,还确定了PHIS超家族的三种新类型(称为Pangu,NuwaI和NuwaII)。每个都有其独特的特征,尤其是在TSD中。盘古和NuwaII转座子分别以5'-ANT-3'和5'-C | TNA | G-3'TSD为特征。两种转座子都广泛分布在植物,真菌和动物中。 NuwaI转座子的特征是5'-CWG-3'TSD,主要分布在动物中。结论在此,在真核生物中总共鉴定出380个PHIS家族。在这380个家庭中,本研究首次报道了168个家庭。此外,确定了三种新型的PHIS超家族。我们的研究结果不仅丰富了转座子的多样性,而且对改善基因组序列的组装和高等生物的注释具有广泛的意义。

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