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DNA聚合酶多样性揭示了线虫进化过程中多聚转座子的多次侵入。

DNA polymerase diversity reveals multiple incursions of Polintons during nematode evolution.

作者信息

Jeong Dae-Eun, Sundrani Sameer, Hall Richard Nelson, Krupovic Mart, Koonin Eugene V, Fire Andrew Z

出版信息

bioRxiv. 2023 Aug 24:2023.08.22.554363. doi: 10.1101/2023.08.22.554363.

DOI:10.1101/2023.08.22.554363
PMID:37662302
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10473752/
Abstract

Polintons are dsDNA, virus-like self-synthesizing transposons widely found in eukaryotic genomes. Recent metagenomic discoveries of Polinton-like viruses are consistent with the hypothesis that Polintons invade eukaryotic host genomes through infectious viral particles. Nematode genomes contain multiple copies of Polintons and provide an opportunity to explore the natural distribution and evolution of Polintons during this process. We performed an extensive search of Polintons across nematode genomes, identifying multiple full-length Polinton copies in several species. We provide evidence of both ancient Polinton integrations and recent mobility in strains of the same nematode species. In addition to the major nematode Polinton family, we identified a group of Polintons that are overall closely related to the major family, but encode a distinct protein-primed B family DNA polymerase (pPolB) that is related to homologs from a different group of Polintons present outside of the . Phylogenetic analyses on the pPolBs support the evolutionary scenarios in which these extrinsic pPolBs that seem to derive from Polinton families present in oomycetes and molluscs replaced the canonical pPolB in subsets of Polintons found in terrestrial and marine nematodes, respectively, suggesting inter-phylum horizontal gene transfers. The pPolBs of the terrestrial nematode and oomycete Polintons share a unique feature, an insertion of a HNH nuclease domain, whereas the pPolBs in the marine nematode Polintons share an insertion of a VSR nuclease domain with marine mollusc pPolBs. We hypothesize that horizontal gene transfer occurs among Polintons from widely different but cohabiting hosts.

摘要

多聚转座子是双链DNA、病毒样的自我合成转座子,广泛存在于真核生物基因组中。最近通过宏基因组学发现的类多聚转座子病毒与多聚转座子通过感染性病毒颗粒侵入真核宿主基因组的假说一致。线虫基因组包含多个多聚转座子拷贝,为探索多聚转座子在此过程中的自然分布和进化提供了机会。我们对线虫基因组中的多聚转座子进行了广泛搜索,在几个物种中鉴定出多个全长多聚转座子拷贝。我们提供了同一线虫物种不同菌株中多聚转座子古老整合和近期移动性的证据。除了主要的线虫多聚转座子家族外,我们还鉴定出一组多聚转座子,它们总体上与主要家族密切相关,但编码一种独特的蛋白质引发的B家族DNA聚合酶(pPolB),该酶与来自不同多聚转座子组的同源物相关,这些多聚转座子存在于……之外。对pPolB的系统发育分析支持了这样的进化情景:这些似乎源自卵菌和软体动物中多聚转座子家族的外在pPolB,分别取代了陆地和海洋线虫中多聚转座子亚群中的经典pPolB,这表明存在跨门水平基因转移。陆地线虫和卵菌多聚转座子的pPolB具有一个独特特征,即插入了一个HNH核酸酶结构域,而海洋线虫多聚转座子中的pPolB与海洋软体动物pPolB一样,都插入了一个VSR核酸酶结构域。我们推测水平基因转移发生在来自广泛不同但共同生活的宿主的多聚转座子之间。