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Exploring short k-mer profiles in cells and mobile elements from Archaea highlights the major influence of both the ecological niche and evolutionary history

机译:探索来自古代的细胞和移动元件中的短k-mer简档强调了生态利基和进化史的主要影响

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K-mer-based methods have greatly advanced in recent years, largely driven by the realization of their biological significance and by the advent of next-generation sequencing. Their speed and their independence from the annotation process are major advantages. Their utility in the study of the mobilome has recently emerged and they seem a priori adapted to the patchy gene distribution and the lack of universal marker genes of viruses and plasmids. To provide a framework for the interpretation of results from k-mer based methods applied to archaea or their mobilome, we analyzed the 5-mer DNA profiles of close to 600 archaeal cells, viruses and plasmids. Archaea is one of the three domains of life. Archaea seem enriched in extremophiles and are associated with a high diversity of viral and plasmid families, many of which are specific to this domain. We explored the dataset structure by multivariate and statistical analyses, seeking to identify the underlying factors. For cells, the 5-mer profiles were inconsistent with the phylogeny of archaea. At a finer taxonomic level, the influence of the taxonomy and the environmental constraints on 5-mer profiles was very strong. These two factors were interdependent to a significant extent, and the respective weights of their contributions varied according to the clade. A convergent adaptation was observed for the class Halobacteria, for which a strong 5-mer signature was identified. For mobile elements, coevolution with the host had a clear influence on their 5-mer profile. This enabled us to identify one previously known and one new case of recent host transfer based on the atypical composition of the mobile elements involved. Beyond the effect of coevolution, extrachromosomal elements strikingly retain the specific imprint of their own viral or plasmid taxonomic family in their 5-mer profile. This specific imprint confirms that the evolution of extrachromosomal elements is driven by multiple parameters and is not restricted to host adaptation. In addition, we detected only recent host transfer events, suggesting the fast evolution of short k-mer profiles. This calls for caution when using k-mers for host prediction, metagenomic binning or phylogenetic reconstruction.
机译:近年来,基于K-MER的方法大大提升,主要是通过实现生物意义的实现和下一代测序的出现来推动。他们的速度及其独立性来自注释过程是主要的优势。他们在Mobilome的研究中的效用最近出现,它们似乎是适应斑块基因分布的先验和缺乏病毒和质粒的普遍标记基因。为了提供框架,用于解释基于K-MER基于archaea或其手术物的方法的结果,我们分析了接近600个古膜细胞,病毒和质粒的5-MEL DNA谱。 Archaea是生活的三个领域之一。 Archaea似乎富含Exproalophiles,并且与高多样性的病毒和质粒家庭有关,其中许多是该结构域的特异性。我们通过多变量和统计分析探索了数据集结构,寻求识别潜在因素。对于细胞,5-MEL型材与古痤疮的系统发育不一致。在粮农精异化的分类水平,分类法和环境限制对5-M分型的影响非常强。这两个因素在很大程度上相互依存,并且其贡献的各自的重量根据思工而变化。观察到卤素膜的收敛适应,鉴定了强大的5-MEL签名。对于移动元素,主持人的共同效果对其5-MEL简档有明显影响。这使我们能够根据所涉及的移动元素的非典型组成来识别先前已知的最近主机传输的一个新案例。除了共区的作用之外,全组物元素在其5-MEL概况中令人满意地保持自己的病毒或质粒分类家庭的特定印记。这种特定的印记证实,面料体元素的进化由多个参数驱动,并且不限于宿主适应。此外,我们只检测到最近的主机转移事件,表明短K-MES简档的快速演变。使用K-MERS用于宿主预测,偏见烧结或系统发育重建时,请注意。

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