首页> 外文会议>International Conference on Bioinformatics Models, Methods and Algorithms >APPLICATION OF GENOME LINGUISTIC APPROACHES FOR IDENTIFICATION OF GENOMIC ISLAND IN BACTERIAL GENOMES AND TRACKING DOWN THEIR ORIGINS: Genome Linguistics to Visualize Horizontal Gene Exchange
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APPLICATION OF GENOME LINGUISTIC APPROACHES FOR IDENTIFICATION OF GENOMIC ISLAND IN BACTERIAL GENOMES AND TRACKING DOWN THEIR ORIGINS: Genome Linguistics to Visualize Horizontal Gene Exchange

机译:基因组语言方法在细菌基因组中鉴定基因组语言探测及跟踪它们的起源:基因组语言学可视化水平基因交换

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With more sequences of complete bacterial genomes getting public availability the approaches of genome comparison by frequencies of oligonucleotides (k-mers) known also as the genome linguistics are becoming popular and practical to resolve problems which can not be tackled by the traditional sequence comparison tools. In this work we present several innovative approaches based on k-mer statistics for detection of inserts of genomic islands and tracing down the ontological links and origins of mobile genetic elements. 637 bacterial genomes were analyzed by SeqWord Sniffer program that has detected 2,622 putative genomic islands. These genomic islands were clustered by DNA compositional similarity. A stratigraphic analysis was introduced that allows distinguishing between new and old genomic inserts. A method of reconstruction of donor-recipient relations between micro-organisms was proposed. The strain E. coli TY-2,482 isolated from the latest deadly outbreak of a haemorrhagic infection in Europe in 2011 was used for the case study. It was shown that this strain appeared on an intersection of two independent fluxes of horizontal gene exchange, one of which is a conventional for Enterobacteria stream of vectors generated in marine gamma-Proteobacteria; and the second is a new channel of antibiotic resistance genomic islands originated from environmental beta-Proteobacteria.
机译:有了完整的细菌基因组的多个序列得到公众可获得的接近由后者又称基因组语言学正变得流行和实用于不能用传统序列比较工具来解决解决问题的寡核苷酸(k聚体)的频率基因组的比较。在这项工作中,我们提出了基于检测基因岛的刀片和跟踪下来的本体链接和可移动的遗传因素的起源k链节统计几个创新的方法。 637个细菌基因组由已经检测到2622个推定的基因组岛SeqWord嗅探器程序进行分析。这些基因组岛是由DNA组成相似性聚类。引入地层分析功能,使新老基因组插入区分。提出了微生物之间的供体 - 受体关系的重建的方法。大肠杆菌菌株TY-2,482从2011年在欧洲出血性感染的最新致命疫情中分离的为案例研究。结果表明,该菌株出现在基因水平交换的两个独立的通量,其中之一是常规的用于海洋γ-变形产生的向量的肠杆菌流的交点;第二个是抗生素抗性基因岛的新的信道源于环境的β-变形菌。

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