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Genome-Based Characterization of Biological Processes That Differentiate Closely Related Bacteria

机译:区分密切相关细菌的生物过程的基于基因组的表征。

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摘要

Bacteriologists have strived toward attaining a natural classification system based on evolutionary relationships for nearly 100 years. In the early twentieth century it was accepted that a phylogeny-based system would be the most appropriate, but in the absence of molecular data, this approach proved exceedingly difficult. Subsequent technical advances and the increasing availability of genome sequencing have allowed for the generation of robust phylogenies at all taxonomic levels. In this study, we explored the possibility of linking biological characters to higher-level taxonomic groups in bacteria by making use of whole genome sequence information. For this purpose, we specifically targeted the genus Pantoea and its four main lineages. The shared gene sets were determined for Pantoea, the four lineages within the genus, as well as its sister-genus Tatumella. This was followed by functional characterization of the gene sets using the Kyoto Encyclopedia of Genes and Genomes (KEGG) database. In comparison to Tatumella, various traits involved in nutrient cycling were identified within Pantoea, providing evidence for increased efficacy in recycling of metabolites within the genus. Additionally, a number of traits associated with pathogenicity were identified within species often associated with opportunistic infections, with some support for adaptation toward overcoming host defenses. Some traits were also only conserved within specific lineages, potentially acquired in an ancestor to the lineage and subsequently maintained. It was also observed that the species isolated from the most diverse sources were generally the most versatile in their carbon metabolism. By investigating evolution, based on the more variable genomic regions, it may be possible to detect biologically relevant differences associated with the course of evolution and speciation.
机译:细菌学家已努力实现基于进化关系的自然分类系统已有近100年的历史。在二十世纪初,人们公认基于系统发育的系统是最合适的,但是在没有分子数据的情况下,这种方法被证明极其困难。随后的技术进步和基因组测序可用性的提高已允许在所有分类学水平上产生稳固的系统发育。在这项研究中,我们探索了通过利用全基因组序列信息将生物学特性与细菌中更高级别的分类学组联系起来的可能性。为此,我们专门针对泛菌属及其四个主要谱系。确定了Pantoea,属内的四个谱系及其姊妹属Tatumella的共享基因集。接下来是使用《京都基因与基因组百科全书》(KEGG)数据库对基因集进行功能表征。与塔氏杆菌相比,在泛菌内鉴定出了涉及营养循环的各种特性,为该属中代谢物的循环利用提供了提高的证据。此外,在通常与机会性感染有关的物种中,还发现了许多与致病性有关的特征,并为适应克服宿主防御提供了一些支持。一些性状也仅在特定的谱系中被保留,可能是在该谱系的祖先中获得并随后被保留的。还观察到,从最多样化的来源中分离出来的物种在其碳代谢中通常是最通用的。通过研究进化过程,基于更具可变性的基因组区域,可能检测出与进化过程和物种形成过程相关的生物学相关差异。

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