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首页> 外文期刊>Frontiers in Microbiology >Phylogenomic, Pan-genomic, Pathogenomic and Evolutionary Genomic Insights into the Agronomically Relevant Enterobacteria Pantoea ananatis and Pantoea stewartii
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Phylogenomic, Pan-genomic, Pathogenomic and Evolutionary Genomic Insights into the Agronomically Relevant Enterobacteria Pantoea ananatis and Pantoea stewartii

机译:对与农学相关的肠杆菌 Pantoea ananatis Pantoea stewartii 的系统生物学,泛基因组学,病理基因组学和进化基因组学的见解

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摘要

Pantoea ananatis is ubiquitously found in the environment and causes disease on a wide range of plant hosts. By contrast, its sister species, Pantoea stewartii subsp. stewartii is the host-specific causative agent of the devastating maize disease Stewart’s wilt. This pathogen has a restricted lifecycle, overwintering in an insect vector before being introduced into susceptible maize cultivars, causing disease and returning to overwinter in its vector. The other subspecies of P. stewartii subsp. indologenes , has been isolated from different plant hosts and is predicted to proliferate in different environmental niches. Here we have, by the use of comparative genomics and a comprehensive suite of bioinformatic tools, analyzed the genomes of ten P. stewartii and nineteen P. ananatis strains. Our phylogenomic analyses have revealed that there are two distinct clades within P. ananatis while far less phylogenetic diversity was observed among the P. stewartii subspecies. Pan-genome analyses revealed a large core genome comprising of 3,571 protein coding sequences is shared among the twenty-nine compared strains. Furthermore, we showed that an extensive accessory genome made up largely by a mobilome of plasmids, integrated prophages, integrative and conjugative elements and insertion elements has resulted in extensive diversification of P. stewartii and P. ananatis . While these organisms share many pathogenicity determinants, our comparative genomic analyses show that they differ in terms of the secretion systems they encode. The genomic differences identified in this study have allowed us to postulate on the divergent evolutionary histories of the analyzed P. ananatis and P. stewartii strains and on the molecular basis underlying their ecological success and host range.
机译:在环境中无处不在的泛菌,在许多植物宿主上引起疾病。相比之下,其姊妹物种Pantoea stewartii亚种。 stewartii是毁灭性玉米病Stewart枯萎病的宿主特定病原体。这种病原体的生命周期受到限制,在昆虫媒介中越冬,然后再将其引入易感的玉米品种中,导致疾病并使其媒介越冬。 P. stewartii亚种的其他亚种。 indologenes已从不同的植物宿主中分离出来,预计会在不同的环境生态位中繁殖。在这里,我们已经通过使用比较基因组学和一套全面的生物信息学工具,分析了10个Stewartii和19个P. ananatis菌株的基因组。我们的系统生物学分析显示,P。ananatis内有两个不同的进化枝,而在Stewartii亚种间观察到的系统发育多样性要少得多。泛基因组分析显示,在29个比较菌株中共有3,571个蛋白质编码序列组成的大型核心基因组。此外,我们表明,广泛的辅助基因组主要由质粒,整合的原噬菌体,整合和结合元件以及插入元件的运动组组成,导致了P. stewartii和P. ananatis的广泛多样化。尽管这些生物具有许多致病性决定因素,但我们的比较基因组分析表明,它们在编码的分泌系统方面有所不同。在这项研究中鉴定出的基因组差异使我们能够根据分析的P. ananatis和P. stewartii菌株的不同进化历史以及其生态学成功和宿主范围的分子基础进行推测。

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