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首页> 外文期刊>Applied and Environmental Microbiology >Diversity of Pseudomonas Genomes, Including Populus-Associated Isolates, as Revealed by Comparative Genome Analysis
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Diversity of Pseudomonas Genomes, Including Populus-Associated Isolates, as Revealed by Comparative Genome Analysis

机译:比较基因组分析显示假单胞菌基因组的多样性,包括与杨相关的分离株

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The Pseudomonas genus contains a metabolically versatile group of organisms that are known to occupy numerous ecological niches, including the rhizosphere and endosphere of many plants. Their diversity influences the phylogenetic diversity and heterogeneity of these communities. On the basis of average amino acid identity, comparative genome analysis of >1,000 Pseudomonas genomes, including 21 Pseudomonas strains isolated from the roots of native Populus deltoides (eastern cottonwood) trees resulted in consistent and robust genomic clusters with phylogenetic homogeneity. All Pseudomonas aeruginosa genomes clustered together, and these were clearly distinct from other Pseudomonas species groups on the basis of pangenome and core genome analyses. In contrast, the genomes of Pseudomonas fluorescens were organized into 20 distinct genomic clusters, representing enormous diversity and heterogeneity. Most of our 21 Populus-associated isolates formed three distinct subgroups within the major P. fluorescens group, supported by pathway profile analysis, while two isolates were more closely related to Pseudomonas chlororaphis and Pseudomonas putida. Genes specific to Populus-associated subgroups were identified. Genes specific to subgroup 1 include several sensory systems that act in two-component signal transduction, a TonB-dependent receptor, and a phosphorelay sensor. Genes specific to subgroup 2 contain hypothetical genes, and genes specific to subgroup 3 were annotated with hydrolase activity. This study justifies the need to sequence multiple isolates, especially from P. fluorescens, which displays the most genetic variation, in order to study functional capabilities from a pangenomic perspective. This information will prove useful when choosing Pseudomonas strains for use to promote growth and increase disease resistance in plants.
机译:假单胞菌属包含一组代谢广泛的生物,这些生物占据许多生态位,包括许多植物的根际和内层。它们的多样性影响这些群落的系统发育多样性和异质性。根据平均氨基酸同一性,对> 1,000种假单胞菌基因组进行比较基因组分析,包括从天然Populus deltoides(东部杨木)树的根中分离出的21个假单胞菌菌株,形成了具有系统同源性的一致且健壮的基因组簇。所有铜绿假单胞菌基因组聚集在一起,根据全基因组和核心基因组分析,这些基因组明显不同于其他假单胞菌物种组。相反,荧光假单胞菌的基因组被组织成20个不同的基因组簇,代表了巨大的多样性和异质性。在路径分布分析的支持下,我们的21个与胡杨相关的大多数分离物在主要的荧光假单胞菌组内形成了三个不同的亚组,而两个分离物与绿假单胞菌和恶臭假单胞菌的关系更密切。确定了与胡杨相关亚组特异的基因。特定于亚组1的基因包括几个在双组分信号转导中起作用的感觉系统,TonB依赖受体和磷酰化传感器。对亚组2特异的基因包含假设的基因,对亚组3特异的基因带有水解酶活性。这项研究证明有必要对多个分离物(尤其是荧光假单胞菌(P.fluorescens),其显示出最多的遗传变异)进行测序,以便从全基因组学的角度研究功能能力。当选择假单胞菌株用于促进植物生长,提高抗病能力。这些信息将非常有用。

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