Comparative Genomics of Plant-Associated Pseudomonas spp.: Insights into Diversity and Inheritance of Traits Involved in Multitrophic Interactions
Сравнительная геномика ассоциированных с растениями бактерий Pseudomonas spp.: сведения о разнообразии и наследовании признаков, участвующих в мультитрофических взаимодействиях
2012-07-05
SCID: 54.1/bd6hmpqs
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Pseudomonas fluorescens groupcomparative genomicsmobile genetic elementsmultitrophic interactionspan-genome analysis
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Abstract (AI)
We provide here a comparative genome analysis of ten strains within the Pseudomonas fluorescens group including seven new genomic sequences. These strains exhibit a diverse spectrum of traits involved in biological control and other multitrophic interactions with plants, microbes, and insects. Multilocus sequence analysis placed the strains in three sub-clades, which was reinforced by high levels of synteny, size of core genomes, and relatedness of orthologous genes between strains within a sub-clade. The heterogeneity of the P. fluorescens group was reflected in the large size of its pan-genome, which makes up approximately 54% of the pan-genome of the genus as a whole, and a core genome representing only 45-52% of the genome of any individual strain. We discovered genes for traits that were not known previously in the strains, including genes for the biosynthesis of the siderophores achromobactin and pseudomonine and the antibiotic 2-hexyl-5-propyl-alkylresorcinol; novel bacteriocins; type II, III, and VI secretion systems; and insect toxins. Certain gene clusters, such as those for two type III secretion systems, are present only in specific sub-clades, suggesting vertical inheritance. Almost all of the genes associated with multitrophic interactions map to genomic regions present in only a subset of the strains or unique to a specific strain. To explore the evolutionary origin of these genes, we mapped their distributions relative to the locations of mobile genetic elements and repetitive extragenic palindromic (REP) elements in each genome. The mobile genetic elements and many strain-specific genes fall into regions devoid of REP elements (i.e., REP deserts) and regions displaying atypical tri-nucleotide composition, possibly indicating relatively recent acquisition of these loci. Collectively, the results of this study highlight the enormous heterogeneity of the P. fluorescens group and the importance of the variable genome in tailoring individual strains to their specific lifestyles and functional repertoire.
Key Findings
1
Comparative analysis of ten Pseudomonas fluorescens-group strains, including seven newly sequenced genomes, identified three genomically coherent sub-clades.
2
Genes associated with multitrophic interactions are predominantly located in variable or strain-specific genomic regions, indicating that accessory genomes tailor strains to distinct lifestyles and functions.
3
Mobile genetic elements and strain-specific genes frequently occur in REP deserts and regions with atypical trinucleotide composition, suggesting relatively recent acquisition of these loci.
4
Previously unrecognized genes encoded diverse interaction traits, including achromobactin and pseudomonine siderophores, 2-hexyl-5-propyl-alkylresorcinol, novel bacteriocins, secretion systems, and insect toxins.
5
The group has extensive genomic heterogeneity: its pan-genome comprises approximately 54% of the genus-wide Pseudomonas pan-genome, while each strain shares only 45–52% of its genome with the core genome.
Research Object
Ten plant-associated Pseudomonas fluorescens-group strains and their genomes
Research Subject
Genomic diversity, pan-genome and core-genome organization, and the inheritance and evolutionary origins of traits involved in multitrophic interactions with plants, microbes, and insects
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2012-07-05
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