Ecologically Significant Genetic Loci of P. allii: Contributions to Pathogenesis and Competition
Shin, G. Y.; De Armas, S.; Galvan, G. A.; Siri, M. I.; vinatzer, B. A.; Asselin, J. A. E.; Stodghill, P.; Zhao, M.; Dutta, B.; Tambong, J.; Kvitko, B. H.
Show abstract
Pantoea allii, one of four Pantoea species known to cause onion center rot, is infrequently isolated from onion compared to its closely related onion-pathogenic sister taxa. To better understand the genomic diversity and genetic determinants of pathogenicity in this species, we analyzed a collection of 38 P. allii strains isolated from two primary ecological niches, plants and water, across three continents using comparative genomics and phylogenetic approaches. Core-genome phylogeny, average nucleotide identity (ANI), and gene presence-absence analyses revealed three genetically distinct lineages. All strains harbored conserved biosynthetic gene clusters (BGCs) for quorum sensing, carotenoid production, siderophores, and thiopeptides. In contrast, two phosphonate BGCs, key determinants of onion pathogenicity, exhibited lineage-specific distributions. Onion-associated strains from Lineages 1 and 2 carried the Halophos BGC associated with onion tissue necrosis, and onion isolates encoded the alt gene cluster conferring thiosulfinate tolerance. Lineage 3 strains, isolated from both onion and rainwater, either lacked a phosphonate BGC loci or carried the HiVir phosphonate BGC. In addition, Lineage 3 strains lacked the alt cluster altogether. The localization of these virulence genes in the genome varied, with Halophos integrated in the chromosome, HiVir encoded on the conserved Large Pantoea Plasmid, and alt located on a small, variable plasmids (plasmid B). The Type IV and Type VI secretion systems showed variable genomic architectures, with plasmid-borne T4SSs and two chromosomal T6SS loci differing in conservation and gene content. Additionally, conserved Pantailocin phage islands were detected in most genomes. Overall, this study reveals that while core metabolic and competitive traits are conserved across P. allii, virulence-associated loci display lineage-specific partitioning, reflecting ecological differentiation and evolutionary plasticity within the species. Impact StatementThis study presents a comprehensive comparative genomic analysis of available Pantoea allii genomes, a known onion pathogen. By analyzing 38 strains isolated from plant and water sources across three continents, we uncovered lineage-specific distributions of key virulence genes, alongside conserved genetic traits associated with competition and environmental resilience. These findings clarify the genetic basis of P. allii pathogenesis and highlight its potential as a biocontrol agent, offering broader insights into how ecologically significant loci contribute to the dual roles of plant-associated bacteria as both pathogens and beneficial microbes. Data SummaryPENDING
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The Kocurious case of Noodlococcus: genomic insights into Kocuria rhizophila from characterisation of a laboratory contaminant 97%
- Prevalence and diversity of TAL effector-like proteins in fungal endosymbiotic Mycetohabitans spp. 97%
- Meta Analysis of the Ralstonia solanacearum species complex (RSSC) based on comparative evolutionary genomics and reverse ecology 96%
Similar papers in this journal
- Comparative genomic analyses shed light on the introduction routes of rice-pathogenic Burkholderia gladioli strains into Bangladesh 97%
- Analyses of Xenorhabdus griffiniae genomes reveal two distinct sub-species that display intra-species variation due to prophages. 96%
- Complete genome sequence and annotation of the laboratory reference strain Shigella flexneri serovar 5a M90T and genome-wide transcriptional start site determination 96%
Similar papers in this journal
- Unexpected distribution of the 4-formylaminooxyvinylglycine (FVG) biosynthetic pathway in Pseudomonas and beyond 96%
- Evaluation of sequence-based tools to gather more insight into the positioning of rhizogenic agrobacteria within the Agrobacterium tumefaciens species complex 96%
- Atypical integrative element with strand-biased circularization activity assists interspecies antimicrobial resistance gene transfer from Vibrio alfacsensis 96%
Similar papers in this journal
- Genomic architecture of three newly isolated unclassified Butyrivibrio species elucidate their potential role in the rumen ecosystem 96%
- Extreme genome selection towards complete antimicrobial resistance in a nosocomial strain of Stenotrophomonas maltophilia complex 94%
- Insight in the quorum sensing-driven lifestyle of the non-pathogenic Agrobacterium tumefaciens 6N2 and the interactions with the yeast Meyerozyma guilliermondii 94%
Similar papers in this journal
- High diversity and variability of pipolins among a wide range of pathogenic Escherichia coli strains 96%
- Long-read-sequenced reference genomes of the seven major lineages of enterotoxigenic Escherichia coli (ETEC) circulating in modern time 96%
- Comparative genome analysis of a multidrug-resistant Pseudomonas aeruginosa sequence type 277 clone that harbours two copies of the blaSPM-1 gene and multiple single nucleotide polymorphisms in other resistance-associated genes 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.