Kiersten R Fullem, Michelle P MacLellan, Mousami Poudel, Erica M Goss, Neha Potnis, Gerald V Minsavage, Jeffrey B Jones, Mathews L Paret
{"title":"从佛罗里达西瓜中分离的北弗洛里假单胞菌和瓜鲁利假单胞菌。","authors":"Kiersten R Fullem, Michelle P MacLellan, Mousami Poudel, Erica M Goss, Neha Potnis, Gerald V Minsavage, Jeffrey B Jones, Mathews L Paret","doi":"10.1099/ijsem.0.006596","DOIUrl":null,"url":null,"abstract":"<p><p>Three fluorescent bacterial strains, K1, K13 and K18, were obtained from watermelon (<i>Citrullus lanatus</i>) foliage symptomatic of bacterial leaf spot of cucurbits in Florida. The strains underwent phenotypic characterization, including LOPAT (levan production, oxidase activity, pectolytic activity on potato, arginine dihydrolase production and hypersensitive response (HR) on both tobacco and tomato) and pathogenicity testing on watermelon and squash seedlings. Whole-genome sequencing of the isolates was performed, and multi-locus sequence analysis (MLSA) utilizing housekeeping genes <i>gltA</i>, <i>rpoD</i>, <i>gapA</i> and <i>gyrB</i> placed the isolates into two distinct clades within the <i>Pseudomonas</i> genus. Average nucleotide identity based on blast (ANIb) was used to compare the isolates to <i>Pseudomonas</i> reference genomes. Using ANIb, the closest relatives to the novel strains were identified as <i>Pseudomonas wayambapalatensis</i> (K1 : 82.58%; K13 : 83.77%) and <i>Pseudomonas kilonensis</i> (K18 : 87.16%), although ANIb values were below the 95% threshold for species delineation. DNA-DNA hybridization (genome-genome distance calculation method), comparison to the online Type Genome Server, Biolog biochemical profiling and matrix-assisted laser desorption/ionization time-of-flight mass spectrometry were also unable to identify the isolates as any known species of <i>Pseudomonas</i>. Based on the combination of genetic and phenotypic data, we conclude that these isolates represent two novel <i>Pseudomonas</i> species, for which we propose the names <i>Pseudomonas boreofloridensis</i> sp. nov. (K1, K13<sup>T</sup>, NCPPB 4759=LMG 33364) and <i>Pseudomonas citrulli</i> sp. nov. (K18<sup>T</sup>, NCPPB 4761=LMG 33365). The specific epithet <i>boreofloridensis</i> was chosen for the geographic location of isolation (northern Florida), while <i>citrulli</i> designates the host of origin (<i>C. lanatus</i>).</p>","PeriodicalId":14390,"journal":{"name":"International journal of systematic and evolutionary microbiology","volume":"74 12","pages":""},"PeriodicalIF":2.0000,"publicationDate":"2024-12-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"<i>Pseudomonas boreofloridensis</i> sp. nov., and <i>Pseudomonas citrulli</i> sp. nov., isolated from watermelon in Florida.\",\"authors\":\"Kiersten R Fullem, Michelle P MacLellan, Mousami Poudel, Erica M Goss, Neha Potnis, Gerald V Minsavage, Jeffrey B Jones, Mathews L Paret\",\"doi\":\"10.1099/ijsem.0.006596\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Three fluorescent bacterial strains, K1, K13 and K18, were obtained from watermelon (<i>Citrullus lanatus</i>) foliage symptomatic of bacterial leaf spot of cucurbits in Florida. The strains underwent phenotypic characterization, including LOPAT (levan production, oxidase activity, pectolytic activity on potato, arginine dihydrolase production and hypersensitive response (HR) on both tobacco and tomato) and pathogenicity testing on watermelon and squash seedlings. Whole-genome sequencing of the isolates was performed, and multi-locus sequence analysis (MLSA) utilizing housekeeping genes <i>gltA</i>, <i>rpoD</i>, <i>gapA</i> and <i>gyrB</i> placed the isolates into two distinct clades within the <i>Pseudomonas</i> genus. Average nucleotide identity based on blast (ANIb) was used to compare the isolates to <i>Pseudomonas</i> reference genomes. Using ANIb, the closest relatives to the novel strains were identified as <i>Pseudomonas wayambapalatensis</i> (K1 : 82.58%; K13 : 83.77%) and <i>Pseudomonas kilonensis</i> (K18 : 87.16%), although ANIb values were below the 95% threshold for species delineation. DNA-DNA hybridization (genome-genome distance calculation method), comparison to the online Type Genome Server, Biolog biochemical profiling and matrix-assisted laser desorption/ionization time-of-flight mass spectrometry were also unable to identify the isolates as any known species of <i>Pseudomonas</i>. Based on the combination of genetic and phenotypic data, we conclude that these isolates represent two novel <i>Pseudomonas</i> species, for which we propose the names <i>Pseudomonas boreofloridensis</i> sp. nov. (K1, K13<sup>T</sup>, NCPPB 4759=LMG 33364) and <i>Pseudomonas citrulli</i> sp. nov. (K18<sup>T</sup>, NCPPB 4761=LMG 33365). 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Pseudomonas boreofloridensis sp. nov., and Pseudomonas citrulli sp. nov., isolated from watermelon in Florida.
Three fluorescent bacterial strains, K1, K13 and K18, were obtained from watermelon (Citrullus lanatus) foliage symptomatic of bacterial leaf spot of cucurbits in Florida. The strains underwent phenotypic characterization, including LOPAT (levan production, oxidase activity, pectolytic activity on potato, arginine dihydrolase production and hypersensitive response (HR) on both tobacco and tomato) and pathogenicity testing on watermelon and squash seedlings. Whole-genome sequencing of the isolates was performed, and multi-locus sequence analysis (MLSA) utilizing housekeeping genes gltA, rpoD, gapA and gyrB placed the isolates into two distinct clades within the Pseudomonas genus. Average nucleotide identity based on blast (ANIb) was used to compare the isolates to Pseudomonas reference genomes. Using ANIb, the closest relatives to the novel strains were identified as Pseudomonas wayambapalatensis (K1 : 82.58%; K13 : 83.77%) and Pseudomonas kilonensis (K18 : 87.16%), although ANIb values were below the 95% threshold for species delineation. DNA-DNA hybridization (genome-genome distance calculation method), comparison to the online Type Genome Server, Biolog biochemical profiling and matrix-assisted laser desorption/ionization time-of-flight mass spectrometry were also unable to identify the isolates as any known species of Pseudomonas. Based on the combination of genetic and phenotypic data, we conclude that these isolates represent two novel Pseudomonas species, for which we propose the names Pseudomonas boreofloridensis sp. nov. (K1, K13T, NCPPB 4759=LMG 33364) and Pseudomonas citrulli sp. nov. (K18T, NCPPB 4761=LMG 33365). The specific epithet boreofloridensis was chosen for the geographic location of isolation (northern Florida), while citrulli designates the host of origin (C. lanatus).
期刊介绍:
Published by the Microbiology Society and owned by the International Committee on Systematics of Prokaryotes (ICSP), a committee of the Bacteriology and Applied Microbiology Division of the International Union of Microbiological Societies, International Journal of Systematic and Evolutionary Microbiology is the leading forum for the publication of novel microbial taxa and the ICSP’s official journal of record for prokaryotic names.
The journal welcomes high-quality research on all aspects of microbial evolution, phylogenetics and systematics, encouraging submissions on all prokaryotes, yeasts, microfungi, protozoa and microalgae across the full breadth of systematics including:
Identification, characterisation and culture preservation
Microbial evolution and biodiversity
Molecular environmental work with strong taxonomic or evolutionary content
Nomenclature
Taxonomy and phylogenetics.