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Hynes, M. F.

Publications and source records attributed to Hynes, M. F..

2 recordsLinked to original sources

Novel insights into the genome organization of Rhizobiaceae: identification of linear plasmids

2.Members of the family Rhizobiaceae typically have multipartite genomes, that are split between two or more replicons, including the chromosome and a variable number of extrachromosomal replicons (chromids and plasmids). Nearly all Rhizobiaceae replicons sequenced and described to date have a circular topology, with the exception of the linear chromid found in the genomes of most Agrobacterium spp. In this study, genomes of five nonpathogenic Agrobacterium strains and one plant tumorigenic Allorhizobium strain were fully sequenced. Surprisingly, genome analysis revealed that these six strains each carry an 80-kbp linear plasmid. Linear plasmids were so far not identified in this bacterial family or other bacteria within the class Alphaproteobacteria. The ends of all six plasmids identified in this study have a hairpin structure with covalently closed ends. The plasmid sequences showed a high degree of homology, clearly indicating their common ancestry. Database searches led to the identification of additional linear plasmids in previously published Rhizobiaceae genome assemblies that were not previously recognized to have linear plasmids, suggesting that these replicons may be more widespread. Most likely, linear plasmids may be even more widely distributed than anticipated. Although the biological functions of the linear plasmids identified in this study remain unknown, they are associated with both nonpathogenic and plant tumorigenic Rhizobiaceae strains. 3. Impact statementThe family Rhizobiaceae includes some remarkable and important representatives, such as plant symbiotic bacteria (rhizobia) and plant pathogenic bacteria associated with neoplasia (agrobacteria). In this study, the complete genome sequences of six Rhizobiaceae strains were generated and their genome organizations were examined. Strikingly, our results showed that these six strains harbor a linear plasmid. Moreover, GenBank searches suggested that linear plasmids may be even more widespread in the family Rhizobiaceae. Linear plasmids may go undetected in genome sequencing studies if the assemblies are not specifically examined for linear plasmid. Overall, this study provides further evidence for the extraordinary genome plasticity of members of the family Rhizobiaceae and expands the taxonomic range in which linear plasmids have been identified. To the best of our knowledge, this is the first report of linear plasmids in the family Rhizobiaceae or the class Alphaproteobacteria. 4. Data summaryThe whole-genome sequences have been deposited at DDBJ/ENA/GenBank under the accessions CP192696-CP192701 (Av2), CP000000-CP000000 (rho-7.1), CP000000-CP000000 (rho-8.1), CP000000-CP000000 (rho-11.1), CP000000-CP000000 (rho-13.3), and CP000000-CP000000 (rho-14.1), within the BioProjects PRJNA557463 and PRJNA1009994. The raw sequencing reads were deposited in the Sequence Read Archive (SRA) under the same BioProjects PRJNA557463 and PRJNA1009994: https://www.ncbi.nlm.nih.gov/bioproject/PRJNA557463 and https://www.ncbi.nlm.nih.gov/bioproject/PRJNA1009994. NCBI submission for five genome sequences is undergoing processing and accession numbers will be added when available; in https://figshare.com/s/29a9e621adc1b66d0957

genomics↗

Phyllobacterium meliloti sp. nov. a novel non-symbiotic bacterium isolated from root nodules of Melilotus albus (white sweet clover) grown in Canada

Two novel bacterial strains isolated from root-nodules of white sweet clover (Melilotus albus) plants grown at a Canadian site were previously characterized and placed in the genus Phyllobacterium. Here we present phylogenomic and phenotypic data to support the description of strain T1293T as representative of a novel species and present the first complete closed genome sequence of a bacterial strain (T1018) representing the species P. pellucidum. Phylogenetic analysis of genome sequences as well as analysis of 53 core genes placed novel strain T1293T in a highly supported cluster of strains distinct from named Phyllobacterium species with P. myrsinacearum and P. calauticae as closest relatives. The highest average nucleotide identity (ANI) and digital DNA-DNA hybridization (dDDH) values of genome sequences of T1293T compared to closest species type strains (84.1% and 26.5%, respectively) are well below the threshold values for bacterial species circumscription. The genome of strain T1293T has a size of 5074034 bp with a DNA G+C content of 55 mol% and possesses three plasmids with sizes of 397619 bp, 476847 bp and 519835 bp. Detected in the genome were Type III and Type VI secretion system genes, implicated in plant-microbe and microbe-microbe interactions, but key nodulation, nitrogen-fixation and photosystem genes were not detected. Further analysis revealed that T1293T, like other Phyllobacterium species, possesses key genes encoding an enzyme complex implicated in the degradation of glyphosate, a widely used broad-spectrum herbicide that has negative consequences for many microorganisms including the human gut microbiome. A novel prophage (size [~] 41.5 kb) was also detected in the genome of T1293T. Data for multiple phenotypic tests complemented the sequence-based characterization of strain T1293T. The data presented support the description of a new species and the name Phyllobacterium meliloti sp. nov. is proposed with T1293T = LMG32641T = HAMBI 3765T as the species type strain.

microbiology↗