SeqCode Registry
cognitis nomina
  • About
  • Search
  • •
  • Login
  • Register
Authors Swings

JSON
See as cards

Swings, Jean


Publications
6

CitationNamesAbstract
Vibrio tetraodonis sp. nov.: genomic insights on the secondary metabolites repertoire Azevedo et al. (2021). Archives of Microbiology 203 (1) Vibrio tetraodonis
A new genomic taxonomy system for the Synechococcus collective Salazar et al. (2020). Environmental Microbiology 22 (11) “Cyanobiaceae” Cyanobium
Text
Enterovibrio baiacu sp. nov Azevedo et al. (2020). Current Microbiology 77 (1) Enterovibrio baiacui
“ Candidatus Colwellia aromaticivorans” sp. nov., “ Candidatus Halocyntiibacter alkanivorans” sp. nov., and “ Candidatus Ulvibacter alkanivorans” sp. nov. Genome Sequences Campeão et al. (2019). Microbiology Resource Announcements 8 (15) Ca. Colwellia aromaticivorans Ca. Halocyntiibacter alkanivorans Ca. Ulvibacter alkanivorans
Text
Ecogenomics and Taxonomy of Cyanobacteria Phylum Walter et al. (2017). Frontiers in Microbiology 8 Regnicoccus antarcticus Ts “Parasynechococcus antarcticus” Regnicoccus
Macrococcus brunensis sp. nov., Macrococcus hajekii sp. nov. and Macrococcus lamae sp. nov., from the skin of llamas Mannerová et al. (2003). International Journal of Systematic and Evolutionary Microbiology 53 (5) Macrococcus lamae Macrococcus brunensis Macrococcus hajekii

A new genomic taxonomy system for the Synechococcus collective
Summary Cyanobacteria of the genus Synechococcus are major contributors to global primary productivity and are found in a wide range of aquatic ecosystems. This Synechococcus collective (SC) is metabolically diverse, with some lineages thriving in polar and nutrient‐rich locations and others in tropical or riverine waters. Although many studies have discussed the ecology and evolution of the SC, there is a paucity of knowledge on its taxonomic structure. Thus, we present a new taxonomic classification framework for the SC based on recent advances in microbial genomic taxonomy. Phylogenomic analyses of 1085 cyanobacterial genomes demonstrate that organisms classified as Synechococcus are polyphyletic at the order rank. The SC is classified into 15 genera, which are placed into five distinct orders within the phylum Cyanobacteria: (i) Synechococcales ( Cyanobium , Inmanicoccus , Lacustricoccus gen. Nov., Parasynechococcus , Pseudosynechococcus , Regnicoccus , Synechospongium gen. nov., Synechococcus and Vulcanococcus ); (ii) Cyanobacteriales ( Limnothrix ); (iii) Leptococcales ( Brevicoccus and Leptococcus ); (iv) Thermosynechococcales ( Stenotopis and Thermosynechococcus ) and (v) Neosynechococcales ( Neosynechococcus ). The newly proposed classification is consistent with habitat distribution patterns (seawater, freshwater, brackish and thermal environments) and reflects the ecological and evolutionary relationships of the SC.
“ Candidatus Colwellia aromaticivorans” sp. nov., “ Candidatus Halocyntiibacter alkanivorans” sp. nov., and “ Candidatus Ulvibacter alkanivorans” sp. nov. Genome Sequences
Unplanned oil spills during offshore production are a serious problem for the industry and the marine environment. Here, we present the genome sequence analysis of three novel hydrocarbon-degrading bacteria, namely, “ Candidatus Colwellia aromaticivorans” sp.
Search