Description of Patulibacter americanus sp. nov., isolated from biological soil crusts, emended description of the genus Patulibacter Takahashi et al. 2006 and proposal of Solirubrobacterales ord. nov. and Thermoleophilales ord. nov.

@article{Reddy2009DescriptionOP,
  title={Description of Patulibacter americanus sp. nov., isolated from biological soil crusts, emended description of the genus Patulibacter Takahashi et al. 2006 and proposal of Solirubrobacterales ord. nov. and Thermoleophilales ord. nov.},
  author={G. Reddy and F. Garcia-Pichel},
  journal={International journal of systematic and evolutionary microbiology},
  year={2009},
  volume={59 Pt 1},
  pages={
          87-94
        }
}
  • G. Reddy, F. Garcia-Pichel
  • Published 2009
  • Biology, Medicine
  • International journal of systematic and evolutionary microbiology
Two bacterial strains, CP153-3 and CP177-2T, were isolated from biological soil crusts on the Colorado Plateau, USA, and assigned to the genus Patulibacter, according to 16S rRNA gene sequence analysis and phenotypic characteristics. The strains were Gram-positive, aerobic and psychrotolerant and showed positive catalase and negative oxidase reactions. Cells were motile in young cultures, motility consisting of subtle jerking motions, but no flagella could be detected. The strains shared high… Expand
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  • Soon‐Dong Lee
  • Biology, Medicine
  • International journal of systematic and evolutionary microbiology
  • 2017
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  • 2016
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Considering combined phenotypic and genotypic characteristics, it is proposed that strain SDT represents a novel species of the genus Patulibacter, for which the name PatulIBacter brassicae sp. Expand
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On the basis of phenotypic and genotypic characteristics, it is proposed that strain KV-614T represents a new genus and a novel species, Patulibacter minatonensis gen. nov, in the class Actinobacteria. Expand
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Based on its phylogenetic placement and morphological and physiological characteristics, strain CP2CT is assigned to a new genus in the alpha-1 subgroup of the Proteobacteria, for which the name Belnapia gen. nov. is proposed. Expand
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This strain was isolated from biological soil crusts collected in the Colorado Plateau, USA and exhibited a significant number of phenotypic and chemotaxonomic differences from D. fermentans, resulting in its being described as a novel second species in the genus Dyadobacter. Expand
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Solirubrobacter pauli gen. nov., sp. nov., a mesophilic bacterium within the Rubrobacteridae related to common soil clones.
TLDR
These results placed strain B33D1T within the subclass Rubrobacteridae of the phylum Actinobacteria and the novel genus and species Solirubrobacter pauli gen. nov., sp. Expand
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TLDR
The distinct phylogenetic position and the unusual combination of chemotaxonomic characteristics justify the proposal of a new genus and species, Conexibacter woesei gen. nov., sp.Novel Gram-positive bacterial strain isolated from forest soil. Expand
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TLDR
CMS 19YT, a psychrophilic bacterium, was isolated from a cyanobacterial mat sample from a pond in Antarctica and was characterized taxonomically and it is proposed that it should be placed in the genus Arthrobacter as a new species. Expand
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TLDR
A Gram-positive, non-spore-forming, rod-shaped and non-motile bacterium, strain Gsoil 355(T), was isolated from soil of a ginseng field in South Korea and represents a novel species of the genus Solirubrobacter, for which the name SolirUBrobacter soli sp. Expand
Deinococcus indicus sp. nov., an arsenic-resistant bacterium from an aquifer in West Bengal, India.
TLDR
An arsenic- and radiation-resistant bacterium, strain Wt/1a(T), was isolated from water from an arsenic-contaminated aquifer located in the Chakdah district of West Bengal, India and identified as a novel species of the genus Deinococcus sp. Expand
Thermoleophilum album gen. nov. and sp. nov., a bacterium obligate for thermophily and n-alkane substrates
TLDR
Several bacterial strains that are obligate for both thermophily and hydrocarbon utilization have been isolated from a number of thermal and non-thermal environments and it is proposed that they be placed in a new genus, Thermoleophilum gen. nov. Expand
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