RRC ID 11519
著者 Kang YS, Jung J, Jeon CO, Park W.
タイトル Acinetobacter oleivorans sp. nov. is capable of adhering to and growing on diesel-oil.
ジャーナル J Microbiol
Abstract A diesel-oil and n-hexadecane-degrading novel bacterial strain, designated DR1(T), was isolated from a rice paddy in Deok-So, South Korea. The strain DR1(T) cells were Gram-negative, aerobic coccobacilli, and grew at 20-37°C with the optimal temperature of 30°C, and an optimal pH of 6-8. Interestingly, strain DR1(T) was highly motile (swimming and swarming motility) using its fimbriae, and generated N-acyl homoserine lactones as quorum-sensing signals. The predominant respiratory quinone as identified as ubiquinone-9 (Q-9) and DNA G+C content was 41.4 mol%. Comparative 16S rRNA gene sequence-based phylogenetic analysis placed the strain in a clade with the species A. calcoaceticus, A. haemolyticus, A. baumannii, A. baylyi, and A. beijerinckii, with which it evidenced sequence similarities of 98.2%, 97.4%, 97.2%, 97.1%, and 97.0%, respectively. DNA-DNA hybridization values between strain DR1(T) and other Acinetobacter spp. were all less than 20%. The physiological and taxonomic characteristics with the DNA-DNA hybridization data supported the identification of strain DR1(T) in the genus Acinetobacter as a novel species, for which the name Acinetobacter oleivorans sp. nov. is proposed. The type strain is DR1(T) (=KCTC 23045(T) =JCM 16667(T)).
巻・号 49(1)
ページ 29-34
公開日 2011-2-1
DOI 10.1007/s12275-011-0315-y
PMID 21369976
MeSH Acinetobacter / growth & development Acinetobacter / metabolism Acinetobacter / physiology* Alkanes / metabolism Bacterial Adhesion* Bacterial Typing Techniques Base Composition Cluster Analysis DNA, Bacterial / chemistry DNA, Bacterial / genetics DNA, Ribosomal / chemistry DNA, Ribosomal / genetics Environmental Microbiology Gasoline / microbiology* Hydrogen-Ion Concentration Korea Locomotion Molecular Sequence Data Nucleic Acid Hybridization Oryza / growth & development Phylogeny Quinones / analysis RNA, Ribosomal, 16S / genetics Sequence Analysis, DNA Temperature
IF 2.845
引用数 42
WOS 分野 MICROBIOLOGY
リソース情報
一般微生物 JCM 16667