RRC ID 5467
Author Weon HY, Anandham R, Kim BY, Hong SB, Jeon YA, Kwon SW.
Title Dyella soli sp. nov. and Dyella terrae sp. nov., isolated from soil.
Journal Int J Syst Evol Microbiol
Abstract Two novel strains isolated from soils, JS12-10(T) and JS14-6(T), were characterized using a polyphasic approach to determine their taxonomic positions. These isolates were found to be aerobic, Gram-negative, motile with one polar flagellum, non-spore-forming and rod-shaped. Phenotypic and fatty acid data supported the affiliation of JS12-10(T) and JS14-6(T) to the genus Dyella. However, chemotaxonomic data and DNA-DNA relatedness values allowed differentiation of these strains from other Dyella species with validly published names. Strains JS12-10(T) and JS14-6(T) showed the highest 16S rRNA gene sequence similarities with Dyella ginsengisoli Gsoil 3046(T) (98.4 %) and Dyella japonica XD53(T) (97.9 %), respectively, and the 16S rRNA gene sequence similarity between them was 97.1 %. DNA-DNA hybridization values between the novel isolates and strains of other recognized Dyella species were 29-38 %. Therefore, strains JS12-10(T) and JS14-6(T) represent two novel species of the genus Dyella, for which the names Dyella soli sp. nov. (type strain JS12-10(T) =KACC 12747(T) =JCM 15423(T)) and Dyella terrae sp. nov. (type strain JS14-6(T) =KACC 12748(T) =JCM 15424(T)) are proposed.
Volume 59(Pt 7)
Pages 1685-90
Published 2009-7-1
DOI 10.1099/ijs.0.004838-0
PII ijs.0.004838-0
PMID 19542132
MeSH Bacterial Typing Techniques Base Composition DNA, Bacterial / analysis Fatty Acids / analysis Genes, rRNA Genotype Korea Molecular Sequence Data Nucleic Acid Hybridization Phenotype Phylogeny RNA, Ribosomal, 16S / genetics Sequence Analysis, DNA Soil Microbiology* Species Specificity Xanthomonadaceae / classification* Xanthomonadaceae / genetics Xanthomonadaceae / isolation & purification Xanthomonadaceae / physiology
IF 2.415
Times Cited 24
WOS Category MICROBIOLOGY
Resource
General Microbes JCM15423 JCM15424