RRC ID 34114
Author Qiu YL, Kuang XZ, Shi XS, Yuan XZ, Guo RB.
Title Paludibacter jiangxiensis sp. nov., a strictly anaerobic, propionate-producing bacterium isolated from rice paddy field.
Journal Arch Microbiol
Abstract A mesophilic, obligately anaerobic, propionate-producing fermentative bacterium, designated strain NM7(T), was isolated from rural rice paddy field. Cells of strain NM7(T) are Gram-negative, non-motile, non-spore-forming, short rods, and negative for catalase. The strain grew optimally at 37 °C (the range for growth 15-40 °C) and pH 7.0 (pH 5.0-7.5). The strain could grow fermentatively on various sugars, including arabinose, xylose, fructose, galactose, glucose, mannose, cellobiose, lactose, maltose, sucrose, pectin and starch. The main end products of glucose fermentation were acetate and propionate. Yeast extract was not required but stimulated the growth. Nitrate, sulfate, thiosulfate, elemental sulfur, sulfite, and Fe(III) nitrilotriacetate were not used as terminal electron acceptors. The G+C content of genomic DNA was 42.8 mol%. The major cellular fatty acids were C15:0, anteiso-C15:0, C16:0, and C17:0. The most abundant polar lipid of strain NM7(T) was phosphatidylethanolamine. 16S rRNA gene sequence analysis revealed that it belongs to the family Porphyromonadaceae of the phylum Bacteroidetes. The closest recognized species was Paludibacter propionicigenes (91.4 % similarity in 16S rRNA gene sequence). A novel species, Paludibacter jiangxiensis sp. nov., is proposed to accommodate strain NM7(T) (=JCM 17480(T) = CGMCC 1.5150(T) = KCTC 5844(T)).
Volume 196(3)
Pages 149-55
Published 2014-3-1
DOI 10.1007/s00203-013-0951-1
PMID 24419224
MeSH Bacteroidetes / chemistry Bacteroidetes / classification* Bacteroidetes / genetics Bacteroidetes / physiology* Bacteroidetes / ultrastructure Base Composition DNA, Bacterial / chemistry DNA, Bacterial / genetics Fatty Acids / analysis Fermentation Molecular Sequence Data Oryza / microbiology* Phylogeny* Propionates / metabolism* RNA, Ribosomal, 16S / genetics Sequence Homology, Nucleic Acid Species Specificity
IF 1.884
Times Cited 30
WOS Category MICROBIOLOGY
Resource
General Microbes JCM 17480