RRC ID 34416
Author Wu YF, Zheng H, Wu QL, Yang H, Liu SJ.
Title Clostridium algifaecis sp. nov., an anaerobic bacterial species from decomposing algal scum.
Journal Int J Syst Evol Microbiol
Abstract Two anaerobic bacterial strains, MB9-7(T) and MB9-9, were isolated from decomposing algal scum and were characterized using a polyphasic approach. Phylogenetic analysis of 16S rRNA gene sequences showed that strains MB9-7(T) and MB9-9 are closely related to each other (99.7% similarity) and they are also closely related to Clostridium tyrobutyricum (96.5%). The two strains were Gram-stain positive and rod-shaped. Growth occurred at 20-45 °C, at pH 4.0-8.0 and at NaCl concentrations of up to 2% (w/v). Acid was produced from glucose, xylose and mannose. Products of fermentation in PYG medium were mainly butyrate, acetate, carbon dioxide and hydrogen. The predominant cellular fatty acids were C(14:0) and C(16:0). The cellular polar lipids comprised phosphatidylglycerol, diphosphatidylglycerol, phosphatidylethanolamine, two glycolipids, one phospholipid, one aminophospholipid and two aminolipids. The DNA G+C contents of strain MB9-7(T) and MB9-9 were 27.9 and 28.7 mol%, respectively. These results support the assignment of the new isolates to the genus Clostridium and also distinguish them from other species of the genus Clostridium. Hence, it is proposed that strains MB9-7(T) and MB9-9 represent a novel species of the genus Clostridium, with the suggested name Clostridium algifaecis sp. nov. The type strain is MB9-7(T) ( =CGMCC 1.5188(T) =DSM 28783(T)).
Volume 64(Pt 11)
Pages 3844-3848
Published 2014-11-1
DOI 10.1099/ijs.0.064345-0
PMID 25168611
MeSH Bacterial Typing Techniques Base Composition China Clostridium / classification* Clostridium / genetics Clostridium / isolation & purification DNA, Bacterial / genetics Eutrophication Fatty Acids / chemistry Glycolipids / chemistry Molecular Sequence Data Phospholipids / chemistry Phylogeny* RNA, Ribosomal, 16S / genetics Sequence Analysis, DNA Water Microbiology*
IF 2.415
Times Cited 10
WOS Category MICROBIOLOGY
Resource
General Microbes JCM 11008