Literature DB >> 24048862

Pyrinomonas methylaliphatogenes gen. nov., sp. nov., a novel group 4 thermophilic member of the phylum Acidobacteria from geothermal soils.

M A Crowe1, J F Power1, X C Morgan2, P F Dunfield3, K Lagutin4, W I C Rijpstra5, M Vyssotski4, J S Sinninghe Damste5, K M Houghton1, J L J Ryan4, M B Stott1.   

Abstract

An aerobic, thermophilic, moderately acidophilic non-spore-forming bacterium, strain K22(T), was isolated from geothermally heated soil at Mount Ngauruhoe, New Zealand. On the basis of 16S rRNA gene sequence similarity, K22(T) was shown to belong to subdivision 4 of the phylum Acidobacteria and to be most closely related to 'Candidatus Chloracidobacterium thermophilum' (86 %) and Blastocatella fastidiosa (86 %). Cells stained Gram-negative and were catalase and oxidase-positive. The major fatty acids detected were iso-C15 : 0, iso-C17 : 0, iso-C19 : 0 and iso-C21 : 0 when standard lipid extraction protocols were employed. Analysis of the total cell lipid acid hydrolysate also detected membrane-spanning and ether lipids, which made up approximately 40 % of the total membrane composition. These lipids included dicarboxylic (iso-diabolic) acid and the glyceryl ether of alkyl analogues of iso-C15 : 0 and iso-diabolic acid. The G+C content of the genomic DNA was 59.6 mol% and the primary respiratory quinone was MK-8. Strain K22(T) grew at 50-69 °C with an optimum temperature of 65 °C and at pH 4.1-7.8 with an optimum growth pH of 6.5. NaCl tolerance was up to 1 % (w/v). Cells displayed a chemoheterotrophic and obligately aerobic metabolism. Cells grew on nutrient broth, alginate, arabinose, Casamino acids, glucose, lactate, formate, mannose, sodium alginate, peptone, sucrose, tryptone, xanthan, xylan, xylose and yeast extract. Nitrogen sources included nitrate, ammonium, urea, yeast extract and Casamino acids, but not dinitrogen gas. The distinct phylogenetic position and the phenotypic characteristics separate strain K22(T) from all other members of the class Acidobacteria and indicate that it represents a novel species and genus, for which the name Pyrinomonas methylaliphatogenes gen. nov., sp. nov. is proposed. The type strain of the type species is K22(T) ( = DSM 25857(T) = ICMP 18710(T)).

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Year:  2013        PMID: 24048862     DOI: 10.1099/ijs.0.055079-0

Source DB:  PubMed          Journal:  Int J Syst Evol Microbiol        ISSN: 1466-5026            Impact factor:   2.747


  14 in total

1.  Ether- and ester-bound iso-diabolic acid and other lipids in members of acidobacteria subdivision 4.

Authors:  Jaap S Sinninghe Damsté; W Irene C Rijpstra; Ellen C Hopmans; Bärbel U Foesel; Pia K Wüst; Jörg Overmann; Marcus Tank; Donald A Bryant; Peter F Dunfield; Karen Houghton; Matthew B Stott
Journal:  Appl Environ Microbiol       Date:  2014-06-13       Impact factor: 4.792

2.  Persistence of the dominant soil phylum Acidobacteria by trace gas scavenging.

Authors:  Chris Greening; Carlo R Carere; Rowena Rushton-Green; Liam K Harold; Kiel Hards; Matthew C Taylor; Sergio E Morales; Matthew B Stott; Gregory M Cook
Journal:  Proc Natl Acad Sci U S A       Date:  2015-08-03       Impact factor: 11.205

3.  Genomic and Phenotypic Characterization of Chloracidobacterium Isolates Provides Evidence for Multiple Species.

Authors:  Mohit Kumar Saini; Aswathy Sebastian; Yoshiki Shirotori; Nathan T Soulier; Amaya M Garcia Costas; Daniela I Drautz-Moses; Stephan C Schuster; Istvan Albert; Shin Haruta; Satoshi Hanada; Vera Thiel; Marcus Tank; Donald A Bryant
Journal:  Front Microbiol       Date:  2021-06-17       Impact factor: 5.640

4.  Nutrient requirements and growth physiology of the photoheterotrophic Acidobacterium, Chloracidobacterium thermophilum.

Authors:  Marcus Tank; Donald A Bryant
Journal:  Front Microbiol       Date:  2015-03-27       Impact factor: 5.640

Review 5.  The Ecology of Acidobacteria: Moving beyond Genes and Genomes.

Authors:  Anna M Kielak; Cristine C Barreto; George A Kowalchuk; Johannes A van Veen; Eiko E Kuramae
Journal:  Front Microbiol       Date:  2016-05-31       Impact factor: 5.640

6.  The Effect of Root Exudate 7,4'-Dihydroxyflavone and Naringenin on Soil Bacterial Community Structure.

Authors:  Márton Szoboszlay; Alison White-Monsant; Luke A Moe
Journal:  PLoS One       Date:  2016-01-11       Impact factor: 3.240

7.  Pheno- and Genotyping of Hopanoid Production in Acidobacteria.

Authors:  Jaap S Sinninghe Damsté; W Irene C Rijpstra; Svetlana N Dedysh; Bärbel U Foesel; Laura Villanueva
Journal:  Front Microbiol       Date:  2017-06-08       Impact factor: 5.640

8.  Genomic insights into the Acidobacteria reveal strategies for their success in terrestrial environments.

Authors:  Stephanie A Eichorst; Daniela Trojan; Simon Roux; Craig Herbold; Thomas Rattei; Dagmar Woebken
Journal:  Environ Microbiol       Date:  2018-03-12       Impact factor: 5.491

9.  Complete genome sequence of the thermophilic Acidobacteria, Pyrinomonas methylaliphatogenes type strain K22(T).

Authors:  Kevin C Y Lee; Xochitl C Morgan; Jean F Power; Peter F Dunfield; Curtis Huttenhower; Matthew B Stott
Journal:  Stand Genomic Sci       Date:  2015-11-14

10.  Peatland Acidobacteria with a dissimilatory sulfur metabolism.

Authors:  Bela Hausmann; Claus Pelikan; Craig W Herbold; Stephan Köstlbacher; Mads Albertsen; Stephanie A Eichorst; Tijana Glavina Del Rio; Martin Huemer; Per H Nielsen; Thomas Rattei; Ulrich Stingl; Susannah G Tringe; Daniela Trojan; Cecilia Wentrup; Dagmar Woebken; Michael Pester; Alexander Loy
Journal:  ISME J       Date:  2018-02-23       Impact factor: 10.302

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