Literature DB >> 21097638

Methyloferula stellata gen. nov., sp. nov., an acidophilic, obligately methanotrophic bacterium that possesses only a soluble methane monooxygenase.

Alexey V Vorobev1, Mohamed Baani2, Nina V Doronina3, Allyson L Brady4, Werner Liesack2, Peter F Dunfield4,2, Svetlana N Dedysh1.   

Abstract

Two strains of aerobic methanotrophic bacteria, AR4(T) and SOP9, were isolated from acidic (pH 3.8-4.0) Sphagnum peat bogs in Russia. Another phenotypically similar isolate, strain LAY, was obtained from an acidic (pH 4.0) forest soil in Germany. Cells of these strains were Gram-negative, non-pigmented, non-motile, thin rods that multiplied by irregular cell division and formed rosettes or amorphous cell conglomerates. Similar to Methylocella species, strains AR4(T), SOP9 and LAY possessed only a soluble form of methane monooxygenase (sMMO) and lacked intracytoplasmic membranes. Growth occurred only on methane and methanol; the latter was the preferred growth substrate. mRNA transcripts of sMMO were detectable in cells when either methane or both methane and methanol were available. Carbon was assimilated via the serine and ribulose-bisphosphate (RuBP) pathways; nitrogen was fixed via an oxygen-sensitive nitrogenase. Strains AR4(T), SOP9 and LAY were moderately acidophilic, mesophilic organisms capable of growth between pH 3.5 and 7.2 (optimum pH 4.8-5.2) and at 4-33 °C (optimum 20-23 °C). The major cellular fatty acid was 18 : 1ω7c and the quinone was Q-10. The DNA G+C content was 55.6-57.5 mol%. The isolates belonged to the family Beijerinckiaceae of the class Alphaproteobacteria and were most closely related to the sMMO-possessing methanotrophs of the genus Methylocella (96.4-97.0 % 16S rRNA gene sequence similarity), particulate MMO (pMMO)-possessing methanotrophs of the genus Methylocapsa (96.1-97.0 %), facultative methylotrophs of the genus Methylovirgula (96.1-96.3 %) and non-methanotrophic organotrophs of the genus Beijerinckia (96.5-97.0 %). Phenotypically, strains AR4(T), SOP9 and LAY were most similar to Methylocella species, but differed from members of this genus by cell morphology, greater tolerance of low pH, detectable activities of RuBP pathway enzymes and inability to grow on multicarbon compounds. Therefore, we propose a novel genus and species, Methyloferula stellata gen. nov., sp. nov., to accommodate strains AR4(T), SOP9 and LAY. Strain AR4(T) ( = DSM 22108(T)  = LMG 25277(T)  = VKM B-2543(T)) is the type strain of Methyloferula stellata.

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Year:  2010        PMID: 21097638     DOI: 10.1099/ijs.0.028118-0

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


  76 in total

1.  Acetate repression of methane oxidation by supplemental Methylocella silvestris in a peat soil microcosm.

Authors:  M Tanvir Rahman; Andrew Crombie; Hélène Moussard; Yin Chen; J Colin Murrell
Journal:  Appl Environ Microbiol       Date:  2011-04-22       Impact factor: 4.792

2.  Community structure, abundance, and activity of methanotrophs in the Zoige wetland of the Tibetan Plateau.

Authors:  Juanli Yun; Guoqiang Zhuang; Anzhou Ma; Hongguang Guo; Yanfen Wang; Hongxun Zhang
Journal:  Microb Ecol       Date:  2011-12-10       Impact factor: 4.552

3.  Composition of methane-oxidizing bacterial communities as a function of nutrient loading in the Florida everglades.

Authors:  Ashvini Chauhan; Ashish Pathak; Andrew Ogram
Journal:  Microb Ecol       Date:  2012-04-29       Impact factor: 4.552

4.  Differential expression of particulate methane monooxygenase genes in the verrucomicrobial methanotroph 'Methylacidiphilum kamchatkense' Kam1.

Authors:  Helge-André Erikstad; Sigmund Jensen; T Jeffrey Keen; Nils-Kåre Birkeland
Journal:  Extremophiles       Date:  2012-04-10       Impact factor: 2.395

5.  Dry/Wet cycles change the activity and population dynamics of methanotrophs in rice field soil.

Authors:  Ke Ma; Ralf Conrad; Yahai Lu
Journal:  Appl Environ Microbiol       Date:  2013-06-14       Impact factor: 4.792

6.  Comparative Analyses of Methanogenic and Methanotrophic Communities Between Two Different Water Regimes in Controlled Wetlands on the Qinghai-Tibetan Plateau, China.

Authors:  Hongpeng Cui; Xin Su; Shiping Wei; Youhai Zhu; Zhenquan Lu; Yanfa Wang; Yuejiao Li; Hui Liu; Shuai Zhang; Shouji Pang
Journal:  Curr Microbiol       Date:  2017-11-29       Impact factor: 2.188

7.  Potential of pmoA amplicon pyrosequencing for methanotroph diversity studies.

Authors:  Claudia Lüke; Peter Frenzel
Journal:  Appl Environ Microbiol       Date:  2011-07-15       Impact factor: 4.792

8.  Detection, isolation, and characterization of acidophilic methanotrophs from Sphagnum mosses.

Authors:  Nardy Kip; Wenjing Ouyang; Julia van Winden; Ashna Raghoebarsing; Laura van Niftrik; Arjan Pol; Yao Pan; Levente Bodrossy; Elly G van Donselaar; Gert-Jan Reichart; Mike S M Jetten; Jaap S Sinninghe Damsté; Huub J M Op den Camp
Journal:  Appl Environ Microbiol       Date:  2011-07-01       Impact factor: 4.792

9.  Methanotrophic bacteria in oilsands tailings ponds of northern Alberta.

Authors:  Alireza Saidi-Mehrabad; Zhiguo He; Ivica Tamas; Christine E Sharp; Allyson L Brady; Fauziah F Rochman; Levente Bodrossy; Guy Cj Abell; Tara Penner; Xiaoli Dong; Christoph W Sensen; Peter F Dunfield
Journal:  ISME J       Date:  2012-12-20       Impact factor: 10.302

10.  Recent Advances in the Genetic Manipulation of Methylosinus trichosporium OB3b.

Authors:  Soo Y Ro; Amy C Rosenzweig
Journal:  Methods Enzymol       Date:  2018-04-11       Impact factor: 1.600

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