Identification of a complete methane monooxygenase operon from soil by combining stable isotope probing and metagenomic analysis
Identification of a complete methane monooxygenase operon from soil by combining stable isotope probing and metagenomic analysis
Stable isotope probing (SIP) allows the isolation of nucleic acids from targeted metabolically active organisms in environmental samples. In previous studies, DNA-SIP has been performed with the one-carbon growth substrates methane and methanol to study methylotrophic organisms. The methylotrophs that incorporated the labelled substrate were identified with polymerase chain reaction and sequencing of 16S rRNA and ‘functional genes’ for methanotrophs (mxaF, pmoA, mmoX). In this study, a SIP experiment was performed using a forest soil sample incubated with 13CH4, and the 13C-DNA was purified and cloned into a bacterial artificial chromosome (BAC) plasmid. A library of 2300 clones was generated and most of the clones contained inserts between 10 and 30 kb. The library was probed for key methylotrophy genes and a 15.2 kb clone containing a pmoCAB operon, encoding particulate methane monooxygenase, was identified and sequenced. Analysis of the pmoA sequence suggested that the clone was most similar to that of a Methylocystis sp. previously detected in this forest soil. Twelve other open reading frames were identified on the clone, including the gene encoding beta-ribofuranosylaminobenzene 5?-phosphate synthase, which is involved in the biosynthesis of the ‘archaeal’ C1-carrier, tetrahydromethanopterin, which is also found in methylotrophs. This study demonstrates that relatively large DNA fragments from uncultivated organisms can be readily isolated using DNA-SIP, and cloned into a vector for metagenomic analysis
1240-1250
Dumont, Marc
afd9f08f-bdbb-4cee-b792-1a7f000ee511
Radajewski, Stefan M.
8b55f388-c415-4529-9c85-aa8de679d6e8
Miguez, Carlos B.
669c0079-d3e3-4473-a987-f4f5293e73a9
McDonald, Ian R.
7a0278c5-e2dd-440a-9a2a-f3b820dd65ca
Murrell, J. Colin
244a92ff-dbe1-41cf-9e65-baacbc4a90cf
16 March 2006
Dumont, Marc
afd9f08f-bdbb-4cee-b792-1a7f000ee511
Radajewski, Stefan M.
8b55f388-c415-4529-9c85-aa8de679d6e8
Miguez, Carlos B.
669c0079-d3e3-4473-a987-f4f5293e73a9
McDonald, Ian R.
7a0278c5-e2dd-440a-9a2a-f3b820dd65ca
Murrell, J. Colin
244a92ff-dbe1-41cf-9e65-baacbc4a90cf
Dumont, Marc, Radajewski, Stefan M., Miguez, Carlos B., McDonald, Ian R. and Murrell, J. Colin
(2006)
Identification of a complete methane monooxygenase operon from soil by combining stable isotope probing and metagenomic analysis.
Environmental Microbiology, 8 (7), .
(doi:10.1111/j.1462-2920.2006.01018.x).
Abstract
Stable isotope probing (SIP) allows the isolation of nucleic acids from targeted metabolically active organisms in environmental samples. In previous studies, DNA-SIP has been performed with the one-carbon growth substrates methane and methanol to study methylotrophic organisms. The methylotrophs that incorporated the labelled substrate were identified with polymerase chain reaction and sequencing of 16S rRNA and ‘functional genes’ for methanotrophs (mxaF, pmoA, mmoX). In this study, a SIP experiment was performed using a forest soil sample incubated with 13CH4, and the 13C-DNA was purified and cloned into a bacterial artificial chromosome (BAC) plasmid. A library of 2300 clones was generated and most of the clones contained inserts between 10 and 30 kb. The library was probed for key methylotrophy genes and a 15.2 kb clone containing a pmoCAB operon, encoding particulate methane monooxygenase, was identified and sequenced. Analysis of the pmoA sequence suggested that the clone was most similar to that of a Methylocystis sp. previously detected in this forest soil. Twelve other open reading frames were identified on the clone, including the gene encoding beta-ribofuranosylaminobenzene 5?-phosphate synthase, which is involved in the biosynthesis of the ‘archaeal’ C1-carrier, tetrahydromethanopterin, which is also found in methylotrophs. This study demonstrates that relatively large DNA fragments from uncultivated organisms can be readily isolated using DNA-SIP, and cloned into a vector for metagenomic analysis
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Published date: 16 March 2006
Organisations:
Environmental
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Local EPrints ID: 387951
URI: http://eprints.soton.ac.uk/id/eprint/387951
ISSN: 1462-2920
PURE UUID: 3f533cab-f0ed-49cf-b9d6-27fe6cf3774a
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Date deposited: 08 Jul 2016 15:24
Last modified: 15 Mar 2024 03:53
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Author:
Stefan M. Radajewski
Author:
Carlos B. Miguez
Author:
Ian R. McDonald
Author:
J. Colin Murrell
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