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Correction: Possible cross-feeding pathway of facultative methylotroph Methyloceanibacter caenitepidi Gela4 on methanotroph Methylocaldum marinum S8
- Source :
- PLoS ONE, PLoS ONE, Vol 14, Iss 3, p e0213535 (2019)
- Publication Year :
- 2019
- Publisher :
- Public Library of Science, 2019.
-
Abstract
- Non-methanotrophic bacteria such as methylotrophs often coexist with methane-oxidizing bacteria (methanotrophs) by cross-feeding on methane-derived carbon. Methanol has long been considered a major compound that mediates cross-feeding of methane-derived carbon. Despite the potential importance of cross-feeding in the global carbon cycle, only a few studies have actually explored metabolic responses of a bacteria when cross-feeding on a methanotroph. Recently, we isolated a novel facultative methylotroph, Methyloceanibacter caenitepidi Gela4, which grows syntrophically with the methanotroph, Methylocaldum marinum S8. To assess the potential metabolic pathways in M. caenitepidi Gela4 co-cultured with M. marinum S8, we conducted genomic analyses of the two strains, as well as RNA-Seq and chemical analyses of M. caenitepidi Gela4, both in pure culture with methanol and in co-culture with methanotrophs. Genes involved in the serine pathway were downregulated in M. caenitepidi Gela4 under co-culture conditions, and methanol was below the detection limit (< 310 nM) in both pure culture of M. marinum S8 and co-culture. In contrast, genes involved in the tricarboxylic acid cycle, as well as acetyl-CoA synthetase, were upregulated in M. caenitepidi Gela4 under co-culture conditions. Notably, a pure culture of M. marinum S8 produced acetate (< 16 μM) during growth. These results suggested that an organic compound other than methanol, possibly acetate, might be the major carbon source for M. caenitepidi Gela4 cross-fed by M. marinum S8. Co-culture of M. caenitepidi Gela4 and M. marinum S8 may represent a model system to further study methanol-independent cross-feeding from methanotrophs to non-methanotrophic bacteria.
- Subjects :
- Metabolic Processes
Atmospheric Science
Methanotroph
Molecular biology
Gene Expression
Pure Culture
Biochemistry
Serine
Sequencing techniques
Amino Acids
0303 health sciences
Multidisciplinary
biology
Chemistry
Organic Compounds
RNA sequencing
Enzymes
Methylococcaceae
Physical Sciences
Medicine
Biological Cultures
Metabolic Pathways
Oxidoreductases
Methane
Research Article
Cell Culturing Techniques
Science
Citric Acid Cycle
Research and Analysis Methods
03 medical and health sciences
Greenhouse Gases
Rhizobiaceae
Hydroxyl Amino Acids
Genetics
Environmental Chemistry
Gene
Dehydrogenases
030304 developmental biology
Facultative
Biology and life sciences
030306 microbiology
Organic Chemistry
Ecology and Environmental Sciences
Chemical Compounds
Correction
Proteins
Gene Expression Regulation, Bacterial
biology.organism_classification
Coculture Techniques
Citric acid cycle
Metabolic pathway
Molecular biology techniques
Metabolism
Atmospheric Chemistry
Enzymology
Earth Sciences
Methylotroph
Bacteria
Subjects
Details
- Language :
- English
- ISSN :
- 19326203
- Volume :
- 14
- Issue :
- 3
- Database :
- OpenAIRE
- Journal :
- PLoS ONE
- Accession number :
- edsair.doi.dedup.....e91bae16f4c48042cf0f9974b0330908