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Cultivation of methanotrophic bacteria in opposing gradients of methane and oxygen

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2006_Bussmann_331_344.pdf
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2006

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Bussmann, Ingeborg
Rahalkar, Monali

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FEMS Microbiology Ecology. 2006, 56(3), pp. 331-344. ISSN 0168-6496. eISSN 1574-6941. Available under: doi: 10.1111/j.1574-6941.2006.00076.x

Zusammenfassung

In sediments, methane-oxidizing bacteria live in opposing gradients of methane and oxygen. In such a gradient system, the fluxes of methane and oxygen are controlled by diffusion and consumption rates, and the rate-limiting substrate is maintained at a minimum concentration at the layer of consumption. Opposing gradients of methane and oxygen were mimicked in a specific cultivation set-up in which growth of methanotrophic bacteria occurred as a sharp band at either c. 5 or 20mm below the air-exposed end. Two new strains of methanotrophic bacteria were isolated with this system. One isolate, strain LC 1, belonged to the Methylomonas genus (type I methantroph) and contained soluble methane mono-oxygenase. Another isolate, strain LC 2, was related to the Methylobacter group (type I methantroph), as determined by 16S rRNA gene and pmoA sequence similarities. However, the partial pmoA sequence was only 86% related to cultured Methylobacter species. This strain accumulated significant amounts of formaldehyde in conventional cultivation with methane and oxygen, which may explain why it is preferentially enriched in a gradient cultivation system.

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570 Biowissenschaften, Biologie

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Freshwater sediment, gradient cultivation, Lake Constance, methanotrophs, Methylobacter

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ISO 690BUSSMANN, Ingeborg, Monali RAHALKAR, Bernhard SCHINK, 2006. Cultivation of methanotrophic bacteria in opposing gradients of methane and oxygen. In: FEMS Microbiology Ecology. 2006, 56(3), pp. 331-344. ISSN 0168-6496. eISSN 1574-6941. Available under: doi: 10.1111/j.1574-6941.2006.00076.x
BibTex
@article{Bussmann2006Culti-8085,
  year={2006},
  doi={10.1111/j.1574-6941.2006.00076.x},
  title={Cultivation of methanotrophic bacteria in opposing gradients of methane and oxygen},
  number={3},
  volume={56},
  issn={0168-6496},
  journal={FEMS Microbiology Ecology},
  pages={331--344},
  author={Bussmann, Ingeborg and Rahalkar, Monali and Schink, Bernhard}
}
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