High abundance and dark CO2 fixation of chemolithoautotrophic prokaryotes in anoxic waters of the Baltic Sea
High abundance and dark CO2 fixation of chemolithoautotrophic prokaryotes in anoxic waters of the Baltic Sea
We determined the abundance and distribution of chemolithoautotrophic prokaryotes in the redoxcline in two basins (Gotland Deep, Landsort Deep) of the central Baltic Sea by combining dark CO2 fixation measurements with flow cytometric cell sorting. Maximum CO2 fixation rates were recorded in sulfidic waters about 20 m below the chemocline. Flow cytometric analyses of deoxyribonucleic acid (DNA)–stained bacterioplankton revealed the existence of at least five different prokaryotic clusters in water samples collected below the chemocline. Dark CO2 fixation in these clusters was determined by flow cytometric sorting after anoxic incubations with NaH14CO3 tracer. Two clusters, representing about 30% of total prokaryotes, were responsible for 65% to 100% of the total dark fixation. Calculated cell-specific CO2 fixation rates in the two basins ranged from 3.5 to 24.7 fg C cell-1 d-1 and suggested that these clusters are dominated by chemolithoautotrophic prokaryotes. Mean cell-specific fixation rates reached more than 10 fg C cell-1 d-1 in most cases, indicating relatively high growth rates (doubling times 1–2 d) of chemolithoautotrophic prokaryotes. Our results provide the first evidence of such high cell-specific CO2 uptake and abundance of chemolithoautotrophic prokaryotes in a pelagic marine environment. However, the identity of the organisms as well as the mechanisms fueling CO2 dark fixation in the anoxic zone remain unknown.
14-22
Jost, Günter
16e09f14-ef6d-4d53-b4aa-928485afcec3
Zubkov, Mikhail V.
b1dfb3a0-bcff-430c-9031-358a22b50743
Yakushev, Evgeniy
1d1e18ae-2932-4d9d-a466-0847f9e55b00
Labrenz, Matthias
5fd54250-9be2-4673-aa4a-99ed615bc864
Jürgens, Klaus
bb8eed20-1630-4bd5-90a0-c419fb5e4369
January 2008
Jost, Günter
16e09f14-ef6d-4d53-b4aa-928485afcec3
Zubkov, Mikhail V.
b1dfb3a0-bcff-430c-9031-358a22b50743
Yakushev, Evgeniy
1d1e18ae-2932-4d9d-a466-0847f9e55b00
Labrenz, Matthias
5fd54250-9be2-4673-aa4a-99ed615bc864
Jürgens, Klaus
bb8eed20-1630-4bd5-90a0-c419fb5e4369
Jost, Günter, Zubkov, Mikhail V., Yakushev, Evgeniy, Labrenz, Matthias and Jürgens, Klaus
(2008)
High abundance and dark CO2 fixation of chemolithoautotrophic prokaryotes in anoxic waters of the Baltic Sea.
Limnology and Oceanography, 53 (1), .
(doi:10.4319/lo.2008.53.1.0014).
Abstract
We determined the abundance and distribution of chemolithoautotrophic prokaryotes in the redoxcline in two basins (Gotland Deep, Landsort Deep) of the central Baltic Sea by combining dark CO2 fixation measurements with flow cytometric cell sorting. Maximum CO2 fixation rates were recorded in sulfidic waters about 20 m below the chemocline. Flow cytometric analyses of deoxyribonucleic acid (DNA)–stained bacterioplankton revealed the existence of at least five different prokaryotic clusters in water samples collected below the chemocline. Dark CO2 fixation in these clusters was determined by flow cytometric sorting after anoxic incubations with NaH14CO3 tracer. Two clusters, representing about 30% of total prokaryotes, were responsible for 65% to 100% of the total dark fixation. Calculated cell-specific CO2 fixation rates in the two basins ranged from 3.5 to 24.7 fg C cell-1 d-1 and suggested that these clusters are dominated by chemolithoautotrophic prokaryotes. Mean cell-specific fixation rates reached more than 10 fg C cell-1 d-1 in most cases, indicating relatively high growth rates (doubling times 1–2 d) of chemolithoautotrophic prokaryotes. Our results provide the first evidence of such high cell-specific CO2 uptake and abundance of chemolithoautotrophic prokaryotes in a pelagic marine environment. However, the identity of the organisms as well as the mechanisms fueling CO2 dark fixation in the anoxic zone remain unknown.
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Published date: January 2008
Organisations:
National Oceanography Centre,Southampton
Identifiers
Local EPrints ID: 59003
URI: http://eprints.soton.ac.uk/id/eprint/59003
ISSN: 0024-3590
PURE UUID: 7b50f918-db25-4655-8099-78e5b0f9b161
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Date deposited: 20 Aug 2008
Last modified: 15 Mar 2024 11:13
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Author:
Günter Jost
Author:
Mikhail V. Zubkov
Author:
Evgeniy Yakushev
Author:
Matthias Labrenz
Author:
Klaus Jürgens
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