Methane formation and oxidation in the meromictic oligotrophic Lake Gek-Gel (Azerbaijan)
Н. В. Пименов, Anna Yu. Kallistova, I. I. Rusanov, S. K. Yusupov, Leone Montonen, German Jurgens, Uwe Münster, Alla N. Nozhevnikova, Maxim V. Ivanov
Abstract
Н. В. Пименов, Anna Yu. Kallistova, I. I. Rusanov, S. K. Yusupov, Leone Montonen, German Jurgens, Uwe Münster, Alla N. Nozhevnikova, Maxim V. Ivanov
Abstract
The production and oxidation of methane and diversity of culturable aerobic methanotrophic bacteria in the water column and upper sediments of the meromictic oligotrophic Lake Gek-Gel (Azerbaijan) were studied by radioisotope, molecular, and microbiological techniques. The rate of methane oxidation was low in the aerobic mixolimnion, increased in the chemocline, and peaked at the depth where oxygen was detected in the water column. Aerobic methanotrophic bacteria of type II belonging to the genus Methylocystis were identified in enrichment cultures obtained from the chemocline. Methane oxidation in the anaerobic water of the monimolimnion was much more intense than in the aerobic zone. However, below 29–30 m methane concentration increased and reached 68 μM at the bottom. The highest rate of methane oxidation under anaerobic conditions was revealed in the upper layer of bottom sediments. The rate of methane oxidation significantly exceeding that of methane production suggests a deep source of methane in this lake.
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The production and oxidation of methane and diversity of culturable aerobic methanotrophic bacteria in the water column and upper sediments of the meromictic oligotrophic Lake Gek-Gel (Azerbaijan) were studied by radioisotope, molecular, and microbiological techniques. The rate of methane oxidation was low in the aerobic mixolimnion, increased in the chemocline, and peaked at the depth where oxygen was detected in the water column. Aerobic methanotrophic bacteria of type II belonging to the genus Methylocystis were identified in enrichment cultures obtained from the chemocline. Methane oxidation in the anaerobic water of the monimolimnion was much more intense than in the aerobic zone. However, below 29–30 m methane concentration increased and reached 68 μM at the bottom. The highest rate of methane oxidation under anaerobic conditions was revealed in the upper layer of bottom sediments. The rate of methane oxidation significantly exceeding that of methane production suggests a deep source of methane in this lake.
Key concepts: Chemocline, Anaerobic oxidation of methane, Methane, Water column, Environmental chemistry, Anaerobic exercise, Oxygen, Chemistry