Estimating Bacterioplankton Production by Measuring [ 3 H]thymidine Incorporation in a Eutrophic Swedish Lake

Author:

Bell Russell T.1,Ahlgren Gunnel M.1,Ahlgren Ingemar1

Affiliation:

1. Institute of Limnology, Uppsala University, S-751 22 Uppsala, Sweden

Abstract

Bacterioplankton abundance, [ 3 H]thymidine incorporation, 14 CO 2 uptake in the dark, and fractionated primary production were measured on several occasions between June and August 1982 in eutrophic Lake Norrviken, Sweden. Bacterioplankton abundance and carbon biomass ranged from 0.5 � 10 9 to 2.4 � 10 9 cells liter −1 and 7 to 47 μg of C liter −1 , respectively. The average bacterial cell volume was 0.185 μm 3 . [ 3 H]thymidine incorporation into cold-trichloroacetic acid-insoluble material ranged from 12 � 10 −12 to 200 � 10 −12 mol liter −1 h −1 . Bacterial carbon production rates were estimated to be 0.2 to 7.1 μg of C liter −1 h −1 . Bacterial production estimates from [ 3 H]thymidine incorporation and 14 CO 2 uptake in the dark agreed when activity was high but diverged when activity was low and when blue-green algae (cyanobacteria) dominated the phytoplankton. Size fractionation indicated negligible uptake of [ 3 H]thymidine in the >3-μm fraction during a chrysophycean bloom in early June. We found that >50% of the 3 H activity was in the >3-μm fraction in late August; this phenomenon was most likely due to Microcystis spp., their associated bacteria, or both. Over 60% of the 14 CO 2 uptake in the dark was attributed to algae on each sampling occasion. Algal exudate was an important carbon source for planktonic bacteria. Bacterial production was roughly 50% of primary production.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference77 articles.

1. Limnological studies of Lake Norrviken, a eutrophicated Swedish lake. II. Phytoplankton and its production;Ahlgren G.;Schweiz. Z. Hydrol.,1970

2. Growth of Oscillatoria agardhii in chemostat cultures. I. Nitrogen and phosphorus requirements;Ahlgren G.;Oikos,1977

3. Response of phytoplankton and primary production to reduced nutrient loading in Lake Norrviken;Ahlgren G.;Verh. Int. Ver. Limnol.,1978

4. Limnological studies of Lake Norrviken, a eutrophicated Swedish lake. I. Water chemistry and nutrient budget;Ahlgren I.;Schweiz. Z. Hydrol.,1967

5. Response of Lake Norrviken to reduced nutrient loading;Ahlgren I.;Verh. Int. Ver. Limnol.,1978

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