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Appl Environ Microbiol. 1986 December; 52(6): 1368-1373
Copyright © 1986, American Society for Microbiology. All Rights Reserved.

Spatial and Temporal Variations in Bacterial Macromolecule Labeling with [methyl-3H]Thymidine in a Hypertrophic Lake {dagger}

Richard D. Robarts*, Richard J. Wicks and Lynne M. Sephton

1 National Institute for Water Research, and National Chemical Research Laboratory, 2 Council for Scientific and Industrial Research, Pretoria 0001, South Africa

ABSTRACT

The incorporation of [methyl-3H]thymidine into three macromolecular fractions, designated as DNA, RNA, and protein, by bacteria from Hartbeespoort Dam, South Africa, was measured over 1 year by acid-base hydrolysis procedures. Samples were collected at 10 m, which was at least 5 m beneath the euphotic zone. On four occasions, samples were concurrently collected at the surface. Approximately 80% of the label was incorporated into bacterial DNA in surface samples. At 10 m, total incorporation of label into bacterial macromolecules was correlated to bacterial utilization of glucose (r = 0.913, n = 13, P < 0.001). The labeling of DNA, which ranged between 0 and 78% of total macromolecule incorporation, was inversely related to glucose uptake (r = -0.823), total thymidine incorporation (r = -0.737), and euphotic zone algal production (r = -0.732, n = 13, P < 0.005). With decreased DNA labeling, increasing proportions of label were found in the RNA fraction and proteins. Enzymatic digestion followed by chromatographic separation of macromolecule fragments indicated that DNA and proteins were labeled while RNA was not. The RNA fraction may represent labeled lipids or other macromolecules or both. The data demonstrated a close coupling between phytoplankton production and heterotrophic bacterial activity in this hypertrophic lake but also confirmed the need for the routine extraction and purification of DNA during [methyl-3H]thymidine studies of aquatic bacterial production.


FOOTNOTES

* Corresponding author.

{dagger} Contribution no. 35 of the Hartbeespoort Dam Ecosystem Program.


Appl Environ Microbiol. 1986 December; 52(6): 1368-1373
Copyright © 1986, American Society for Microbiology. All Rights Reserved.







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Copyright © 1986 by the American Society for Microbiology. All rights reserved.