Thymidine and leucine incorporation in soil bacteria with different cell size
- 1 May 1994
- journal article
- research article
- Published by Springer Nature in Microbial Ecology
- Vol. 27 (3) , 267-278
- https://doi.org/10.1007/bf00182410
Abstract
Thymidine and leucine incorporation into macromolecules of soil bacteria extracted by homogenization-centrifugation were measured after size-fractionation of the bacterial suspension through different sized filters (1.0, 0.8, 0.6, 0.4 μm). The specific thymidine incorporation rate was highest for the unfiltered and 1.0 μm filtered suspensions (approximately 10 × 10−21 mol thymidine bacteria−1 h−1), but decreased to 1.39 × 10−21 mol bacteria−1 h−1 for bacteria passing the 0.4 μm filter. The proportion of culturable bacteria (percent colony forming units/acridine orange direct counts) also decreased with bacterial cell size from 5.0% for the unfiltered bacterial suspension to 0.8% in the 0.4 µm filtrate. A strong linear correlation (r2 = 0.995) was found between the specific thymidine incorporation rate and the proportion of culturable bacteria. Leucine incorporation gave similar results to the thymidine incorporation. No effects of cell size on the degree of isotope dilution or unspecific labeling of other macromolecules were found either for the thymidine or the leucine incorporation technique. These data indicate that small bacteria, although more numerous than larger ones, not only constitute a smaller proportion of the soil bacterial biomass than larger bacteria, but also contribute to a lesser degree to carbon transformations in soil.Keywords
This publication has 8 references indexed in Scilit:
- Contribution of heterotrophic bacterial production to the carbon budget of the river Seine (France)Microbial Ecology, 1993
- Incorporation of [h]leucine and [h]valine into protein of freshwater bacteria: uptake kinetics and intracellular isotope dilution.1992
- Growth characteristics of small and large free-living and attached bacteria in Lake ConstanceMicrobial Ecology, 1988
- The relationship between cell size and viability of soil bacteriaMicrobial Ecology, 1987
- Viability of soil bacteria: Optimization of plate-counting technique and comparison between total counts and plate counts within different size groupsMicrobial Ecology, 1987
- Microcomputer-Assisted Biomass Determination of Plankton Bacteria on Scanning Electron MicrographsApplied and Environmental Microbiology, 1981
- Effects of water fluctuations on microbial mass and activity in soilMicrobial Ecology, 1980
- Microflora of soil as viewed by transmission electron microscopy.1972