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PMID: 2776572 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S.

Kinetics of bacterial processes in natural aquatic systems based on biomass as determined by high-resolution flow cytometry.

Cytometry ·Vol. 10 ·No. 5 ·1989-09-00 ·Pages 558-63

Button DK, Robertson BR

Abstract

The two primary kinetic constants for describing the concentration dependency of nutrient uptake by microorganisms are shown to be maximal rate of substrate uptake and, rather than the Michaelis constant for transport, specific affinity. Of the two, the specific affinity is more important for describing natural aquatic microbial processes because it can be used independently at small substrate concentrations. Flow cytometry was used to evaluate specific affinities in natural populations of aquatic bacteria because it gives a convenient measure of biomass, which is an essential measurement in the specific-affinity approach to microbial kinetics. Total biomass, biomass in various filter fractions, and the specific affinity of the bacteria in each fraction were determined in samples from a near-arctic lake. The partial growth rate of the pelagic bacteria from the 25 micrograms/liter of dissolved amino acids present (growth rate from the amino acid fraction alone) was determined to be 0.78 per day. By measuring activity in screened and whole-system populations, the biomass of the bacteria associated with particles was computed to be 427 micrograms/liter.

MeSH Terms
Amino Acids/analysis Bacteria/metabolism Biotransformation DNA, Bacterial/analysis Ecology Filtration Flow Cytometry Kinetics Mathematics Signal Processing, Computer-Assisted Terminology as Topic Water Microbiology
Chemicals
Amino Acids DNA, Bacterial
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Button D K
Institute of Marine Science, University of Alaska, Fairbanks 99775.
Robertson B R
Article Info
Journal
Cytometry
Abbr.
Cytometry
ISSN
0196-4763
Published
1989-09-00
Pages
558-63
Language
English
Region
United States
NLM ID
8102328
Subset
IM
Corrections
ErratumIn
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