Methodology and measurement of adenylate energy charge ratios in environmental samples
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Summary
The measurement of adenylate energy charge ratios in environmental samples can be a useful indicator of mean community metabolic activity and potential for cell growth.
- Type
- article
- Published
- 1978-06-01
- Cited by
- 191
- References
- 35
- OpenAlex
- https://openalex.org/W1988364536
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:83845622
Keywords
Energy charge, Adenylate kinase, Seawater, Biology, Adenine nucleotide
References
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- Relation of growth and protein synthesis to the adenylate energy charge in an adenine-requiring mutant of Escherichia coli.
- Initial velocity and equilibrium kinetics of myokinase.
- Adenosine triphosphate conservation in metabolic regulation. Rat liver citrate cleavage enzyme.
- Bioluminescence assay: principles and practice.
- Adenylate energy charge in Saccharomyces cerevisiae during starvation
- Detection and determination of adenosine diphosphate and related substances in plasma.
- Measurements of ATP and organic carbon in suspended matter of the Dutch wadden sea
- Adenine nucleotide extraction from multicellular organisms and beach sand: ATP recovery, energy charge ratios and determination of carbon/ATP ratios
- Assay of picomole amounts of ATP, ADP, and AMP using the luciferase enzyme system.
- DETERMINATION OF MICROBIAL BIOMASS IN OCEAN PROFILES1
- Function of adenosine triphosphate in the activation of luciferin.
- CHLOROPHYLL A VERSUS ADENOSINE TRIPHOSPHATE AS ALGAL BIOMASS INDICATORS IN LAKES 1
- Measurement of Adenosine Triphosphate (ATP) in Two Precambrian Shield Lakes of Northwestern Ontario
- The ATP pool in Escherichia coli. I. Measurement of the pool using modified luciferase assay.
- Adenosine triphosphate in the North Atlantic ocean and its relationship to the oxygen minimum
- Effects of luciferin concentration on the quantitative assay of ATP using crude luciferase preparations.
- Difficulties with ATP measurements in inshore waters1
- Use of the adenylate energy charge ratio to measure growth state of natural microbial communities.
- Adenosine Triphosphate Measurements in Soil and Marine Sediments
Cited by
- Plankton Dynamics of the Southern California Bight
- Isolation of Typical Marine Bacteria by Dilution Culture: Growth, Maintenance, and Characteristics of Isolates under Laboratory Conditions
- Spatial Distribution, Structure, Biomass, and Physiology of Microbial Assemblages across the Southern Ocean Frontal Zones during the Late Austral Winter
- Starvation-Survival Physiological Studies of a Marine Pseudomonas sp
- People and the Plankton
- Nutrient Cycling and Food Web Dynamics in the Southern California Bight: The Microbial Food Web
- Bacterial Biomass, Metabolic State, and Activity in Stream Sediments: Relation to Environmental Variables and Multiple Assay Comparisons
- Preservation of ATP in Hypersaline Environments
- Spatial and Temporal Scales and Patterns
- Bacterioplankton Secondary Production Estimates for Coastal Waters of British Columbia, Antarctica, and California
- Organic phosphorus in marine sediments : chemical structure, diagenetic alteration, and mechanisms of preservation
- Effect of treated-sewage contamination upon bacterial energy charge, adenine nucleotides, and DNA content in a sandy aquifer on Cape Cod
- Influence of Deep Ocean Sewage Outfalls on the Microbial Activity of the Surrounding Sediment
- X-ray microanalytic method for measurement of dry matter and elemental content of individual bacteria
- Primary Production in the Southern California Bight
- Simultaneous Rates of Ribonucleic Acid and Deoxyribonucleic Acid Syntheses for Estimating Growth and Cell Division of Aquatic Microbial Communities
- Actinomycete Isolates from Arabian Sea and Bay of Bengal: Biochemical, Molecular and Functional Characterization
- Cellular nucleotide measurements and applications in microbial ecology.
- Effects of Alkaline Phosphatase Activity on Nucleotide Measurements in Aquatic Microbial Communities
- Measurement of Microbial Activity and Growth in the Ocean by Rates of Stable Ribonucleic Acid Synthesis
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