URI |
http://vocab.nerc.ac.uk/collection/P02/current/UPTH/1/ |
Within Vocab |
SeaDataNet Parameter Discovery Vocabulary |
Alternative Labels |
WC_BactProd
|
Definition |
Parameters related to bacterial production determination by measurement of dissolved organic molecule (e.g. leucine, thymidine) uptake rates |
Date |
2005-04-27T12:10:16 |
Identifier |
SDN:P02::UPTH |
Note |
accepted |
Is Version Of |
UPTH |
version |
1 |
Broader
|
P22:28 |
Oceanographic geographical features |
|
| D01:D0100001 |
Parameters |
|
| L19:005 |
theme |
|
| P03:B005 |
Bacteria and viruses |
|
| P03:O010 |
Rate measurements (including production, excretion and grazing) |
|
| P05:002 |
biota |
|
| P05:014 |
oceans |
|
| P04:G358 |
EARTH SCIENCE > Biosphere > Ecological Dynamics > Primary Production |
|
| P04:G380 |
EARTH SCIENCE > Biosphere > Microbiota Taxonomy > Bacteria |
|
Narrower
|
| P09:UPTS |
BACT. PROD. STANDARD DEVIATION |
|
| P09:UPTH |
BACTERIAL PRODUCTION(THYM. UP) |
|
| P09:LTUW |
LEUCINE UPTAKE RATE |
|
| P01:BPRDCVXX |
Carbon production rate of Bacteria (ITIS: 202421: WoRMS 6) per unit time per unit volume of the water body by computation as carbon from amino acid uptake, abundance and cell volume data |
|
| P01:PRSPBLBC |
Proportion respired of carbon (incorporated as leucine) {CAS 7440-44-0} by the water body [particulate >unknown phase] by 14C leucine doping, incubation, acidification, purging and trapping CO2 and counting liberated gas |
|
| P01:SDUPTHXX |
Update rate standard deviation (hourly) of thymidine {CAS 50-89-5} {bacterial production} per unit time per unit volume of the water body [particulate >unknown phase] |
|
| P01:LETHUPTX |
Uptake rate (daily) of leucine (bioavailable) {CAS 328-39-2} per unit time per unit volume of the water body [particulate >0.2um phase] by isotopic dilution time-series incubations, filtration and counting residue and calculation from regression of radioactivity against incubation time for each dilution and extrapolation to turnover time at ambient concentration |
|
| P01:METHUPTX |
Uptake rate (daily) of methionine (bioavailable) {CAS 59-51-8} per unit time per unit volume of the water body [particulate >0.2um phase] by isotopic dilution time-series incubations, filtration and counting residue and calculation from regression of radioactivity against incubation time for each dilution and extrapolation to turnover time at ambient concentration |
|
| P01:UPGLPM01 |
Uptake rate of glucose {Glc CAS 50-99-7} per hour per unit volume of the water body [particulate >0.2um phase] by isotope-labelled tracer addition, incubation in the dark, filtration and counting residue |
|
| P01:UPLEDAY4 |
Uptake rate of leucine {CAS 328-39-2} per day per unit volume of the water body [particulate >0.2um phase] by isotope-labelled tracer addition, incubation in the dark, filtration and counting residue |
|
| P01:UPLEDAY3 |
Uptake rate of leucine {CAS 328-39-2} per day per unit volume of the water body [particulate >unknown phase] by 3H leucine doping, incubation in the dark, centrifugation and counting residue |
|
| P01:UPLERIP4 |
Uptake rate of leucine {CAS 328-39-2} per hour per unit volume of the water body [particulate >0.2um phase] by isotope-labelled tracer addition, incubation in the dark, filtration and counting residue |
|
| P01:LEUCXXXX |
Uptake rate of leucine {CAS 328-39-2} per hour per unit volume of the water body [particulate >unknown phase] |
|
| P01:UPLE3H01 |
Uptake rate of leucine {CAS 328-39-2} per hour per unit volume of the water body [particulate >unknown phase] by 3H leucine doping, incubation in the dark, centrifugation and counting residue |
|
| P01:SFTURIPB |
Uptake rate of thymidine {CAS 50-89-5} {bacterial production} per hour per unit volume of the water body [particulate 0.2-0.8um phase] by tracer doping, incubation in the dark, cascade filtration and counting residue |
|
| P01:SFTURIPA |
Uptake rate of thymidine {CAS 50-89-5} {bacterial production} per hour per unit volume of the water body [particulate 0.2-200um phase] by tracer doping, incubation in the dark, cascade filtration and counting residue |
|
| P01:UPTHRIP4 |
Uptake rate of thymidine {CAS 50-89-5} {bacterial production} per hour per unit volume of the water body [particulate >0.2um phase] by isotope-labelled tracer addition, incubation in the dark, filtration and counting residue |
|
| P01:UPTHXXXX |
Uptake rate of thymidine {CAS 50-89-5} {bacterial production} per hour per unit volume of the water body [particulate >unknown phase] |
|
| P01:LESDUPTX |
Uptake rate standard deviation (daily) of leucine (bioavailable) {CAS 328-39-2} per unit time per unit volume of the water body [particulate >0.2um phase] by isotopic dilution time-series incubations, filtration and counting residue and calculation from regression of radioactivity against incubation time for each dilution and extrapolation to turnover time at ambient concentration |
|
| P01:MESDUPTX |
Uptake rate standard deviation (daily) of methionine (bioavailable) {CAS 59-51-8} per unit time per unit volume of the water body [particulate >0.2um phase] by isotopic dilution time-series incubations, filtration and counting residue and calculation from regression of radioactivity against incubation time for each dilution and extrapolation to turnover time at ambient concentration |
|
| P01:UPLE4H01 |
Uptake rate standard deviation of leucine {CAS 328-39-2} per hour per unit volume of the water body [particulate >unknown phase] by 3H leucine doping, incubation in the dark, centrifugation and counting residue |
|
| P01:SDLERIP4 |
Uptake rate standard deviation of leucine {CAS 328-39-2} per unit time per unit volume of the water body [particulate >0.2um phase] by isotope-labelled tracer addition, incubation in the dark, filtration and counting residue |
|
| P01:SDTHRIP4 |
Uptake rate standard deviation of thymidine {CAS 50-89-5} {bacterial production} per hour per unit volume of the water body [particulate >0.2um phase] by isotope-labelled tracer addition, incubation in the dark, filtration and counting residue |
|
Related
|
P04:G842 |
EARTH SCIENCE > Oceans > Marine Biology > Marine Microbiota |
|