References
311
Pujo-Pay M, Conan P, Raimbault P (1997) Excretion of DON by phytoplankton. Mar
Ecol Prog Ser 153:99-111
Putter A (1907) Die Ernahrung der Wassertiere. Z Allg Physiol 7:2-83
Ramsay AJ (1974) The use of autoradiography to determine the proportion of
bacteria metabolizing in an aquatic environment. J Gen Microbiol 80:363-373
Rasumov AS (1932) Direct method for counting bacteria in water and its comparison
with the plate count. Microbiologia, Moscow 1:131-146 (in Russian)
Rasumov AS (1952) Microbial plankton in water. Trans USSR Hydrobiol Soc
12:60-190 (in Russian)
Raven JA (1990) Use of isotopes in estimating respiration and photorespiration in
microalgae. Mar Microb Food Webs 4:59-86
Reish OJ, Stephens GC (1969) The influence of age on the uptake of glycine- 14 C by the
polychaete Neanthes arenaceodentata. Mar BioL3:352-355
Revsbech NB, Jorgensen BB (1981) Primary production of micro algae in sediments
measured by oxygen and 14C-methods. Limnol Oceanogr 26:717-730
Richman S (1958) The transformation of energy by Daphnia pulex. Ecol Monogr
28:273-291
Richman S (1971) Laboratory measurements of zooplankton respiration by the
Winkler method. In: Edmondson W, Winberg G (eds) Secondary production in
freshwaters. IBP Blackwell, London, pp 276-278
Riegman R, Colijn F (1991) Primary production in the Dogger Bank area in summer
1988. Mar Ecol Prog Ser 69:125-132
Riemann B (1992) Primary production in the sea: preparation of labelled carbonate
solutions and filtration of samples. In: Degens E (ed) Interactions of biogeochemical cycles in aqueous ecosystems. University of Hamburg, Hamburg, pp 225-233
Riemann B, Bell RT (1990) Advances in estimating of bacterial biomass and growth in
marine bacteria. Arch HydrobioI118:385-402
Riemann B, Sondergaard M (1984) Measurements of diel rates of bacterial secondary
production in aquatic environments. Appl Environ Microbiol 47:632-638
Riemann B, Fuhrman J, Azam F (1982) Bacterial secondary production in freshwater
measured by thymidine incorporation method. Microbial EcoI8:101-114
Riemann B, Nielsen P, Jeffersen M, Marcussen MB, Fuhrman JA (1984) Diel changes
in bacterial biomass and growth rates in coastal environments, determined by means
of thymidine incorporation into DNA, frequency of dividing cells (FDC), and
microautoradiography. Mar Ecol Prog Ser 17:227-235
Riemann B, Bjornsen PK, Newell S, Fallon R (1987) Calculation of cell production by
coastal marine bacteria based on measured incorporation of CH) thymidine. Limnol
Oceanogr 32:471-476
Rigler F (1966) Radiobiological analysis of inorganic phosphorus in lake water. Int Ver
Theor Angew Limnol Verh 16:465-470
Rigler FH (1961) The relation between concentration of food and feeding rate in
Daphnia. Can J Zool 39:857-868
Rigler FH (1971a) Use of isotopic methods. In: Edmonson W, Winberg GG (eds)
Secondary production in freshwaters. IBP Series, Blackwell, Oxford, pp 264-269
Rigler FH (1971 b) Feeding rates in zooplankton. In: Edmondson W, Winberg GG (eds)
Secondary production in freshwaters. IBP Series Blackwell, Oxford, pp 228-260
Riley GA (1944) The carbon methabolism and photosynthetic efficiency of the earth
as a whole. Am Sci 32:129-134
Riley GA, Stommel H, Bumpus OF (1949) Quantitative ecology of plankton of the
Western North Atlantic. Bull Bingham Oceanogr Coll1:1-169
Rivkin RB (1986) Incorporation of trifiated thymidine by eukaryotic algae. J Phycol
22:193-198
Robarts RD, Wicks RJ (1989) Thymidine incorporation and lipid labelling significance
in measurements of aquatic bacteria growth rate. Limnol Oceanogr 34:213-222
Précédent

- 324/334

Suivant