314
References
Simon M, Azam F (1989) Protein content and protein synthesis rate in planktonic
marine bacteria. Mar Ecol Prog Ser 51:201-213
Smith ~C, Azam F (1992) A simple economical method for measuring bacterial
production in sea-water using 3H leucine. Mar Microb Food Webs 6:107-114
Smith OF, Horner SM (1981) Tracer kinetic analysis applied to problems of marine
biology. In: Platt T (ed) Physiological bases of phytoplankton ecology. Can Bull Fish
Aquat Sci Ottawa Can 210;113-125
Smith OF, Bulleid NC, Campbell R (1973) Marine food web analysis using isotopically
labeled prays. Mar BioI 54:49-59
Smith OF, Wiebe WJ, Higgins HW (1984) Heterotrophic potential estimates: a paradox
in assuming Michaelis-Menten Kinetics. Mar Ecol Prog Ser 17:49-56
Smith JO, Riemann B (1988) Calculation of cell production from 3H-thymidine
incorporation with freshwater bacteria. Appl Environ Microbiol 52(9):2213-2219
Smith RE (1982) The estimation of phytoplankton production and excretion by
14 - carbon. Mar BioI Lett 3:325-334
Smith RE, Platt T (1984) Carbon exchange and 14C methods in a nitrogen-limited
diatom Thulassiosira pseudonana. Mar Ecol Prog Ser 16:75-87
Smith SV, Kinsey OW (1978) Calcification and organic carbon as indicated by carbon
dioxide. In: Coral reef research methods. UNESCO Paris, pp 489-494
Sokolova GA, Sorokin Yu I (1957) Bacterial reduction of sulfates in the Rybinsk
reservoir. Microbiologia, Moscow 26:194-201 (in Russian)
Somrille MA (1978) A method for the measurement of nitrification rate in water. Water
Res 12:843-849
Sondergaard M (1962) Inactivation of photochemical mechanism in photosynthesis at
too high light intensities. Physiol Plant 15:161-171
Sondergaad M (1985) On radiocarbon method: filtration or acidification- bubbling. J
Plankton Res 7:391-397
Sondergaard M, Sand-Jensen K (1979) The delay in 14C-C02 fixation rates by three submerged macrophytes: a source of error in 14C technique. Aquat Bot 6:111-119
Sondergaard M, Riemann B, Jorgensen NO (1985) Extracellular organic carbon
released by phytoplankton. Oikos 45:323-332
Sorokin PYu (1993) Planktonic ciliates in the Antarctic waters. In: Klekovski R (ed)
The second Polish-Soviet Antarctic Symposium Inst of Ecology RAS, Warszawa, pp
89-94
Sorokin Yu I (1955a) Estimation of microbial chemosynthesis in water of the Rybinsk
reservoir with the aid of 14c. Rep (Ookl) Acad Sci USSR 105:1343-1347 (in Russian)
Sorokin Yu I (1955b) On the microbial chemosynthesis in the bottom sediments. Microbiologia, Moscow 24:393-399 (in Russian)
Sorokin Yu I (1956a) The use of radioactive carbon for study of primary production of
water reservoirs. Trans USSR Hydrobiol Soc Moscow 7:171-176 (in Russian)
Sorokin Yu I (1956b) The use of 14C for studies of primary production in water basins.
Trans Hydrobiol Soc USSR 7:271-286
Sorokin Yu I (1957) Estimation of the efficiency of chemosynthesis due to methane
and hydrogen oxidation in the water body. Microbiologia, Moscow 26:13-17 (in
Russian)
Sorokin Yu I (1958a) Primary production of organic matter in the water column of the
Rybinsk reservoir. Trans Inst Freshwat BioI Borok Acad Sci USSR 3:66-88 (in
Russian)
Sorokin Yu I (1958b) Results and prospects of using isotopic carbon for investigation
of carbon cycle in water basins. Int Conf Radioisotopes UNESCO Paris 4:633-648
Sorokin Yu I (1958c) Role of chemosynthesis in organic matter production in the water
column of artificial lakes. Microbiologia, Moscow 27:357-365 (in Russian)
Sorokin Yu I (1959a) The measurement of phytoplankton primary production in the
water column of natural water bodies. Plant Physiol Moscow 6:118-129 (in Russian)
References
Simon M, Azam F (1989) Protein content and protein synthesis rate in planktonic
marine bacteria. Mar Ecol Prog Ser 51:201-213
Smith ~C, Azam F (1992) A simple economical method for measuring bacterial
production in sea-water using 3H leucine. Mar Microb Food Webs 6:107-114
Smith OF, Horner SM (1981) Tracer kinetic analysis applied to problems of marine
biology. In: Platt T (ed) Physiological bases of phytoplankton ecology. Can Bull Fish
Aquat Sci Ottawa Can 210;113-125
Smith OF, Bulleid NC, Campbell R (1973) Marine food web analysis using isotopically
labeled prays. Mar BioI 54:49-59
Smith OF, Wiebe WJ, Higgins HW (1984) Heterotrophic potential estimates: a paradox
in assuming Michaelis-Menten Kinetics. Mar Ecol Prog Ser 17:49-56
Smith JO, Riemann B (1988) Calculation of cell production from 3H-thymidine
incorporation with freshwater bacteria. Appl Environ Microbiol 52(9):2213-2219
Smith RE (1982) The estimation of phytoplankton production and excretion by
14 - carbon. Mar BioI Lett 3:325-334
Smith RE, Platt T (1984) Carbon exchange and 14C methods in a nitrogen-limited
diatom Thulassiosira pseudonana. Mar Ecol Prog Ser 16:75-87
Smith SV, Kinsey OW (1978) Calcification and organic carbon as indicated by carbon
dioxide. In: Coral reef research methods. UNESCO Paris, pp 489-494
Sokolova GA, Sorokin Yu I (1957) Bacterial reduction of sulfates in the Rybinsk
reservoir. Microbiologia, Moscow 26:194-201 (in Russian)
Somrille MA (1978) A method for the measurement of nitrification rate in water. Water
Res 12:843-849
Sondergaard M (1962) Inactivation of photochemical mechanism in photosynthesis at
too high light intensities. Physiol Plant 15:161-171
Sondergaad M (1985) On radiocarbon method: filtration or acidification- bubbling. J
Plankton Res 7:391-397
Sondergaard M, Sand-Jensen K (1979) The delay in 14C-C02 fixation rates by three submerged macrophytes: a source of error in 14C technique. Aquat Bot 6:111-119
Sondergaard M, Riemann B, Jorgensen NO (1985) Extracellular organic carbon
released by phytoplankton. Oikos 45:323-332
Sorokin PYu (1993) Planktonic ciliates in the Antarctic waters. In: Klekovski R (ed)
The second Polish-Soviet Antarctic Symposium Inst of Ecology RAS, Warszawa, pp
89-94
Sorokin Yu I (1955a) Estimation of microbial chemosynthesis in water of the Rybinsk
reservoir with the aid of 14c. Rep (Ookl) Acad Sci USSR 105:1343-1347 (in Russian)
Sorokin Yu I (1955b) On the microbial chemosynthesis in the bottom sediments. Microbiologia, Moscow 24:393-399 (in Russian)
Sorokin Yu I (1956a) The use of radioactive carbon for study of primary production of
water reservoirs. Trans USSR Hydrobiol Soc Moscow 7:171-176 (in Russian)
Sorokin Yu I (1956b) The use of 14C for studies of primary production in water basins.
Trans Hydrobiol Soc USSR 7:271-286
Sorokin Yu I (1957) Estimation of the efficiency of chemosynthesis due to methane
and hydrogen oxidation in the water body. Microbiologia, Moscow 26:13-17 (in
Russian)
Sorokin Yu I (1958a) Primary production of organic matter in the water column of the
Rybinsk reservoir. Trans Inst Freshwat BioI Borok Acad Sci USSR 3:66-88 (in
Russian)
Sorokin Yu I (1958b) Results and prospects of using isotopic carbon for investigation
of carbon cycle in water basins. Int Conf Radioisotopes UNESCO Paris 4:633-648
Sorokin Yu I (1958c) Role of chemosynthesis in organic matter production in the water
column of artificial lakes. Microbiologia, Moscow 27:357-365 (in Russian)
Sorokin Yu I (1959a) The measurement of phytoplankton primary production in the
water column of natural water bodies. Plant Physiol Moscow 6:118-129 (in Russian)
