References
Abram JW, Nedwell DB (1978) Hydrogen as a substrate for methanogenesis and
sulfate reduction in salt marsh sediments. Arch Microbiol 117:93-97
Adkin MP, Ho C (1981) Simple conversion of a CH-analyzer for 14C determinations.
Ann Bot 48:247-249
Albers RW (1967) On the mechanisms of ingestion of dissolved organic compounds.
Annu Rev Biochem 36:727-756
Andersen JM, Sand-Jensen K (1984) Discrepancies between O 2 and 14C methods for
measuring phytoplankton gross production at low light. Oicos 35:359-364
Armstrong FA, Williams PM, Strickland JDH (1966) Photooxidation of organic matter
in sea water by ultraviolet radiation. Nature 211:481-483
Arnold KE (1980) Aspects of production ecology of marine macrophytes. Ph D
Dissertation, University of California, Irvine, 149 pp
Arnold KE, Littler MM (1985) The 14C carbon method for measuring primary production. In: Litlter M, Littler D (eds) Phycological methods: microalgae. Cambridge
University Press, Cambridge, pp 378-395
Atkinson MJ, Smith SY (1987) Effects of prescreening on productivity of size partitioned phytoplankton. Limnol Oceanogr 32:483-491
Azam F, Holm-Hansen 0 (1973) Use of tritiated substances in the study of heterotrophy in seawater. Mar BioI 23:191-198
Bailey CA, Neihof RA, Tabor PS (1983) Inhibitory effect of solar radiation on amino
acid uptake in Chesapake Bay bacteria. Appl Environ Microbiol 46:44-49
Banub MW, Williams PG (1972) Measurement of microbial activity in the Western
Mediterranean Sea. Deep Sea Res 19:433-443
Bell CD, Heyes FN (eds) (1958) Liquid scintillation counting. Pergamon Press, Oxford,
240pp
Bell RT (1986) Degree of participation of 3H-thymidine for calculating bacterioplankton production. In: Steenbergen C (ed) Abstr Int Workshop on measurement of
microbial activities. Neuwersluis, the Netherlands, p 14
Bell RT (1988) Thymidine incorporation and estimates of bacterioplankton production: validity of the conversion factors. Arch Hydrobiol Beih Ergeb Limnol
31:163-171
Bell RT (1990) An explanation for the variability in the conversion factor deriving
bacterial production from 3H-thymidine incorporation. Limnol Oceanogr 35:910-915
Bell RT, Riemann B (1989) Adenine incorporation into DNA as a measure of
microbial production in fresh waters. Limnol Oceanogr 34:435-444
Bell RT, Ahlgren GM, Ahlgrem I (1983) Estimating bacterial production by 3H
thymidine incorporation in a eutrophic lake. Appl Environ Microbiol 45:1709-1721
BeIyaev SS, Ivanov MY (1975) Radioisotopic method for estimation microbial
methanogenesis. Microbioligiya (Moscow) 44:166-175 (in Russian)
Belyaev SS, Finkelstein ZI, Ivanov MI (1975) Rate of bacterial production of methane
in lake bottom sediments. Microbiologiya 44:309-312 (in Russian)
Bender M (1987) A comparison of four methods for determining planktonic
community production. Limnol Oceanogr 32:1085-1098
Benner R, Maccubin AE, Hodson RE (1984) Microbial degradation of radiolabelled
14C lignocelluloses from macrophytes. Appl Environ MicrobioI47:381-389
Abram JW, Nedwell DB (1978) Hydrogen as a substrate for methanogenesis and
sulfate reduction in salt marsh sediments. Arch Microbiol 117:93-97
Adkin MP, Ho C (1981) Simple conversion of a CH-analyzer for 14C determinations.
Ann Bot 48:247-249
Albers RW (1967) On the mechanisms of ingestion of dissolved organic compounds.
Annu Rev Biochem 36:727-756
Andersen JM, Sand-Jensen K (1984) Discrepancies between O 2 and 14C methods for
measuring phytoplankton gross production at low light. Oicos 35:359-364
Armstrong FA, Williams PM, Strickland JDH (1966) Photooxidation of organic matter
in sea water by ultraviolet radiation. Nature 211:481-483
Arnold KE (1980) Aspects of production ecology of marine macrophytes. Ph D
Dissertation, University of California, Irvine, 149 pp
Arnold KE, Littler MM (1985) The 14C carbon method for measuring primary production. In: Litlter M, Littler D (eds) Phycological methods: microalgae. Cambridge
University Press, Cambridge, pp 378-395
Atkinson MJ, Smith SY (1987) Effects of prescreening on productivity of size partitioned phytoplankton. Limnol Oceanogr 32:483-491
Azam F, Holm-Hansen 0 (1973) Use of tritiated substances in the study of heterotrophy in seawater. Mar BioI 23:191-198
Bailey CA, Neihof RA, Tabor PS (1983) Inhibitory effect of solar radiation on amino
acid uptake in Chesapake Bay bacteria. Appl Environ Microbiol 46:44-49
Banub MW, Williams PG (1972) Measurement of microbial activity in the Western
Mediterranean Sea. Deep Sea Res 19:433-443
Bell CD, Heyes FN (eds) (1958) Liquid scintillation counting. Pergamon Press, Oxford,
240pp
Bell RT (1986) Degree of participation of 3H-thymidine for calculating bacterioplankton production. In: Steenbergen C (ed) Abstr Int Workshop on measurement of
microbial activities. Neuwersluis, the Netherlands, p 14
Bell RT (1988) Thymidine incorporation and estimates of bacterioplankton production: validity of the conversion factors. Arch Hydrobiol Beih Ergeb Limnol
31:163-171
Bell RT (1990) An explanation for the variability in the conversion factor deriving
bacterial production from 3H-thymidine incorporation. Limnol Oceanogr 35:910-915
Bell RT, Riemann B (1989) Adenine incorporation into DNA as a measure of
microbial production in fresh waters. Limnol Oceanogr 34:435-444
Bell RT, Ahlgren GM, Ahlgrem I (1983) Estimating bacterial production by 3H
thymidine incorporation in a eutrophic lake. Appl Environ Microbiol 45:1709-1721
BeIyaev SS, Ivanov MY (1975) Radioisotopic method for estimation microbial
methanogenesis. Microbioligiya (Moscow) 44:166-175 (in Russian)
Belyaev SS, Finkelstein ZI, Ivanov MI (1975) Rate of bacterial production of methane
in lake bottom sediments. Microbiologiya 44:309-312 (in Russian)
Bender M (1987) A comparison of four methods for determining planktonic
community production. Limnol Oceanogr 32:1085-1098
Benner R, Maccubin AE, Hodson RE (1984) Microbial degradation of radiolabelled
14C lignocelluloses from macrophytes. Appl Environ MicrobioI47:381-389
