S. Pantoja
Palenik B, Morel FMM (1990b) Comparison of cell-surface L-amino acid oxidases from several marine phytoplankton. Mar Ecol Prog Ser 59:195-201
Palenik B, Morel FMM (1991) Amine oxidases of marine phytoplankton. Appl Environ Microbiol
57: 2440- 2443
Palenik B, Kieber DJ, Morel FMM (1988) Dissolved organic nitrogen use by phytoplankton: The role
of cell-surface enzymes. Bioi Oceanogr 6:347-354
Pantoja S, Lee C (1994) Cell-surface oxidation of amino acids in seawater. Limnol Oceanogr 39:1718-1726
Pantoja S, Lee C, Marecek JF, Palenik BP (1993) Synthesis and use of fluorescent molecular probes for
measuring cell-surface enzymatic oxidation of amino acids and amines in seawater. Anal Biochem
211:210-218
Pantoja S, Lee C, Marecek JF (1997) Hydrolysis of peptides in seawater and sediment. Mar Chern
57:25-40
Parsons TR, Stephens K, Strickland JDH (1961) On the chemical composition of eleven species of marine phytoplankton. J Fish Res Bd Canada 18:1001-1016
Payne JW (1980) Transport and utilization of peptides by bacteria. In: Payne JW (ed). Microorganisms and nitrogen sources. Wiley, New York pp 211-256
Rosenfeld JK (1979) Amino acid diagenesis and adsorption in nearshore anoxic sediments. Limnol
Oceanogr 24:1014-1021
Sharp JH (1983) The distribution of inorganic nitrogen and dissolved and particulate organic nitrogen in the sea. In: Carpenter EJ, Capone DG (ed) Nitrogen in the marine environment. Academic
Press, New York pp 1-35
Somville M, Billen G (1983) A method for determining exoproteolytic activity in natural waters. Limnol
Oceanogr 28:190-193
Suttle CA, Fuhrman JA, Capone DG (1990) Rapid ammonium cycling and concentration-dependent
partitioning of ammonium and phosphate: Implications for carbon transfer in planktonic communities. Limnol Oceanogr 35:424-433
Thurman EM (1985) Organic geochemistry of natural waters. Nijhoff/Junk, Boston
Palenik B, Morel FMM (1990b) Comparison of cell-surface L-amino acid oxidases from several marine phytoplankton. Mar Ecol Prog Ser 59:195-201
Palenik B, Morel FMM (1991) Amine oxidases of marine phytoplankton. Appl Environ Microbiol
57: 2440- 2443
Palenik B, Kieber DJ, Morel FMM (1988) Dissolved organic nitrogen use by phytoplankton: The role
of cell-surface enzymes. Bioi Oceanogr 6:347-354
Pantoja S, Lee C (1994) Cell-surface oxidation of amino acids in seawater. Limnol Oceanogr 39:1718-1726
Pantoja S, Lee C, Marecek JF, Palenik BP (1993) Synthesis and use of fluorescent molecular probes for
measuring cell-surface enzymatic oxidation of amino acids and amines in seawater. Anal Biochem
211:210-218
Pantoja S, Lee C, Marecek JF (1997) Hydrolysis of peptides in seawater and sediment. Mar Chern
57:25-40
Parsons TR, Stephens K, Strickland JDH (1961) On the chemical composition of eleven species of marine phytoplankton. J Fish Res Bd Canada 18:1001-1016
Payne JW (1980) Transport and utilization of peptides by bacteria. In: Payne JW (ed). Microorganisms and nitrogen sources. Wiley, New York pp 211-256
Rosenfeld JK (1979) Amino acid diagenesis and adsorption in nearshore anoxic sediments. Limnol
Oceanogr 24:1014-1021
Sharp JH (1983) The distribution of inorganic nitrogen and dissolved and particulate organic nitrogen in the sea. In: Carpenter EJ, Capone DG (ed) Nitrogen in the marine environment. Academic
Press, New York pp 1-35
Somville M, Billen G (1983) A method for determining exoproteolytic activity in natural waters. Limnol
Oceanogr 28:190-193
Suttle CA, Fuhrman JA, Capone DG (1990) Rapid ammonium cycling and concentration-dependent
partitioning of ammonium and phosphate: Implications for carbon transfer in planktonic communities. Limnol Oceanogr 35:424-433
Thurman EM (1985) Organic geochemistry of natural waters. Nijhoff/Junk, Boston
