3. Irradiance and Lipid Production
69
Lancelot, e.; Mathot, S. Biochemical fractionation of primary production by phytoplankton
in Belgian coastal waters during short- and long-term incubations with 14C-bicarbonate.
I. Mixed diatom population. Mar. BioI. 86:219-226; 1985a.
Lancelot, e.; Mathot, S. Biochemical fractionation of primary production by phytoplankton
in Belgian coastal waters during short- and long-term incubations with 14C-bicarbonate.
II. Phaeocystis pouchetti colonial population. Mar. BioI. 86:227-232; 1985b.
Lean, D.R.S.; Pick, F.R. Photosynthetic response of lake phytoplankton to nutrient enrichment: a test for nutrient limitation. Limnol. Oceanogr. 26:1001-1019; 1981.
Li, W.K.W.; Platt, T. Distribution of carbon among photosynthetic end-products in phytoplankton of the eastern Canadian Arctic. l. Phycol. 18:466-471; 1982.
Lombardi, A.T.; Wangersky, P.l. Influence of phosphorus and silicon on lipid class production by the marine diatom Chaetoceros gracilis grown in turbidostat cage cultures. Mar.
Ecol. Prog. Ser. 77:39-47; 1991.
Madariaga, I. Interspecific differences in the photosynthetic carbon metabolism of marine
phytoplankton. Mar. BioI. 114:509-515; 1992.
Maly, l.A. Vertical distribution and flux of phytoplankton and other suspended particles in
a nearshore zone of western Georgian Bay (Colpoys Bay). M.Sc. thesis, University of
Waterloo, Ontario, Canada; 1992.
McConville, M.J.; Mitchell, C.; Wetherbee, R. Patterns of carbon assimilation in a microalgal community from annual sea ice, east Antarctica. Polar BioI. 4:135-141; 1985.
Marafi.6n, E.; Fernandez, E.; Anadon, R. Patterns of macromolecular synthesis by natural
phytoplankton assemblages under changing upwelling regimes. l. Exp. Mar. BioI. Ecol.
188:1-28; 1995.
Morris, I. Photosynthesis products, physiological state and phytoplankton growth. In: Platt,
T., ed. Physiological Bases of Phytoplankton Ecology. Can. Bull. Fish. Aquat. Sci.
210:83-102; 1981.
Morris, I.; Glover, H.E.; Yentsch, e.S. Products of photosynthesis by marine phytoplankton: the effect of environmental factors on the relative rates of protein synthesis.
Mar. BioI. 27:1-9; 1974.
Munawar, M. Limnology and Fisheries of Georgian Bay and the North Channel Ecosystems. Boston: Kluwer Academic; 1988.
Palmisano, A.e.; Lizotte, M.P.; Smith, G.A.; Nichols, P.D.; White, D.e.; Sullivan, e.w.
Changes in photosynthetic carbon assimilation in Antarctic sea-ice diatoms during
spring bloom: variations in synthesis of lipid classes. l. Exp. Mar. BioI. Ecol. 116: 1-13;
1988.
Parrish, e.e. Time series of particulate and dissolved lipid classes during spring phytoplankton blooms in Bedford Basin, a marine inlet. Mar. Ecol. Prog. Ser. 35: 129-139;
1987.
Parrish, C.e.; Wangersky, P.J. Particulate and dissolved lipid classes in cultures of Phaeodactylum tricornutum grown in cage culture turbidostats with a range of nitrogen supply
rates. Mar. Ecol. Prog. Ser. 35: 119-128; 1987.
Platt, T.; Harrison, W.G.; Irwin, B.; Home, E.P.; Gallegos, e.L. Photosynthesis and photoadaptation of marine phytoplankton in the Arctic. Deep-Sea Res. 29: 1159-1170; 1982.
Post-Beitenmiller, D.; Roughan, G.; Oh1rogge, J.B. Regulation of plant fatty acid biosynthesis. Analysis of acyl-coenzyme A and acyl-acyl carrier protein substrate pools in
spinach and pea chloroplasts. Plant Physiol. 100:923-930; 1992.
Priscu, J.e.; Priscu, L.R.; Vincent, W.F.; Howard-Williams, C. Photosynthate distribution
by microplankton in permanently ice-covered Antarctic desert lakes. Limnol. Oceanogr.
32:260-270; 1987.
69
Lancelot, e.; Mathot, S. Biochemical fractionation of primary production by phytoplankton
in Belgian coastal waters during short- and long-term incubations with 14C-bicarbonate.
I. Mixed diatom population. Mar. BioI. 86:219-226; 1985a.
Lancelot, e.; Mathot, S. Biochemical fractionation of primary production by phytoplankton
in Belgian coastal waters during short- and long-term incubations with 14C-bicarbonate.
II. Phaeocystis pouchetti colonial population. Mar. BioI. 86:227-232; 1985b.
Lean, D.R.S.; Pick, F.R. Photosynthetic response of lake phytoplankton to nutrient enrichment: a test for nutrient limitation. Limnol. Oceanogr. 26:1001-1019; 1981.
Li, W.K.W.; Platt, T. Distribution of carbon among photosynthetic end-products in phytoplankton of the eastern Canadian Arctic. l. Phycol. 18:466-471; 1982.
Lombardi, A.T.; Wangersky, P.l. Influence of phosphorus and silicon on lipid class production by the marine diatom Chaetoceros gracilis grown in turbidostat cage cultures. Mar.
Ecol. Prog. Ser. 77:39-47; 1991.
Madariaga, I. Interspecific differences in the photosynthetic carbon metabolism of marine
phytoplankton. Mar. BioI. 114:509-515; 1992.
Maly, l.A. Vertical distribution and flux of phytoplankton and other suspended particles in
a nearshore zone of western Georgian Bay (Colpoys Bay). M.Sc. thesis, University of
Waterloo, Ontario, Canada; 1992.
McConville, M.J.; Mitchell, C.; Wetherbee, R. Patterns of carbon assimilation in a microalgal community from annual sea ice, east Antarctica. Polar BioI. 4:135-141; 1985.
Marafi.6n, E.; Fernandez, E.; Anadon, R. Patterns of macromolecular synthesis by natural
phytoplankton assemblages under changing upwelling regimes. l. Exp. Mar. BioI. Ecol.
188:1-28; 1995.
Morris, I. Photosynthesis products, physiological state and phytoplankton growth. In: Platt,
T., ed. Physiological Bases of Phytoplankton Ecology. Can. Bull. Fish. Aquat. Sci.
210:83-102; 1981.
Morris, I.; Glover, H.E.; Yentsch, e.S. Products of photosynthesis by marine phytoplankton: the effect of environmental factors on the relative rates of protein synthesis.
Mar. BioI. 27:1-9; 1974.
Munawar, M. Limnology and Fisheries of Georgian Bay and the North Channel Ecosystems. Boston: Kluwer Academic; 1988.
Palmisano, A.e.; Lizotte, M.P.; Smith, G.A.; Nichols, P.D.; White, D.e.; Sullivan, e.w.
Changes in photosynthetic carbon assimilation in Antarctic sea-ice diatoms during
spring bloom: variations in synthesis of lipid classes. l. Exp. Mar. BioI. Ecol. 116: 1-13;
1988.
Parrish, e.e. Time series of particulate and dissolved lipid classes during spring phytoplankton blooms in Bedford Basin, a marine inlet. Mar. Ecol. Prog. Ser. 35: 129-139;
1987.
Parrish, C.e.; Wangersky, P.J. Particulate and dissolved lipid classes in cultures of Phaeodactylum tricornutum grown in cage culture turbidostats with a range of nitrogen supply
rates. Mar. Ecol. Prog. Ser. 35: 119-128; 1987.
Platt, T.; Harrison, W.G.; Irwin, B.; Home, E.P.; Gallegos, e.L. Photosynthesis and photoadaptation of marine phytoplankton in the Arctic. Deep-Sea Res. 29: 1159-1170; 1982.
Post-Beitenmiller, D.; Roughan, G.; Oh1rogge, J.B. Regulation of plant fatty acid biosynthesis. Analysis of acyl-coenzyme A and acyl-acyl carrier protein substrate pools in
spinach and pea chloroplasts. Plant Physiol. 100:923-930; 1992.
Priscu, J.e.; Priscu, L.R.; Vincent, W.F.; Howard-Williams, C. Photosynthate distribution
by microplankton in permanently ice-covered Antarctic desert lakes. Limnol. Oceanogr.
32:260-270; 1987.
