60 Marine Macro- and Microalgae: An Overview
Nakajima, Y. and R. Ueda. 2000. The effect of reducing light-harvesting pigment on marine microalgae productivity. J. Appl.
Phycol. 12: 285–290.
Neilson, A.H. and R.A. Lewin. 1974. The uptake and utilization of organic carbon by algae: an essay in comparative
biochemistry. Phycologia 13: 227–264.
Neori, A. 2011. “Green water” microalgae: the leading sector in world aquaculture. J. Appl. Phycol. 23: 143–149.
Ogawa, T., T. Fujii and S. Aiba. 1980. Effect of oxygen on the growth (yield) of Chlorella vulgaris. Arch. Microbiol. 127: 25–31.
Ogawa, T. and A. Kaplan. 2003. Inorganic carbon acquisition systems in cyanobacteria. Photosynth. Res. 77: 105–115.
Ogbonna, J.C. and H. Tanaka. 1996. Night biomass loss and changes in biochemical composition of cells during light/dark
cyclic culture of Chlorella pyrenoidosa. J. Ferment. Bioeng. 82: 558–564.
Ogbonna, J.C., H. Yoshizowa, and H. Tanaka. 2000. Treatment of a high strength organic wastewater by a mixed culture of
photosynthetic organisms. J. Appl. Phycol. 12: 277–284.
Olaizola, M., E.O. Duerr and D.W. Freeman. 1991. Effect of CO 2 enhancement in an outdoor algal production system using
Tetraselmis. J. Appl. Phycol. 3: 363–366.
Olaizola, M. 2000. Commercial production of astaxanthin from Haematococcus pluvialis using 25,000-liter outdoor
photobioreactors. J. Appl. Phycol. 12: 499–506.
Ördög, V., W.A. Stirk, P. Bálint, C. Lovász, O. Pulz and J. Staden. 2013. Lipid productivity and fatty acid composition in
Chlorella and Scenepdesmus strains grown in nitrogen-stressed conditions. J. Appl. Phycol. 25: 233–243.
Orosa, M., D. Fraqiera, A. Cid and J. Abalde. 2001. Carotenoid accumulation in Haematococcus pluvialis in mixotrophic
growth. Biotechnol. Lett. 23: 373–378.
Oswald, W.J. 1988. Large-scale algal culture systems (engineering aspects). pp. 357–394. In: M.A. Borowitzka and L.J.
Borowitzka (eds.). Micro-Algal Biotechnology. Cambridge University Press, Cambridge.
Papageorgiou, G. and Govindjee. 2004. Chlorophyll a fluorescence: A signature of photosynthesis. Springer, Dordrecht.
Payer, H.D., Y. Chiemvichak, K. Hosakul, C. Kongpanichkul, L. Kraidej, M. Nguitragul, S. Reungmanipytoon and P. Buri.
1980. Temperature as an important climatic factor during mass production of microscopic algae. pp. 389–399. In:
G. Shelef and C.J. Soeder (eds.). Algae Biomass. Production and Use. Elsevier/North Holland Biomedical Press,
Amsterdam.
Perez-Garcia, O., F.M.E. Escalante, L.E. de-Bashan and Y. Bashan. 2011. Heterotrophic cultures of microalgae: Metabolism
and potential products. Water Res. 45: 11–36.
Pohl, P. and F. Zurheide. 1979. Fatty acids and lipids of marine algae and the control of their biosynthesis by environmental
factors. pp. 473–523. In: H.A. Hoppe, T. Levring and Y. Tanaka (eds.). Marine Algae in Pharmaceutical Science. Walter
de Gruyter, Berlin - New York.
Polle, J.E.W., S. Kanakagiri, E.S. Jin, T. Masuda and A. Melis. 2002. Truncated chlorophyll antenna size of the photosystems—a
practical method to improve microalgal productivity and hydrogen production in mass culture. Int. J. Hydrogen. Energ.
27: 1257–1264.
Post, A.F. 1993. Ammonia enhanced dark respiration in Chlorella vulgaris is related to collapse of a transmembrane pH
gradient. FEMS Microbiol. Lett. 113: 9–13.
Premkumar, L., H.M. Greenblatt, U.K. Bagshewar, T. Savchenko, I. Gokhman, A. Zamir and J.L. Sussmann. 2003. Identification,
cDNA cloning, expression, crystallization and preliminary X-ray analysis of an exceptionally halotolerant carbonic
anhydrase from Dunaliella salina. Acta Crystallogr. Sect. D Biol. Crystallogr. D59: 1984–1086.
Price, G.D., S.-I. Maeda, T. Omata and M.R. Badger. 2002. Modes of active inorganic carbon uptake in the cyanobacterium,
Synechococcus sp. PCC7942. Funct. Plant Biol. 29: 131–149.
Przytocka-Jusiak, M., M. Duszota, K. Matusiak and R. Mycielski. 1984. Intensive culture of Chlorella vulgaris/AA as the
second stage of biological purification of nitrogen industry wastewaters. Water Res. 18: 1–7.
Qiu, B. and Y. Li. 2006. Photosynthetic acclimation and photoprotective mechanism of Haematococcus pluvialis
(Chlorophyceae) during the accumulation of secondary carotenoids at elevated irradiation. Phycologia 45: 117–126.
Quigg, A., Z.V. Finkel, A.J. Irwin, Y. Rosenthal, T.-Y. Ho, J.R. Reinfelder, O. Schofield, F.M.M. Morel and P.G. Falkowski.
2003. The evolutionary inheritance of elemental stoichiometry in marine phytoplankton. Nature 425: 291–294.
Rabbani, S., P. Beyer, J.V. Lintig, P. Hugeney and H. Kleinig. 1998. Induced b-carotene synthesis driven by triacylglycerol
deposition in the unicellular alga Dunaliella bardawil. Plant Physiology 116: 1239–1248.
Rascher, U. and L. Nedbal. 2006. Dynamics of photosynthesis in fluctuating light. Curr. Opin. Plant Biol. 9: 671–678.
Ratledge, C. 2010. Single cell oils for the 21st Century. pp. 3–26. In: Z. Cohen and C. Ratledge (eds.). Single Cell Oils.
Microbial and Algal Oils. AOCS Press, Urbana.
Raven, J.A. 1981. Respiration and photorespiration. pp. 55–82. In: T. Platt (ed.). Physiological Bases of Phytoplankton Ecology.
Department of Fisheries and Oceans, Canada.
Raven, J.A. 2010. Inorganic carbon acquisition by eukaryotic algae: four current questions. Photosynth. Res. 106: 123–134.
Raven, J.A. 2011. The cost of photoinhibition. Physiol. Plant 142: 87–104.
Raven J.A. and J. Beardall. 2016. Dark respiration and organic carbon loss. pp. 129–140. In: M.A. Borowitzka, J. Beardall
and J.A. Raven (eds.). The Physiology of Microalgae. Springer, Dordrecht.
Raven, J.A. and M. Giodano. 2016. Combined nitrogen. pp. 143–154. In: M.A. Borowitzka, J. Beardall and J.A. Raven (eds.).
Springer, Dordrecht.
Redfield, A.C. 1934. On the proportions of organic derivatives in sea water and their relation to the composition of plankton.
pp. 176–192. In: R.J. Daniel (ed.). James Johnstone Memorial Volume. Liverpool University Press, Liverpool.
Nakajima, Y. and R. Ueda. 2000. The effect of reducing light-harvesting pigment on marine microalgae productivity. J. Appl.
Phycol. 12: 285–290.
Neilson, A.H. and R.A. Lewin. 1974. The uptake and utilization of organic carbon by algae: an essay in comparative
biochemistry. Phycologia 13: 227–264.
Neori, A. 2011. “Green water” microalgae: the leading sector in world aquaculture. J. Appl. Phycol. 23: 143–149.
Ogawa, T., T. Fujii and S. Aiba. 1980. Effect of oxygen on the growth (yield) of Chlorella vulgaris. Arch. Microbiol. 127: 25–31.
Ogawa, T. and A. Kaplan. 2003. Inorganic carbon acquisition systems in cyanobacteria. Photosynth. Res. 77: 105–115.
Ogbonna, J.C. and H. Tanaka. 1996. Night biomass loss and changes in biochemical composition of cells during light/dark
cyclic culture of Chlorella pyrenoidosa. J. Ferment. Bioeng. 82: 558–564.
Ogbonna, J.C., H. Yoshizowa, and H. Tanaka. 2000. Treatment of a high strength organic wastewater by a mixed culture of
photosynthetic organisms. J. Appl. Phycol. 12: 277–284.
Olaizola, M., E.O. Duerr and D.W. Freeman. 1991. Effect of CO 2 enhancement in an outdoor algal production system using
Tetraselmis. J. Appl. Phycol. 3: 363–366.
Olaizola, M. 2000. Commercial production of astaxanthin from Haematococcus pluvialis using 25,000-liter outdoor
photobioreactors. J. Appl. Phycol. 12: 499–506.
Ördög, V., W.A. Stirk, P. Bálint, C. Lovász, O. Pulz and J. Staden. 2013. Lipid productivity and fatty acid composition in
Chlorella and Scenepdesmus strains grown in nitrogen-stressed conditions. J. Appl. Phycol. 25: 233–243.
Orosa, M., D. Fraqiera, A. Cid and J. Abalde. 2001. Carotenoid accumulation in Haematococcus pluvialis in mixotrophic
growth. Biotechnol. Lett. 23: 373–378.
Oswald, W.J. 1988. Large-scale algal culture systems (engineering aspects). pp. 357–394. In: M.A. Borowitzka and L.J.
Borowitzka (eds.). Micro-Algal Biotechnology. Cambridge University Press, Cambridge.
Papageorgiou, G. and Govindjee. 2004. Chlorophyll a fluorescence: A signature of photosynthesis. Springer, Dordrecht.
Payer, H.D., Y. Chiemvichak, K. Hosakul, C. Kongpanichkul, L. Kraidej, M. Nguitragul, S. Reungmanipytoon and P. Buri.
1980. Temperature as an important climatic factor during mass production of microscopic algae. pp. 389–399. In:
G. Shelef and C.J. Soeder (eds.). Algae Biomass. Production and Use. Elsevier/North Holland Biomedical Press,
Amsterdam.
Perez-Garcia, O., F.M.E. Escalante, L.E. de-Bashan and Y. Bashan. 2011. Heterotrophic cultures of microalgae: Metabolism
and potential products. Water Res. 45: 11–36.
Pohl, P. and F. Zurheide. 1979. Fatty acids and lipids of marine algae and the control of their biosynthesis by environmental
factors. pp. 473–523. In: H.A. Hoppe, T. Levring and Y. Tanaka (eds.). Marine Algae in Pharmaceutical Science. Walter
de Gruyter, Berlin - New York.
Polle, J.E.W., S. Kanakagiri, E.S. Jin, T. Masuda and A. Melis. 2002. Truncated chlorophyll antenna size of the photosystems—a
practical method to improve microalgal productivity and hydrogen production in mass culture. Int. J. Hydrogen. Energ.
27: 1257–1264.
Post, A.F. 1993. Ammonia enhanced dark respiration in Chlorella vulgaris is related to collapse of a transmembrane pH
gradient. FEMS Microbiol. Lett. 113: 9–13.
Premkumar, L., H.M. Greenblatt, U.K. Bagshewar, T. Savchenko, I. Gokhman, A. Zamir and J.L. Sussmann. 2003. Identification,
cDNA cloning, expression, crystallization and preliminary X-ray analysis of an exceptionally halotolerant carbonic
anhydrase from Dunaliella salina. Acta Crystallogr. Sect. D Biol. Crystallogr. D59: 1984–1086.
Price, G.D., S.-I. Maeda, T. Omata and M.R. Badger. 2002. Modes of active inorganic carbon uptake in the cyanobacterium,
Synechococcus sp. PCC7942. Funct. Plant Biol. 29: 131–149.
Przytocka-Jusiak, M., M. Duszota, K. Matusiak and R. Mycielski. 1984. Intensive culture of Chlorella vulgaris/AA as the
second stage of biological purification of nitrogen industry wastewaters. Water Res. 18: 1–7.
Qiu, B. and Y. Li. 2006. Photosynthetic acclimation and photoprotective mechanism of Haematococcus pluvialis
(Chlorophyceae) during the accumulation of secondary carotenoids at elevated irradiation. Phycologia 45: 117–126.
Quigg, A., Z.V. Finkel, A.J. Irwin, Y. Rosenthal, T.-Y. Ho, J.R. Reinfelder, O. Schofield, F.M.M. Morel and P.G. Falkowski.
2003. The evolutionary inheritance of elemental stoichiometry in marine phytoplankton. Nature 425: 291–294.
Rabbani, S., P. Beyer, J.V. Lintig, P. Hugeney and H. Kleinig. 1998. Induced b-carotene synthesis driven by triacylglycerol
deposition in the unicellular alga Dunaliella bardawil. Plant Physiology 116: 1239–1248.
Rascher, U. and L. Nedbal. 2006. Dynamics of photosynthesis in fluctuating light. Curr. Opin. Plant Biol. 9: 671–678.
Ratledge, C. 2010. Single cell oils for the 21st Century. pp. 3–26. In: Z. Cohen and C. Ratledge (eds.). Single Cell Oils.
Microbial and Algal Oils. AOCS Press, Urbana.
Raven, J.A. 1981. Respiration and photorespiration. pp. 55–82. In: T. Platt (ed.). Physiological Bases of Phytoplankton Ecology.
Department of Fisheries and Oceans, Canada.
Raven, J.A. 2010. Inorganic carbon acquisition by eukaryotic algae: four current questions. Photosynth. Res. 106: 123–134.
Raven, J.A. 2011. The cost of photoinhibition. Physiol. Plant 142: 87–104.
Raven J.A. and J. Beardall. 2016. Dark respiration and organic carbon loss. pp. 129–140. In: M.A. Borowitzka, J. Beardall
and J.A. Raven (eds.). The Physiology of Microalgae. Springer, Dordrecht.
Raven, J.A. and M. Giodano. 2016. Combined nitrogen. pp. 143–154. In: M.A. Borowitzka, J. Beardall and J.A. Raven (eds.).
Springer, Dordrecht.
Redfield, A.C. 1934. On the proportions of organic derivatives in sea water and their relation to the composition of plankton.
pp. 176–192. In: R.J. Daniel (ed.). James Johnstone Memorial Volume. Liverpool University Press, Liverpool.
