viridis exposed to various environmental stresses are mediated by the caspase-like activity
DEVDase. J Exp Bot 60(3):815–828
Jorquera O, Kiperstok A, Sales EA, Embiruçu M, Ghirardi ML (2010) Comparative energy lifecycle analyses of microalgal biomass production in open ponds and photobioreactors.
Bioresour Technol 101(4):1406–1413
Kemmer FN, McCallion J (1995) Manual del Agua. Su Naturaleza, Tratamiento y Aplicaciones.
McGraw Hill. Tomo 1, p 89
Laws EA, Terry KL, Wickman J, Chalup MS (1983) A simple algal production systems designed
to utilize the flashing light effect. Biotechnol Bioeng 25:2319–2335
Lee RE (1995) Phycology, 2nd edn. University Press, Cambridge, p 645
Lee Y (1997) Commercial production of microalgae in the Asia-Pacific rim. J Appl Phycol
9(9):403–411
Lima LMB, Lara LJC, Baiao NC, Cancado SD, Michell BC, Ferreira FC (2008) Effect of energy,
lysine and methionine and cystine levels on performance and carcass yield of broiler chickens.
Rev Bras Zootecn Braz J Anim Sci 37(8):1424–1432
Lima M, Skutsch M, de Medeiros Costa G (2011) Deforestation and the social impacts of soy for
biodiesel: perspectives of farmers in the south Brazilian Amazon. Ecol Soc 16(4): 4. http://dx.
doi.org/10.5751/ES-04366-160404
Ling X, Pamela JW, Xue-Rong X, Chun-Zhao L (2009) Microalgal bioreactors: challenges and
opportunities. Eng Life Sci 9(3):178–189. doi:10.1002/elsc.200800111
Liu CP, Lin LP (2001) Ultrastructural study and lipid formation of Isochrysis sp. CCMP1324.
Botanical Bulletin Academia Sinica 42:207–214
Lorenz RT, Cysewski GR (2000) Commercial potential for Haematococcus microalgae as a
natural source of astaxanthin. Trends Biotechnol 18:160–167
Mata TM, Martins AA, Caetano NS (2010) Microalgae for biodiesel production and other
applications: a review. Renew Sustain Energy Rev 14(1):217–232
Mertz ET (1970) Nutritive value of corn and its products. In: Inglet GE (ed) Corn: cultures,
processing and products. Avi Publishing, Westport, Conn., pp 350–359
Moheimani NR, Borowitzka MA (2006) The long-term culture of the coccolithophore
Pleurochrysis carterae (Haptophyta) in outdoor raceway ponds. J Appl Phycol 18:703–712
Molina-Grima ME, Belarbi EH, Fernández FGA, Medina AR, Chisti Y (2003) Recovery of
microalgal biomass and metabolites: process option and economics. Biotechnol Adv
20:491–515
Moreno J, Vargas MA, Rodríguez H, Rivas J, Guerrero MG (2003) Outdoor cultivation of a
nitrogen-fixing marine cyanobacterium, Anabaena sp. ATCC 33047. Biomol Eng 20:191–197
Morimura Y, Tamiya N (1954) Preliminary experiments in the use of Chlorella as human food.
Food Technol 8:179
Oren A (2005) A hundred years of Dunaliella research: 1905–2005. Saline Syst 1:2
Phang SM, Miah MS, Chu WL, Hashim M (2000) Spirulina culture in digested sago starch
factory waste water. J Appl Phycol 12:395–400
Powell RC, Nevacis EM, McDowell ME (1961) Algae feeding in humans. J Nutr 75:7
Prochazkova G, Safarik I, Branyik T (2013) Harvesting microalgae with microwave synthesized
magnetic microparticles. Bioresour Technol 130:472–477
Pulz O, Gross W (2004) Valuable products from biotechnology of microalgae. Appl Microbiol
Biotechnol 65:635–648
Pushparaj B, Pelosi E, Tredici MR, Pinzani E, Materassi R (1997) An integrated culture system
for outdoor production of microalgae and cyanobacteria. J Appl Phycol 9:113–119
Radmann EM, Reinehr CO, Costa JAV (2007) Optimization of the repeated batch cultivation of
microalga Spirulina platensis in open raceway ponds. Aquaculture 265:118–126
Renaud SM, Thinh L, Lambrinidis G, Parry DL (2002) Effect of temperature on growth, chemical
composition and fatty acid composition of tropical Australian microalgae grown in batch
cultures. Aquaculture 211(1–4):195–214
Richmond A (1992) Open systems for the mass-production of photoautotrophic microalgae
outdoors–physiological principles. J Appl Phycol 4:281–286
274
M. Vanthoor-Koopmans et al.
DEVDase. J Exp Bot 60(3):815–828
Jorquera O, Kiperstok A, Sales EA, Embiruçu M, Ghirardi ML (2010) Comparative energy lifecycle analyses of microalgal biomass production in open ponds and photobioreactors.
Bioresour Technol 101(4):1406–1413
Kemmer FN, McCallion J (1995) Manual del Agua. Su Naturaleza, Tratamiento y Aplicaciones.
McGraw Hill. Tomo 1, p 89
Laws EA, Terry KL, Wickman J, Chalup MS (1983) A simple algal production systems designed
to utilize the flashing light effect. Biotechnol Bioeng 25:2319–2335
Lee RE (1995) Phycology, 2nd edn. University Press, Cambridge, p 645
Lee Y (1997) Commercial production of microalgae in the Asia-Pacific rim. J Appl Phycol
9(9):403–411
Lima LMB, Lara LJC, Baiao NC, Cancado SD, Michell BC, Ferreira FC (2008) Effect of energy,
lysine and methionine and cystine levels on performance and carcass yield of broiler chickens.
Rev Bras Zootecn Braz J Anim Sci 37(8):1424–1432
Lima M, Skutsch M, de Medeiros Costa G (2011) Deforestation and the social impacts of soy for
biodiesel: perspectives of farmers in the south Brazilian Amazon. Ecol Soc 16(4): 4. http://dx.
doi.org/10.5751/ES-04366-160404
Ling X, Pamela JW, Xue-Rong X, Chun-Zhao L (2009) Microalgal bioreactors: challenges and
opportunities. Eng Life Sci 9(3):178–189. doi:10.1002/elsc.200800111
Liu CP, Lin LP (2001) Ultrastructural study and lipid formation of Isochrysis sp. CCMP1324.
Botanical Bulletin Academia Sinica 42:207–214
Lorenz RT, Cysewski GR (2000) Commercial potential for Haematococcus microalgae as a
natural source of astaxanthin. Trends Biotechnol 18:160–167
Mata TM, Martins AA, Caetano NS (2010) Microalgae for biodiesel production and other
applications: a review. Renew Sustain Energy Rev 14(1):217–232
Mertz ET (1970) Nutritive value of corn and its products. In: Inglet GE (ed) Corn: cultures,
processing and products. Avi Publishing, Westport, Conn., pp 350–359
Moheimani NR, Borowitzka MA (2006) The long-term culture of the coccolithophore
Pleurochrysis carterae (Haptophyta) in outdoor raceway ponds. J Appl Phycol 18:703–712
Molina-Grima ME, Belarbi EH, Fernández FGA, Medina AR, Chisti Y (2003) Recovery of
microalgal biomass and metabolites: process option and economics. Biotechnol Adv
20:491–515
Moreno J, Vargas MA, Rodríguez H, Rivas J, Guerrero MG (2003) Outdoor cultivation of a
nitrogen-fixing marine cyanobacterium, Anabaena sp. ATCC 33047. Biomol Eng 20:191–197
Morimura Y, Tamiya N (1954) Preliminary experiments in the use of Chlorella as human food.
Food Technol 8:179
Oren A (2005) A hundred years of Dunaliella research: 1905–2005. Saline Syst 1:2
Phang SM, Miah MS, Chu WL, Hashim M (2000) Spirulina culture in digested sago starch
factory waste water. J Appl Phycol 12:395–400
Powell RC, Nevacis EM, McDowell ME (1961) Algae feeding in humans. J Nutr 75:7
Prochazkova G, Safarik I, Branyik T (2013) Harvesting microalgae with microwave synthesized
magnetic microparticles. Bioresour Technol 130:472–477
Pulz O, Gross W (2004) Valuable products from biotechnology of microalgae. Appl Microbiol
Biotechnol 65:635–648
Pushparaj B, Pelosi E, Tredici MR, Pinzani E, Materassi R (1997) An integrated culture system
for outdoor production of microalgae and cyanobacteria. J Appl Phycol 9:113–119
Radmann EM, Reinehr CO, Costa JAV (2007) Optimization of the repeated batch cultivation of
microalga Spirulina platensis in open raceway ponds. Aquaculture 265:118–126
Renaud SM, Thinh L, Lambrinidis G, Parry DL (2002) Effect of temperature on growth, chemical
composition and fatty acid composition of tropical Australian microalgae grown in batch
cultures. Aquaculture 211(1–4):195–214
Richmond A (1992) Open systems for the mass-production of photoautotrophic microalgae
outdoors–physiological principles. J Appl Phycol 4:281–286
274
M. Vanthoor-Koopmans et al.
