294 Marine Macro- and Microalgae: An Overview
Iwai, M., K. Ikeda, M. Shimojima and H. Ohta. 2014. Enhancement of extraplastidic oil synthesis in Chlamydomonas reinhardtii
using a type-2 diacylglycerol acyltransferase with a phosphorus starvation–inducible promoter. Plant Biotechnol. J. 12:
808–819.
Jurado-Oller, J.L., A. Dubini, A. Galván, E. Fernández and D. González-Ballester. 2015. Low oxygen levels contribute to
improve photohydrogen production in mixotrophic non-stressed Chlamydomonas cultures. Biotechnol. Biofuels, 8: 149.
Kebeish, R., M. Niessen, K. Thiruveedhi, R. Bari, H.J. Hirsch, R. Rosenkranz, N. Stäbler, B. Schönfeld, F. Kreuzaler and
C. Peterhansel. 2007. Chloroplastic respiratory bypass increases photosynthesis and biomass production in Arabidopsis
thaliana. Nat. Biotechnol. 25: 593–599.
Khanna, N. and P. Lindblad. 2015. Cyanobacterial hydrogenases and hydrogen metabolism revisited: recent progress and
future prospects. Int. J. Mol. Sci. 16: 10537–10561.
Khetkorn, W., W. Baebprasert, P. Lindblad and A. Incharoensakdi. 2012a. Redirecting the electron flow towards the nitrogenase
and bidirectional Hox-hydrogenase by using specific inhibitors results in enhanced H2 production in the cyanobacterium
Anabaena siamensis TISTR 8012. Bioresour. Technol. 118: 265–271.
Khetkorn, W., P. Lindblad and A. Incharoensakdi. 2012b. Inactivation of uptake hydrogenase leads to enhanced and sustained
hydrogen production with high nitrogenase activity under high light exposure in the cyanobacterium Anabaena siamensis
TISTR 8012. J. Biol. Eng. 6: 19. doi:10.1186/1754-1611-6-19.
Khetkorn, W., R.P. Rastogi, A. Incharoensakdi, P. Lindblad, D. Madamwar, A. Pandey and C. Larroche. 2017. Microalgal
hydrogen production—a review. Bioresour. Technol. 243: 1194–1206.
Kilian, O., C.S.E. Benemann, K.K. Niyogi and B. Vick. 2011. High efficiency homologous recombination in the oil-producing
alga Nannochloropsis sp. Proc. Natl. Acad. Sci. USA 108: 21265–21269.
Kindle, K.L. 1990. High-frequency nuclear transformation of Chlamydomonas reinhardtii. Proc. Natl. Acad. Sci. USA 87:
1228–1232.
Kothari, A., R. Potrafka and F. Garcia-Pichel. 2012. Diversity in hydrogen evolution from bidirectional hydrogenases in
cyanobacteria from terrestrial, freshwater and marine intertidal environments. J. Biotechnol. 162: 105–114.
Kruse, O., J. Rupprecht, K.P. Bader, S. Thomas-Hall, P.M. Schenk, G. Finazzi and B. Hankamer. 2005. Improved photobiological
H2 production in engineered green algal cells. J. Biol. Chem. 280: 34170–34177.
Kumar, A., S. Ergas, X. Yuan, A. Sahu, Q. Zhang, J. Dewulf, F.X. Malcata and H. van Langenhove. 2010. Enhanced CO 2 fixation
and biofuel production via microalgae: recent developments and future directions. Trends Biotechnol. 28: 371–380.
Kumar, S.V., R.W. Misquitta, V.S. Reddy, B.J. Rao and M.V. Rajam. 2004. Genetic transformation of the green alga -
Chlamydomonas reinhardtii by Agrobacterium tumefaciens. Plant Sci. 166: 731–738.
Lambertz, C., N. Leidel, K.G. Havelius, J. Noth, P. Chernev, M. Winkler, T. Happe and M. Haumann. 2011. O 2 reactions at
the six-iron active site (H-cluster) in [FeFe]-hydrogenase. J. Biol. Chem. 286: 40614–40623.
Lapidot, M., D. Raveh, A. Sivan, S.M. Arad and M. Shapira. 2002. Stable chloroplast transformation of the unicellular red
alga Porphyridium species. Plant Physiol. 129: 7–12.
Lardizabal, K., R. Effertz, C. Levering, J. Mai, M.C. Pedroso, T. Jury, E. Aasen, K. Gruys and K. Bennett. 2008. Expression
of Umbelopsis ramanniana DGAT2A in seed increases oil in soybean. Plant Physiol. 148: 89–96.
Larkum, A.W. and M. Kühl. 2005. Chlorophyll d: the puzzle resolved. Trends Plant Sci. 10: 355–357.
Larkum, A.W., I.L. Ross, O. Kruse and B. Hankamer. 2012. Selection, breeding and engineering of microalgae for bioenergy
and biofuel production. Trends Biotechnol. 30: 198–205.
Lefebvre, S., T. Lawson, O.V. Zakhleniuk, J.C. Lloyd and C.A. Raines. 2005. Increased sedoheptulose-1,7-bisphosphatase
activity in transgenic tobacco plants stimulates photosynthesis and growth from an early stage in development. Plant
Physiol. 138: 451–460.
Li, Y., N. Scales, R.E. Blankenship, R.D. Willows and M. Chen. 2012. Extinction coefficients for red-shifted chlorophylls:
Chlorophyll d and chlorophyll f. Biochim. Biophys. Acta 1817: 1292–1298.
Lin, M.T., A. Occhialini, P.J. Andralojc, M.A.J. Parry and M.R. Hanson. 2014. A faster Rubisco with potential to increase
photosynthesis in crops. Nature 513: 545–550.
Lindbgerg, P., K. Schütz, T. Happe and P. Lindblad. 2002. A hydrogen producing, hydrogenase-free mutant strain of Nostoc
punctiforme ATCC 29133. Int. J. Hydrogen Energy 27: 1291–1296.
Liu, L., Y. Wang, Y. Zhang, X. Chen, P. Zhang and S. Ma. 2012. Development of a new method for genetic transformation of
the green alga Chlorella ellipsoidea. Mol. Biotechnol. 54: 211–219.
Long, H., C.H. Chang, P.W. King, M.L. Ghirardi and K. Kim. 2008. Brownian dynamics and molecular dynamics study of
the association between hydrogenase and ferredoxin from Chlamydomonas reinhardtii. Biophys. J. 95: 3753–3766.
Long, H., P.W. King, M.L. Ghirardi and K. Kim. 2009. Hydrogenase/ferredoxin charge-transfer complexes: effect of hydrogenase
mutations on the complex association. J. Phys. Chem. A 113: 4060–4067.
Lynn, M.E., J.A. Bantle and J.D. Ownby. 1986. Estimation of gene expression in heterocysts of Anabaena variabilis by using
DNA-RNA hybridization. J. Bacteriol. 167: 940–946.
Makarova, V.V., S. Kosourov, T.E. Krendeleva, B.K. Semin, G.P. Kukarskikh, A.B. Rubin, R.T. Sayre, M.L. Ghirardi and
M. Seibert. 2007. Photoproduction of hydrogen by sulfur-deprived C. reinhardtii mutants with impaired photosystem
II photochemical activity. Photosynth. Res. 94: 79–89.
Marin-Navarro, J., M.G. Esquivel and J. Moreno. 2010. Hydrogen production by Chlamydomonas reinhardtii revisited:
Rubisco as a biotechnological target. World J. Microbiol. Biotechnol. 26: 1785–1793.
Iwai, M., K. Ikeda, M. Shimojima and H. Ohta. 2014. Enhancement of extraplastidic oil synthesis in Chlamydomonas reinhardtii
using a type-2 diacylglycerol acyltransferase with a phosphorus starvation–inducible promoter. Plant Biotechnol. J. 12:
808–819.
Jurado-Oller, J.L., A. Dubini, A. Galván, E. Fernández and D. González-Ballester. 2015. Low oxygen levels contribute to
improve photohydrogen production in mixotrophic non-stressed Chlamydomonas cultures. Biotechnol. Biofuels, 8: 149.
Kebeish, R., M. Niessen, K. Thiruveedhi, R. Bari, H.J. Hirsch, R. Rosenkranz, N. Stäbler, B. Schönfeld, F. Kreuzaler and
C. Peterhansel. 2007. Chloroplastic respiratory bypass increases photosynthesis and biomass production in Arabidopsis
thaliana. Nat. Biotechnol. 25: 593–599.
Khanna, N. and P. Lindblad. 2015. Cyanobacterial hydrogenases and hydrogen metabolism revisited: recent progress and
future prospects. Int. J. Mol. Sci. 16: 10537–10561.
Khetkorn, W., W. Baebprasert, P. Lindblad and A. Incharoensakdi. 2012a. Redirecting the electron flow towards the nitrogenase
and bidirectional Hox-hydrogenase by using specific inhibitors results in enhanced H2 production in the cyanobacterium
Anabaena siamensis TISTR 8012. Bioresour. Technol. 118: 265–271.
Khetkorn, W., P. Lindblad and A. Incharoensakdi. 2012b. Inactivation of uptake hydrogenase leads to enhanced and sustained
hydrogen production with high nitrogenase activity under high light exposure in the cyanobacterium Anabaena siamensis
TISTR 8012. J. Biol. Eng. 6: 19. doi:10.1186/1754-1611-6-19.
Khetkorn, W., R.P. Rastogi, A. Incharoensakdi, P. Lindblad, D. Madamwar, A. Pandey and C. Larroche. 2017. Microalgal
hydrogen production—a review. Bioresour. Technol. 243: 1194–1206.
Kilian, O., C.S.E. Benemann, K.K. Niyogi and B. Vick. 2011. High efficiency homologous recombination in the oil-producing
alga Nannochloropsis sp. Proc. Natl. Acad. Sci. USA 108: 21265–21269.
Kindle, K.L. 1990. High-frequency nuclear transformation of Chlamydomonas reinhardtii. Proc. Natl. Acad. Sci. USA 87:
1228–1232.
Kothari, A., R. Potrafka and F. Garcia-Pichel. 2012. Diversity in hydrogen evolution from bidirectional hydrogenases in
cyanobacteria from terrestrial, freshwater and marine intertidal environments. J. Biotechnol. 162: 105–114.
Kruse, O., J. Rupprecht, K.P. Bader, S. Thomas-Hall, P.M. Schenk, G. Finazzi and B. Hankamer. 2005. Improved photobiological
H2 production in engineered green algal cells. J. Biol. Chem. 280: 34170–34177.
Kumar, A., S. Ergas, X. Yuan, A. Sahu, Q. Zhang, J. Dewulf, F.X. Malcata and H. van Langenhove. 2010. Enhanced CO 2 fixation
and biofuel production via microalgae: recent developments and future directions. Trends Biotechnol. 28: 371–380.
Kumar, S.V., R.W. Misquitta, V.S. Reddy, B.J. Rao and M.V. Rajam. 2004. Genetic transformation of the green alga -
Chlamydomonas reinhardtii by Agrobacterium tumefaciens. Plant Sci. 166: 731–738.
Lambertz, C., N. Leidel, K.G. Havelius, J. Noth, P. Chernev, M. Winkler, T. Happe and M. Haumann. 2011. O 2 reactions at
the six-iron active site (H-cluster) in [FeFe]-hydrogenase. J. Biol. Chem. 286: 40614–40623.
Lapidot, M., D. Raveh, A. Sivan, S.M. Arad and M. Shapira. 2002. Stable chloroplast transformation of the unicellular red
alga Porphyridium species. Plant Physiol. 129: 7–12.
Lardizabal, K., R. Effertz, C. Levering, J. Mai, M.C. Pedroso, T. Jury, E. Aasen, K. Gruys and K. Bennett. 2008. Expression
of Umbelopsis ramanniana DGAT2A in seed increases oil in soybean. Plant Physiol. 148: 89–96.
Larkum, A.W. and M. Kühl. 2005. Chlorophyll d: the puzzle resolved. Trends Plant Sci. 10: 355–357.
Larkum, A.W., I.L. Ross, O. Kruse and B. Hankamer. 2012. Selection, breeding and engineering of microalgae for bioenergy
and biofuel production. Trends Biotechnol. 30: 198–205.
Lefebvre, S., T. Lawson, O.V. Zakhleniuk, J.C. Lloyd and C.A. Raines. 2005. Increased sedoheptulose-1,7-bisphosphatase
activity in transgenic tobacco plants stimulates photosynthesis and growth from an early stage in development. Plant
Physiol. 138: 451–460.
Li, Y., N. Scales, R.E. Blankenship, R.D. Willows and M. Chen. 2012. Extinction coefficients for red-shifted chlorophylls:
Chlorophyll d and chlorophyll f. Biochim. Biophys. Acta 1817: 1292–1298.
Lin, M.T., A. Occhialini, P.J. Andralojc, M.A.J. Parry and M.R. Hanson. 2014. A faster Rubisco with potential to increase
photosynthesis in crops. Nature 513: 545–550.
Lindbgerg, P., K. Schütz, T. Happe and P. Lindblad. 2002. A hydrogen producing, hydrogenase-free mutant strain of Nostoc
punctiforme ATCC 29133. Int. J. Hydrogen Energy 27: 1291–1296.
Liu, L., Y. Wang, Y. Zhang, X. Chen, P. Zhang and S. Ma. 2012. Development of a new method for genetic transformation of
the green alga Chlorella ellipsoidea. Mol. Biotechnol. 54: 211–219.
Long, H., C.H. Chang, P.W. King, M.L. Ghirardi and K. Kim. 2008. Brownian dynamics and molecular dynamics study of
the association between hydrogenase and ferredoxin from Chlamydomonas reinhardtii. Biophys. J. 95: 3753–3766.
Long, H., P.W. King, M.L. Ghirardi and K. Kim. 2009. Hydrogenase/ferredoxin charge-transfer complexes: effect of hydrogenase
mutations on the complex association. J. Phys. Chem. A 113: 4060–4067.
Lynn, M.E., J.A. Bantle and J.D. Ownby. 1986. Estimation of gene expression in heterocysts of Anabaena variabilis by using
DNA-RNA hybridization. J. Bacteriol. 167: 940–946.
Makarova, V.V., S. Kosourov, T.E. Krendeleva, B.K. Semin, G.P. Kukarskikh, A.B. Rubin, R.T. Sayre, M.L. Ghirardi and
M. Seibert. 2007. Photoproduction of hydrogen by sulfur-deprived C. reinhardtii mutants with impaired photosystem
II photochemical activity. Photosynth. Res. 94: 79–89.
Marin-Navarro, J., M.G. Esquivel and J. Moreno. 2010. Hydrogen production by Chlamydomonas reinhardtii revisited:
Rubisco as a biotechnological target. World J. Microbiol. Biotechnol. 26: 1785–1793.
