Rismani-Yazdi, H., Haznedaroglu, B. Z., Bibby, K., & Peccia, J. (2011). Transcriptome
sequencing and annotation of the microalgae Dunaliella tertiolecta: Pathway description and
gene discovery for production of next-generation biofuels. BMC Genomics, 12(1), 148.
Roy, S., Kumar, K., Ghosh, S., & Das, D. (2014). Thermophilic biohydrogen production using
pre-treated algal biomass as substrate. Biomass and Bioenergy, 61, 157–166.
Sambusiti, C., Bellucci, M., Zabaniotou, A., Beneduce, L., & Monlau, F. (2015). Algae as
promising feedstocks for fermentative biohydrogen production according to a biorefinery
approach: A comprehensive review. Renewable and Sustainable Energy Reviews, 44, 20–36.
Shi, X. Y., & Yu, H. Q. (2016). Simultaneous metabolism of benzoate and photobiological
hydrogen production by Lyngbya sp. Renewable Energy, 95, 474–477.
Stripp, S. T., Goldet, G., Brandmayr, C., Sanganas, O., Vincent, K. A., Haumann, M., et al.
(2009). How oxygen attacks [FeFe] hydrogenases from photosynthetic organisms. Proceedings
of the National Academy of Sciences of the United States of America, 106(41), 17331–17336.
Su, H. Y., Lee, T. M., Huang, Y. L., Chou, S. H., Wang, J. B., Lin, L. F., et al. (2011). Increased
cellulose production by heterologous expression of cellulose synthase genes in a filamentous
heterocystous cyanobacterium with a modification in photosynthesis performance and growth
ability. Botanical Studies, 52, 265–275.
Taikhao, S., Junyapoon, S., Incharoensakdi, A., & Phunpruch, S. (2013). Factors affecting
biohydrogen production by unicellular halotolerant cyanobacterium Aphanothece halophytica.
Journal of Applied Phycology, 25(2), 575–585.
Tamagnini, P., Axelsson, R., Lindberg, P., Oxelfelt, F., Wünschiers, R., & Lindblad, P. (2002).
Hydrogenases and hydrogen metabolism of cyanobacteria. Microbiology and Molecular
Biology Reviews, 66(1), 1–20.
Tiwari, A., & Pandey, A. (2012). Cyanobacterial hydrogen production—A step towards clean
environment. International Journal of Hydrogen Energy, 37(1), 139–150.
Torzillo, G., Scoma, A., Faraloni, C., Ena, A., & Johanningmeier, U. (2009). Increased hydrogen
photoproduction by means of a sulfur-deprived Chlamydomonas reinhardtii D1 protein
mutant. International Journal of Hydrogen Energy, 34(10), 4529–4536.
Torzillo, G., Scoma, A., Faraloni, C., & Giannelli, L. (2015). Advances in biotechnology of
hydrogen production with the microalga Chlamydomonas reinhardtii. Critical reviews in
Biotecnology, 35(4), 485–496.
Torzillo, G., & Seibert, M. 2013. Hydrogen production by Chlamydomonas reinhardtii. In
Handbook of microalgal culture: Applied phycology and biotechnology, pp. 417–432.
Troshina, O., Serebryakova, L., Sheremetieva, M., & Lindblad, P. (2002). Production of H 2 by the
unicellular cyanobacterium Gloeocapsa alpicola CALU 743 during fermentation. International
Journal of Hydrogen Energy, 27(11–12), 1283–1289.
Tsygankov, A. A., Fedorov, A. S., Kosourov, S. N., & Rao, K. K. (2002). Hydrogen production by
cyanobacteria in an automated outdoor photobioreactor under aerobic conditions.
Biotechnology and Bioengineering, 80(7), 777–783.
Tsygankov, A. A., Kosourov, S. N., Tolstygina, I. V., Ghirardi, M. L., & Seibert, M. (2006).
Hydrogen production by sulfur-deprived Chlamydomonas reinhardtii under photoautotrophic
conditions. International Journal of Hydrogen Energy, 31, 1574–1584.
Vitova, M., Bisova, K., Kawano, S., & Zachleder, V. (2015). Accumulation of energy reserves in
algae: From cell cycles to biotechnological applications. Biotechnology Advances, 33(6),
1204–1218.
Wang, J., & Yin, Y. (2017). Bihydrogen production from organic wastes. In Green energy and
technology (pp. 123–195), Springer Nature.
Wang, Y., Ho, S.-H., Yen, H.-W., Nagarajan, D., Ren, N.-Q., & Li, S. et al. (2017). Current
advances on fermantative biobutanol production using third generation feedstock.
Biotechnology Advances. https://doi.org/10.1016/j.biotechadv.2017.06.001.
Wu, S., Huang, R., Xu, L., Yan, G., & Wang, Q. (2010). Improved hydrogen production with
expression of hemH and lba genes in chloroplast of Chlamydomonas reinhardtii. Journal of
Biotechnology, 146, 120–125.
10 Biofuels from Microalgae: Biohydrogen
227
sequencing and annotation of the microalgae Dunaliella tertiolecta: Pathway description and
gene discovery for production of next-generation biofuels. BMC Genomics, 12(1), 148.
Roy, S., Kumar, K., Ghosh, S., & Das, D. (2014). Thermophilic biohydrogen production using
pre-treated algal biomass as substrate. Biomass and Bioenergy, 61, 157–166.
Sambusiti, C., Bellucci, M., Zabaniotou, A., Beneduce, L., & Monlau, F. (2015). Algae as
promising feedstocks for fermentative biohydrogen production according to a biorefinery
approach: A comprehensive review. Renewable and Sustainable Energy Reviews, 44, 20–36.
Shi, X. Y., & Yu, H. Q. (2016). Simultaneous metabolism of benzoate and photobiological
hydrogen production by Lyngbya sp. Renewable Energy, 95, 474–477.
Stripp, S. T., Goldet, G., Brandmayr, C., Sanganas, O., Vincent, K. A., Haumann, M., et al.
(2009). How oxygen attacks [FeFe] hydrogenases from photosynthetic organisms. Proceedings
of the National Academy of Sciences of the United States of America, 106(41), 17331–17336.
Su, H. Y., Lee, T. M., Huang, Y. L., Chou, S. H., Wang, J. B., Lin, L. F., et al. (2011). Increased
cellulose production by heterologous expression of cellulose synthase genes in a filamentous
heterocystous cyanobacterium with a modification in photosynthesis performance and growth
ability. Botanical Studies, 52, 265–275.
Taikhao, S., Junyapoon, S., Incharoensakdi, A., & Phunpruch, S. (2013). Factors affecting
biohydrogen production by unicellular halotolerant cyanobacterium Aphanothece halophytica.
Journal of Applied Phycology, 25(2), 575–585.
Tamagnini, P., Axelsson, R., Lindberg, P., Oxelfelt, F., Wünschiers, R., & Lindblad, P. (2002).
Hydrogenases and hydrogen metabolism of cyanobacteria. Microbiology and Molecular
Biology Reviews, 66(1), 1–20.
Tiwari, A., & Pandey, A. (2012). Cyanobacterial hydrogen production—A step towards clean
environment. International Journal of Hydrogen Energy, 37(1), 139–150.
Torzillo, G., Scoma, A., Faraloni, C., Ena, A., & Johanningmeier, U. (2009). Increased hydrogen
photoproduction by means of a sulfur-deprived Chlamydomonas reinhardtii D1 protein
mutant. International Journal of Hydrogen Energy, 34(10), 4529–4536.
Torzillo, G., Scoma, A., Faraloni, C., & Giannelli, L. (2015). Advances in biotechnology of
hydrogen production with the microalga Chlamydomonas reinhardtii. Critical reviews in
Biotecnology, 35(4), 485–496.
Torzillo, G., & Seibert, M. 2013. Hydrogen production by Chlamydomonas reinhardtii. In
Handbook of microalgal culture: Applied phycology and biotechnology, pp. 417–432.
Troshina, O., Serebryakova, L., Sheremetieva, M., & Lindblad, P. (2002). Production of H 2 by the
unicellular cyanobacterium Gloeocapsa alpicola CALU 743 during fermentation. International
Journal of Hydrogen Energy, 27(11–12), 1283–1289.
Tsygankov, A. A., Fedorov, A. S., Kosourov, S. N., & Rao, K. K. (2002). Hydrogen production by
cyanobacteria in an automated outdoor photobioreactor under aerobic conditions.
Biotechnology and Bioengineering, 80(7), 777–783.
Tsygankov, A. A., Kosourov, S. N., Tolstygina, I. V., Ghirardi, M. L., & Seibert, M. (2006).
Hydrogen production by sulfur-deprived Chlamydomonas reinhardtii under photoautotrophic
conditions. International Journal of Hydrogen Energy, 31, 1574–1584.
Vitova, M., Bisova, K., Kawano, S., & Zachleder, V. (2015). Accumulation of energy reserves in
algae: From cell cycles to biotechnological applications. Biotechnology Advances, 33(6),
1204–1218.
Wang, J., & Yin, Y. (2017). Bihydrogen production from organic wastes. In Green energy and
technology (pp. 123–195), Springer Nature.
Wang, Y., Ho, S.-H., Yen, H.-W., Nagarajan, D., Ren, N.-Q., & Li, S. et al. (2017). Current
advances on fermantative biobutanol production using third generation feedstock.
Biotechnology Advances. https://doi.org/10.1016/j.biotechadv.2017.06.001.
Wu, S., Huang, R., Xu, L., Yan, G., & Wang, Q. (2010). Improved hydrogen production with
expression of hemH and lba genes in chloroplast of Chlamydomonas reinhardtii. Journal of
Biotechnology, 146, 120–125.
10 Biofuels from Microalgae: Biohydrogen
227