38
S. Takaichi
Jeffrey, S. W., & Vesk, M. (1997). Introduction to marine phytoplankton and their pigment signatures. In S. W. Jeffrey, R. F. C. Mantoura, & S. W. Wright (Eds.), Phytoplankton pigments in
oceanography: guidelines to modern methods (pp. 37–84). Paris, France: UNESCO Publishing.
Kajiwara, S., Kakizono, T., Saito, T., Kondo, K., Ohtani, T., Nishio, N., et al. (1995). Isolation and
functional identification of a novel cDNA from astaxanthin biosynthesis from Haematococcus
pluvialis, and astaxanthin synthesis in Escherichia coli. Plant Molecular Biology, 29, 343–352.
Kato, S., Takaichi, S., Ishikawa, T., Asahina, M., Takahashi, S., & Shinomura, T. (2016). Identification and functional analysis of the geranylgeranyl phyrophosphate synthase gene (crtE)
and phytoene synthase gene (crtB) for carotenoid biosynthesis in Euglena gracilis. BMC Plant
Biology, 67, e4.
Kato, S., Tanno, Y., Takaichi, S., & Shinomura, T. (2019). Low temperature stress alters the expression of phytoene desaturase genes (crtP1 and crtP2) and the ζ-carotene desaturase gene (crtQ)
together with the cellular carotenoid content of Euglena gracilis. Plant and Cell Physiology, 60,
274–284.
Kim, J., Smith, J. J., Tian, L., & DellaPenna, D. (2009). The evolution and function of carotenoid
hydroxylases in Arabidopsis. Plant and Cell Physiology, 50, 463–479.
Krubasik, P., & Sandmann, G. (2000). Molecular evolution of lycopene cyclases involved in the
formation of carotenoids with ionone end groups. Biochemical Society Transactions, 28, 806–810.
Lagarde, D., & Vermaas, W. (1999). The zeaxanthin biosynthesis enzyme β-carotene hydroxylase
is involved in myxoxanthophyll synthesis in Synechocystis sp. PCC 6803. FEBS Letters, 454,
247–251.
Lagarde, D., Beuf, L., & Vermaas, W. (2000). Increased production of zeaxanthin and other pigments
by application of genetic engineering techniques to Synechocystis sp. strain PCC 6803. Applied
and Environment Microbiology, 66, 64–72.
Lemoine, Y., & Schoefs, B. (2010). Secondary ketocarotenoid astaxanthin biosynthesis in algae: a
multifunctional response to stress. Photosynthesis Research, 106, 155–177.
Liaaen-Jensen, S. (1990). Marine carotenoids. New Journal of Chemistry, 14, 747–759.
Liaaen-Jensen, S. (1995). Combined approach: identification and structure elucidation of
carotenoids. In G. Britton, S. Liaaen-Jensen, & H. Pfander (Eds.), Carotenoids: spectroscopy
(Vol. 1B, pp. 343–354). Birkhäuser: Basel, Switzerland.
Lichtenthaler, H. K. (1999). The 1-deoxy-d-xylulose-5-phosphate pathway of isoprenoid biosynthesis in plants. Annual Review of Plant Physiology and Plant Molecular Biology, 50,
47–65.
Linden, H. (1999). Carotenoid hydroxylase from Haematococcus pluvialis: cDNA sequence,
regulation and functional complementation. Biochimica et Biophysica Acta, 1446, 203–212.
Linden, H., Vioque, A., & Sandmann, G. (1993). Isolation of a carotenoid biosynthesis gene coding
for ζ-carotene desaturase from Anabaena PCC 7120 by heterologous complementation. FEMS
Microbiology Letters, 106, 99–104.
Liu, J., Zhong, Y., Sun, Z., Huang, J., Sandmann, G., & Chen, F. (2010). One amino acid substitution
in phytoene desaturase makes Chlorella zofingiensis resistant to norflurazon and enhances the
biosynthesis of astaxanthin. Planta, 232, 61–67.
Lotan, T., & Hirschberg, J. (1995). Cloning and expression in Escherichia coli of the gene
encoding β-C-4-oxygenase, that converts β-carotene to the ketocarotenoid canthaxanthin in
Haematococcus pluvialis. FEBS Letters, 364, 125–128.
Mackey, M. D., Mackey, D. J., Higgins, H. W., & Wright, S. W. (1996). CHEMTAX-a program
for estimating class abundances from chemical markers: Application to HPLC measurements of
phytoplankton. Marine Ecology Progress Series, 144, 265–283.
Makino, T., Harada, H., Ikenaga, H., Matsuda, S., Takaichi, S., Shindo, K., et al. (2008). Characterization of cyanobacterial carotenoid ketolase CrtW and hydroxylase CrtR by complementation
analysis in Escherichia coli. Plant and Cell Physiology, 49, 1867–1878.
Maresca, J. A., Frigaard, N.-U., Bryant, D. A. (2005). Identification of a novel class of lycopene
cyclases in photosynthetic organisms. In A. van der Est, D. Bruce (Eds.), Photosynthesis:
fundamental aspects to global perspectives (pp. 884–886). Lawrence, KS, USA: Allen Press.
S. Takaichi
Jeffrey, S. W., & Vesk, M. (1997). Introduction to marine phytoplankton and their pigment signatures. In S. W. Jeffrey, R. F. C. Mantoura, & S. W. Wright (Eds.), Phytoplankton pigments in
oceanography: guidelines to modern methods (pp. 37–84). Paris, France: UNESCO Publishing.
Kajiwara, S., Kakizono, T., Saito, T., Kondo, K., Ohtani, T., Nishio, N., et al. (1995). Isolation and
functional identification of a novel cDNA from astaxanthin biosynthesis from Haematococcus
pluvialis, and astaxanthin synthesis in Escherichia coli. Plant Molecular Biology, 29, 343–352.
Kato, S., Takaichi, S., Ishikawa, T., Asahina, M., Takahashi, S., & Shinomura, T. (2016). Identification and functional analysis of the geranylgeranyl phyrophosphate synthase gene (crtE)
and phytoene synthase gene (crtB) for carotenoid biosynthesis in Euglena gracilis. BMC Plant
Biology, 67, e4.
Kato, S., Tanno, Y., Takaichi, S., & Shinomura, T. (2019). Low temperature stress alters the expression of phytoene desaturase genes (crtP1 and crtP2) and the ζ-carotene desaturase gene (crtQ)
together with the cellular carotenoid content of Euglena gracilis. Plant and Cell Physiology, 60,
274–284.
Kim, J., Smith, J. J., Tian, L., & DellaPenna, D. (2009). The evolution and function of carotenoid
hydroxylases in Arabidopsis. Plant and Cell Physiology, 50, 463–479.
Krubasik, P., & Sandmann, G. (2000). Molecular evolution of lycopene cyclases involved in the
formation of carotenoids with ionone end groups. Biochemical Society Transactions, 28, 806–810.
Lagarde, D., & Vermaas, W. (1999). The zeaxanthin biosynthesis enzyme β-carotene hydroxylase
is involved in myxoxanthophyll synthesis in Synechocystis sp. PCC 6803. FEBS Letters, 454,
247–251.
Lagarde, D., Beuf, L., & Vermaas, W. (2000). Increased production of zeaxanthin and other pigments
by application of genetic engineering techniques to Synechocystis sp. strain PCC 6803. Applied
and Environment Microbiology, 66, 64–72.
Lemoine, Y., & Schoefs, B. (2010). Secondary ketocarotenoid astaxanthin biosynthesis in algae: a
multifunctional response to stress. Photosynthesis Research, 106, 155–177.
Liaaen-Jensen, S. (1990). Marine carotenoids. New Journal of Chemistry, 14, 747–759.
Liaaen-Jensen, S. (1995). Combined approach: identification and structure elucidation of
carotenoids. In G. Britton, S. Liaaen-Jensen, & H. Pfander (Eds.), Carotenoids: spectroscopy
(Vol. 1B, pp. 343–354). Birkhäuser: Basel, Switzerland.
Lichtenthaler, H. K. (1999). The 1-deoxy-d-xylulose-5-phosphate pathway of isoprenoid biosynthesis in plants. Annual Review of Plant Physiology and Plant Molecular Biology, 50,
47–65.
Linden, H. (1999). Carotenoid hydroxylase from Haematococcus pluvialis: cDNA sequence,
regulation and functional complementation. Biochimica et Biophysica Acta, 1446, 203–212.
Linden, H., Vioque, A., & Sandmann, G. (1993). Isolation of a carotenoid biosynthesis gene coding
for ζ-carotene desaturase from Anabaena PCC 7120 by heterologous complementation. FEMS
Microbiology Letters, 106, 99–104.
Liu, J., Zhong, Y., Sun, Z., Huang, J., Sandmann, G., & Chen, F. (2010). One amino acid substitution
in phytoene desaturase makes Chlorella zofingiensis resistant to norflurazon and enhances the
biosynthesis of astaxanthin. Planta, 232, 61–67.
Lotan, T., & Hirschberg, J. (1995). Cloning and expression in Escherichia coli of the gene
encoding β-C-4-oxygenase, that converts β-carotene to the ketocarotenoid canthaxanthin in
Haematococcus pluvialis. FEBS Letters, 364, 125–128.
Mackey, M. D., Mackey, D. J., Higgins, H. W., & Wright, S. W. (1996). CHEMTAX-a program
for estimating class abundances from chemical markers: Application to HPLC measurements of
phytoplankton. Marine Ecology Progress Series, 144, 265–283.
Makino, T., Harada, H., Ikenaga, H., Matsuda, S., Takaichi, S., Shindo, K., et al. (2008). Characterization of cyanobacterial carotenoid ketolase CrtW and hydroxylase CrtR by complementation
analysis in Escherichia coli. Plant and Cell Physiology, 49, 1867–1878.
Maresca, J. A., Frigaard, N.-U., Bryant, D. A. (2005). Identification of a novel class of lycopene
cyclases in photosynthetic organisms. In A. van der Est, D. Bruce (Eds.), Photosynthesis:
fundamental aspects to global perspectives (pp. 884–886). Lawrence, KS, USA: Allen Press.
