1 Chlorophylls in Microalgae: Occurrence …
17
Porra, R. J. (1997). Recent progress in porphyrin and chlorophyll biosynthesis. Photochemistry and
Photobiology, 65(3), 492–516.
Reinbothe, C., El Bakkouri, M., Buhr, F., Muraki, N., Nomata, J., Kurisu, G., et al. (2010). Chlorophyll biosynthesis: Spotlight on protochlorophyllide reduction. Trends in Plant Science, 15,
614–624.
Ritchie, R. J. (2006). Consistent sets of spectrophotometric chlorophyll equations for acetone,
methanol and ethanol solvents. Photosynthesis Research, 89(1), 27–41.
Rüdiger, W. (2002). Biosynthesis of chlorophyll b and the chlorophyll cycle. Photosynthesis
Research, 74(2), 187–193.
Scheer, H. (1991). Structure and occurence of chlorophylls. In: Scheer, H. (Ed.). Chlorophylls
(pp. 3–30). CRC Press
Scheer, H. (2006). An overview of chlorophylls and bacteriochlorophylls: Biochemistry, biophysics,
functions and applications. In B. Grimm, R. J. Porra, W. Rüdiger, & H. Scheer (Eds.), Chlorophylls and bacteriochlorophylls: Biochemistry, biophysics, functions and applications (pp. 1–26).
Printed in The Netherlands: Springer.
Schliep, M., Cavigliasso, G., Quinnell, R. G., Stranger, R., & Larkum, A. W. D. (2013). Formyl group
modification of chlorophyll a: A major evolutionary mechanism in oxygenic photosynthesis.
Plant, Cell and Environment, 36, 521–527.
Schulz, R., & Senger, H. (1993). Protochlorophyllide reductase: A key enzyme in the greening
process. Pigment-Protein Complexes in Plastids: Synthesis and Assembly, 179–218.
Shemin, D., & Wittenberg, J. (1951). The mechanism of porphyrin formation. The role of the
tricarboxilic acid cycle. Journal of Biological Chemistry, 192, 315–334.
Shen, G., Canniffe, D. P., Ho, M. Y., Kurashov, V., van der Est, A., Golbeck, J. H., & Bryant, D. A.
(2019). Characterization of chlorophyll f synthase heterologously produced in Synechococcus
sp. PCC 7002. Photosynthnesis Research, 140(1), 77–92.
Shui, J., Saunders, E., Needleman, R., Nappi, M., Cooper, J., Hall, L., et al. (2009). Lightdependent and light-independent protochlorophyllide oxidoreductases in the chromatically
adapting cyanobacterium Fremyella diplosiphon UTEX 481. Plant and Cell Physiology, 50,
1507–1521.
Smith, J. H. C. (1948). Protochlorophyll, precursor of chlorophyll. Archives of Biochemistry and
Biophysics, 19, 449–454.
Smith, J. H. C. (1960). Prootochlorophyll transformations. In M. B. Allen (Ed.), Comparative
Biochemistry of Photoreactive Systems (pp. 257–277). New York: Academic Press Inc.
South, G. R., & Whittick, A. (1987). An introduction to phycology. Blackwell Science Ltd.
Stauber, J. L., & Jeffrey, S. W. (1988). Photosynthetic pigments in fifty-one species of marine
diatoms. Journal of Phycology, 24, 158–172.
Stokes, G. G. (1854). Annals Physik, 2(4), 220.
Stokes, G. G. (1864a). On the supposed identity of biliverdin with chlorophyll, with remarks on the
constitution of chlorophyll. Proceedings of the Royal Society, 13, 144–145.
Stokes, G. G. (1864b). XXXIV.— On the application of the optical properties of bodies to the
detection and discrimination of organic substances. Journal of the Chemical Society, 17, 304–318.
Strain, H. H., Cope, B. T., Jr., McDonald, G. N., Svec, W. A., & Katz, J. J. (1971). Chlorophylls c1
and c2. Phytochemistry, 10(5), 1109–1114.
Suzuki, J. Y., & Bauer, C. E. (1992). Light-independent chlorophyll biosynthesis: involvement of
the chloroplast gene chlL (frxC). The Plant Cell, 4, 929–940.
Szyszka, B., Ivanov, A. G., & Huner, N. P. A. (2007). Psychrophily is associated with differential energy partitioning, photosystem stoichiometry and polypeptide phosphorylation in
Chlamydomonas raudensis. BBA-Bioenergetics, 1767, 789–800.
Tswett, M. (1906). Ber. deut. botan. Ges, 24, 316–384.
Tswett, M. (1907). Ber. Deut. Botan. Ges., 25, 140.
Tsweet, M. (1908). Biochemical Zoology, 10, 414.
van den Hoek, C., van den Hoeck, H., Mann, D., & Jahns, H. M. (1995). Algae: An introduction to
phycology. Cambridge University Press.
17
Porra, R. J. (1997). Recent progress in porphyrin and chlorophyll biosynthesis. Photochemistry and
Photobiology, 65(3), 492–516.
Reinbothe, C., El Bakkouri, M., Buhr, F., Muraki, N., Nomata, J., Kurisu, G., et al. (2010). Chlorophyll biosynthesis: Spotlight on protochlorophyllide reduction. Trends in Plant Science, 15,
614–624.
Ritchie, R. J. (2006). Consistent sets of spectrophotometric chlorophyll equations for acetone,
methanol and ethanol solvents. Photosynthesis Research, 89(1), 27–41.
Rüdiger, W. (2002). Biosynthesis of chlorophyll b and the chlorophyll cycle. Photosynthesis
Research, 74(2), 187–193.
Scheer, H. (1991). Structure and occurence of chlorophylls. In: Scheer, H. (Ed.). Chlorophylls
(pp. 3–30). CRC Press
Scheer, H. (2006). An overview of chlorophylls and bacteriochlorophylls: Biochemistry, biophysics,
functions and applications. In B. Grimm, R. J. Porra, W. Rüdiger, & H. Scheer (Eds.), Chlorophylls and bacteriochlorophylls: Biochemistry, biophysics, functions and applications (pp. 1–26).
Printed in The Netherlands: Springer.
Schliep, M., Cavigliasso, G., Quinnell, R. G., Stranger, R., & Larkum, A. W. D. (2013). Formyl group
modification of chlorophyll a: A major evolutionary mechanism in oxygenic photosynthesis.
Plant, Cell and Environment, 36, 521–527.
Schulz, R., & Senger, H. (1993). Protochlorophyllide reductase: A key enzyme in the greening
process. Pigment-Protein Complexes in Plastids: Synthesis and Assembly, 179–218.
Shemin, D., & Wittenberg, J. (1951). The mechanism of porphyrin formation. The role of the
tricarboxilic acid cycle. Journal of Biological Chemistry, 192, 315–334.
Shen, G., Canniffe, D. P., Ho, M. Y., Kurashov, V., van der Est, A., Golbeck, J. H., & Bryant, D. A.
(2019). Characterization of chlorophyll f synthase heterologously produced in Synechococcus
sp. PCC 7002. Photosynthnesis Research, 140(1), 77–92.
Shui, J., Saunders, E., Needleman, R., Nappi, M., Cooper, J., Hall, L., et al. (2009). Lightdependent and light-independent protochlorophyllide oxidoreductases in the chromatically
adapting cyanobacterium Fremyella diplosiphon UTEX 481. Plant and Cell Physiology, 50,
1507–1521.
Smith, J. H. C. (1948). Protochlorophyll, precursor of chlorophyll. Archives of Biochemistry and
Biophysics, 19, 449–454.
Smith, J. H. C. (1960). Prootochlorophyll transformations. In M. B. Allen (Ed.), Comparative
Biochemistry of Photoreactive Systems (pp. 257–277). New York: Academic Press Inc.
South, G. R., & Whittick, A. (1987). An introduction to phycology. Blackwell Science Ltd.
Stauber, J. L., & Jeffrey, S. W. (1988). Photosynthetic pigments in fifty-one species of marine
diatoms. Journal of Phycology, 24, 158–172.
Stokes, G. G. (1854). Annals Physik, 2(4), 220.
Stokes, G. G. (1864a). On the supposed identity of biliverdin with chlorophyll, with remarks on the
constitution of chlorophyll. Proceedings of the Royal Society, 13, 144–145.
Stokes, G. G. (1864b). XXXIV.— On the application of the optical properties of bodies to the
detection and discrimination of organic substances. Journal of the Chemical Society, 17, 304–318.
Strain, H. H., Cope, B. T., Jr., McDonald, G. N., Svec, W. A., & Katz, J. J. (1971). Chlorophylls c1
and c2. Phytochemistry, 10(5), 1109–1114.
Suzuki, J. Y., & Bauer, C. E. (1992). Light-independent chlorophyll biosynthesis: involvement of
the chloroplast gene chlL (frxC). The Plant Cell, 4, 929–940.
Szyszka, B., Ivanov, A. G., & Huner, N. P. A. (2007). Psychrophily is associated with differential energy partitioning, photosystem stoichiometry and polypeptide phosphorylation in
Chlamydomonas raudensis. BBA-Bioenergetics, 1767, 789–800.
Tswett, M. (1906). Ber. deut. botan. Ges, 24, 316–384.
Tswett, M. (1907). Ber. Deut. Botan. Ges., 25, 140.
Tsweet, M. (1908). Biochemical Zoology, 10, 414.
van den Hoek, C., van den Hoeck, H., Mann, D., & Jahns, H. M. (1995). Algae: An introduction to
phycology. Cambridge University Press.
