1 Chlorophylls in Microalgae: Occurrence …
15
Fischer, H., & Orth, H. (1943). Die Chemie des Pyrrols. Edwards, Ann Arbor, Michigan, USA: II.
Pyrrol-farbstoffe. Part I.
Fischer, H., & Strell, M. (1947). Naturfarbstoffe IV Chlorophyll. Fiat Review of German Science,
39, 141.
Fookes, C. J., & Jeffrey, S. W. (1989). The structure of chlorophyll c 3, a novel marine photosynthetic
pigment. Journal of the Chemical Society, Chemical Communications, 23, 1827–1828.
Galova, E., Salgovicova, I., Demko, V., Mikulova, K., Sevcovicova, A., Slovakia, L., et al. (2008).
A short overview of chlorophyll biosynthesis in algae. Biology, 63(6), 947–951.
Gan, F., Zhang, S., Rockwell, N. C., Martin, S. S., Lagarias, J. C., & Bryant, D. A. (2014). Extensive
remodeling of a cyanobacterial photosynthetic apparatus in far-red light. Science, 345, 1312–
1317.
Granick, S. (1948a). Magnesium protoporphyrin-9 as precursor of chlorophyll in Chlorella. Journal
of Biological Chemistry, 172, 717–727.
Granick, S. (1948b). Magnesium protoporphyrin as a precursor of chlorophyll in Chlorella. Journal
of Biological Chemistry, 175, 333–342.
Granick, S. (1954). Biosynthesis and function of heme and chlorophyll. Record Chemistry Progress,
15, 27–35.
Green, B. R., & Durnford, D. G. (1996). The Chlorophyll–carotenoid proteins of oxygenic
photosynthesis. Annual Review of Plant Physiology and Plant Molecular Biology, 47, 685–714.
Hendry, G. A. F., & Jones, O. T. G. (1980). Haems and chlorophylls: comparison of function and
formation. Journal of Medical Genetics, 17, 1–14.
Herrera-Salgado, P., Leyva-Castillo, L. E., Rios-Castro, E., & Gomez-Lojero, C. (2018). Complementary chromatic and far-red photoacclimations in Synechococcus ATCC 29403 (PCC 7335).
I: the phycobili- somes, a proteomic approach. Photosynthesis Research, 138, 39–56.
Ho, M. Y., Shen, G., Canniffe, D. P., Zhao, C., & Bryant, D. A. (2016). Light- dependent chlorophyll
f synthase is a highly divergent paralog of PsbA of photosystem II. Science, 353, 213–227.
Ho, M. Y., Soulier, N. T., Canniffe, D. P., Shen, G., & Bryant, D. A. (2017). Light regulation of
pigment and photosystem biosynthesis in cyanobacteria. Current Opinion in Plant Biology, 37,
24–33.
Ho, M. Y. (2018). Characterization of far-red light photoacclimation in cyanobacteria. Biochemistry
and Molecular Biology, 131, 173–186.
Hoppe-Seyler, F. (1879). Zeitschrift fur Physiologische Chemie, 3, 339.
Hoppe-Seyler, F. (1880). Zeitschrift fur Physiologische Chemie, 4, 193.
Hoppe-Seyler, F. (1881). Zeitschrift fur Physiologische Chemie, 5, 75.
Hunsperger, H. M., Randhawa, T., & Cattolico, R. A. (2015). Extensive horizontal gene transfer,
duplication, and loss of chlorophyll synthesis genes in the algae. BMC Evolutionary Biology, 15,
16.
Jeffrey, S. W. (1989). Chlorophyll c pigments and their distribution in chromophytic algae. In J.
C. Green, B. S. C. Leadbetter, & W. L. Diver (Eds.), The chromophyte algae: Problems and
perspectives (pp. 13–36). Oxford: Clarendon Press.
Jeffrey, S. W. (2013). Cronulla NSW, Australia. Primary Productivity in the Sea, 19, 33.
Keeling, P. J. (2004). Diversity and evolutionary history of plastids and their hosts. American Journal
of Botany, 91(10), 1481–1493.
Kirk, J. T. O., & Tilney-Bassett, R. A. E. (1978). The plastids: Their chemistry. Structure, Growth
and Inheritance: Elsevier, Amsterdam.
Kurashov, V., Ho, M. Y., Shen, G., Piedl, K., Laremore, T. N., Bryant, D. A., & Golbeck, J. H. (2019).
Energy transfer from chlorophyll f to the trapping center in naturally occurring and engineered
Photosystem I complexes. Photosynthesis Research, 141, 151–163.
La Roche, J., van der Staay, G. W. M., Partensky, F., Ducret, A., Aebersold, R., Li, R., & Green,
B. R. (1996). Independent evolution of the prochlorophyte and green plant chlorophyll a/b lightharvesting proteins. Proceedings of the National academy of Sciences of the United States of
America, 93, 15244–15248.
15
Fischer, H., & Orth, H. (1943). Die Chemie des Pyrrols. Edwards, Ann Arbor, Michigan, USA: II.
Pyrrol-farbstoffe. Part I.
Fischer, H., & Strell, M. (1947). Naturfarbstoffe IV Chlorophyll. Fiat Review of German Science,
39, 141.
Fookes, C. J., & Jeffrey, S. W. (1989). The structure of chlorophyll c 3, a novel marine photosynthetic
pigment. Journal of the Chemical Society, Chemical Communications, 23, 1827–1828.
Galova, E., Salgovicova, I., Demko, V., Mikulova, K., Sevcovicova, A., Slovakia, L., et al. (2008).
A short overview of chlorophyll biosynthesis in algae. Biology, 63(6), 947–951.
Gan, F., Zhang, S., Rockwell, N. C., Martin, S. S., Lagarias, J. C., & Bryant, D. A. (2014). Extensive
remodeling of a cyanobacterial photosynthetic apparatus in far-red light. Science, 345, 1312–
1317.
Granick, S. (1948a). Magnesium protoporphyrin-9 as precursor of chlorophyll in Chlorella. Journal
of Biological Chemistry, 172, 717–727.
Granick, S. (1948b). Magnesium protoporphyrin as a precursor of chlorophyll in Chlorella. Journal
of Biological Chemistry, 175, 333–342.
Granick, S. (1954). Biosynthesis and function of heme and chlorophyll. Record Chemistry Progress,
15, 27–35.
Green, B. R., & Durnford, D. G. (1996). The Chlorophyll–carotenoid proteins of oxygenic
photosynthesis. Annual Review of Plant Physiology and Plant Molecular Biology, 47, 685–714.
Hendry, G. A. F., & Jones, O. T. G. (1980). Haems and chlorophylls: comparison of function and
formation. Journal of Medical Genetics, 17, 1–14.
Herrera-Salgado, P., Leyva-Castillo, L. E., Rios-Castro, E., & Gomez-Lojero, C. (2018). Complementary chromatic and far-red photoacclimations in Synechococcus ATCC 29403 (PCC 7335).
I: the phycobili- somes, a proteomic approach. Photosynthesis Research, 138, 39–56.
Ho, M. Y., Shen, G., Canniffe, D. P., Zhao, C., & Bryant, D. A. (2016). Light- dependent chlorophyll
f synthase is a highly divergent paralog of PsbA of photosystem II. Science, 353, 213–227.
Ho, M. Y., Soulier, N. T., Canniffe, D. P., Shen, G., & Bryant, D. A. (2017). Light regulation of
pigment and photosystem biosynthesis in cyanobacteria. Current Opinion in Plant Biology, 37,
24–33.
Ho, M. Y. (2018). Characterization of far-red light photoacclimation in cyanobacteria. Biochemistry
and Molecular Biology, 131, 173–186.
Hoppe-Seyler, F. (1879). Zeitschrift fur Physiologische Chemie, 3, 339.
Hoppe-Seyler, F. (1880). Zeitschrift fur Physiologische Chemie, 4, 193.
Hoppe-Seyler, F. (1881). Zeitschrift fur Physiologische Chemie, 5, 75.
Hunsperger, H. M., Randhawa, T., & Cattolico, R. A. (2015). Extensive horizontal gene transfer,
duplication, and loss of chlorophyll synthesis genes in the algae. BMC Evolutionary Biology, 15,
16.
Jeffrey, S. W. (1989). Chlorophyll c pigments and their distribution in chromophytic algae. In J.
C. Green, B. S. C. Leadbetter, & W. L. Diver (Eds.), The chromophyte algae: Problems and
perspectives (pp. 13–36). Oxford: Clarendon Press.
Jeffrey, S. W. (2013). Cronulla NSW, Australia. Primary Productivity in the Sea, 19, 33.
Keeling, P. J. (2004). Diversity and evolutionary history of plastids and their hosts. American Journal
of Botany, 91(10), 1481–1493.
Kirk, J. T. O., & Tilney-Bassett, R. A. E. (1978). The plastids: Their chemistry. Structure, Growth
and Inheritance: Elsevier, Amsterdam.
Kurashov, V., Ho, M. Y., Shen, G., Piedl, K., Laremore, T. N., Bryant, D. A., & Golbeck, J. H. (2019).
Energy transfer from chlorophyll f to the trapping center in naturally occurring and engineered
Photosystem I complexes. Photosynthesis Research, 141, 151–163.
La Roche, J., van der Staay, G. W. M., Partensky, F., Ducret, A., Aebersold, R., Li, R., & Green,
B. R. (1996). Independent evolution of the prochlorophyte and green plant chlorophyll a/b lightharvesting proteins. Proceedings of the National academy of Sciences of the United States of
America, 93, 15244–15248.
