14
J. C. da Silva and A. T. Lombardi
Angerhofer, A., Bornhäuser, F., Aust, V., Hartwich, G., & Scheer, H. (1998). Triplet energy transfer
in bacterial photosynthetic reaction centres. BBA-Bioenergetics, 1365(3), 404–420.
Armstrong, G. A. (1998). Greening in the dark:light-independent chlorophyll biosynthesis from
anoxygenic photosynthetic bacteria to gymnosperms. Journal of Photochemistry and Photobiology B: Biology, 43, 87–100.
Aronoff, S. (1966). The chlorophylls—An introductory survey. In L. P. Vernon & G. R. Seely (Eds.),
The chlorophylls (pp. 3–20). New York: Academic Press.
Beale, S. I. (1999). Enzymes of chlorophyll biosynthesis. Photosynthesis Research, 60, 43–73.
Behrendt, L., Brejnrod, A., Schlief, M., Sorensen, S. J., Larkum, A. W., & Kuhl, M. (2015).
Chlorophyll f-driven photosynthesis in a cavernous cyanobacterium. ISME Journal, 9(9),
2108–2111.
Blass, U., Anderson, J. M., & Calvin, M. (1959). Biosynthesis and possible functional relationships
among the carotenoids; and between chlorophyll a and chlorophyll b. Plant Physiology, 34(3),
329.
Bogorad, L. (1976). Chlorophyll biosynthesis. In T. W. Goodwin (Ed.), Chemistry and biochemistry
of plant pigments (2nd ed., pp. 64–148). New York: Academic Press.
Bogorad, L. (1967). Chlorophylls. In: R. A. Lewin (Ed.), Physiology and biochemistry of algae
(pp. 385–408) New York: Academic Press.
Borodin, I. P. (1882). Über chlorophyllkristalle. Bot Z, 40(36), 608–610.
Cahoon, A. B., & Timko, M. P. (2003). Biochemistry and regulation of chlorophyll biosynthesis.
In: A. W. D. Larkum, S. E. Douglas, & Raven, J. A. (Eds.), Photosynthesis in algae (pp. 96–131).
Springer, Dordrecht.
Chen, M., Schliep, M., Willows, R. D., Cai, Z. L., Neilan, B. A., & Scheer, H. (2010). A red-shifted
chlorophyll. Science, 329(5997), 1318–1319.
Chen, M., & Blankenship, R. E. (2011). Expanding the solar spectrum used by photosynthesis.
Trends in Plant Science, 16, 427–431.
Chen, M., Li, Y., Birch, D., & Willows, R. D. (2012). A cyanobacterium that contains chlorophyll
f–a red-absorbing photopigment. FEBS Letters, 586(19), 3249–3254.
Chen, M. (2014). Chlorophyll modifications and their spectral extension in oxygenic photosynthesis.
Annual Review of Biochemistry, 83, 26.1–26.24.
De Duve, C. (2007). The origin of eukaryotes: a reappraisal. Nature Reviews Genetics, 8(5), 395.
Delwiche, C. F. (1999). Tracing the thread of plastid diversity through the tapestry of life. The
American Naturalist, 154, 164–177.
Douglas, S. E., Raven, J. A., & Larkum, A. W. D. (2003). The algae and their general characteristics.
In: A. W. Larkum, S. E. Douglas, & Raven. J. A. (Eds.), Photosynthesis in algae (pp. 1–10). The
Netherlands: Kluwer Academic Publishers.
Dujardin, E., Laszlo, P., & Sacks, D. (1975). The chlorophylls. An experiment in bio-inorganic
chemistry. Journal of Chemical Education 52(11), 742.
Eggink, L. L., LoBrutto, R., Brune, D. C., Brusslan, J., Yamasato, A., Tanaka, A., & Hoober, J. K.
(2004). Synthesis of chlorophyll b: localization of chlorophyllide a oxygenase and discovery of
a stable radical in the catalytic subunit. BMC Plant Biology, 4(1), 5.
Falkowski, P. G., & Owens, T. G. (1980). Light–shade adaptation: two strategies in marine
phytoplankton. Plant Physiology, 66, 592–595.
Fawley, M. W. (1989). Detection of chlorophylls c1, c2 and c3 in pigment extracts of Prymnesium
parvum (PRMNESIOPHYCEAE). Journal of Phycology, 25(3), 601–604.
Falkowski, P. G., Katz, M. E., Knoll, A. H., Quigg, A., Raven, J. A., Schofield, O., & Taylor, F. J.
R. (2004). The Evolution of Modern Eukaryotic Phytoplakton. Science, 305, 354–360.
Ferreira, V. S., & Sant’Anna, C. (2017). Impact of culture conditions on the chlorophyll content of
microalgae for biotechnological applications. World Journal of Microbiology and Biotechnology,
2017(33), 19–27.
Fisher, H., & Orth, H. (1937). Die Chemie des pyrrols. Leipzig, Germany: Acad. Verlag.
Fischer, H., & Orth, H. (1940). In Die Chemie der Pyrrols (pp. 153–154). Leipzig: Akad. Verlag.
J. C. da Silva and A. T. Lombardi
Angerhofer, A., Bornhäuser, F., Aust, V., Hartwich, G., & Scheer, H. (1998). Triplet energy transfer
in bacterial photosynthetic reaction centres. BBA-Bioenergetics, 1365(3), 404–420.
Armstrong, G. A. (1998). Greening in the dark:light-independent chlorophyll biosynthesis from
anoxygenic photosynthetic bacteria to gymnosperms. Journal of Photochemistry and Photobiology B: Biology, 43, 87–100.
Aronoff, S. (1966). The chlorophylls—An introductory survey. In L. P. Vernon & G. R. Seely (Eds.),
The chlorophylls (pp. 3–20). New York: Academic Press.
Beale, S. I. (1999). Enzymes of chlorophyll biosynthesis. Photosynthesis Research, 60, 43–73.
Behrendt, L., Brejnrod, A., Schlief, M., Sorensen, S. J., Larkum, A. W., & Kuhl, M. (2015).
Chlorophyll f-driven photosynthesis in a cavernous cyanobacterium. ISME Journal, 9(9),
2108–2111.
Blass, U., Anderson, J. M., & Calvin, M. (1959). Biosynthesis and possible functional relationships
among the carotenoids; and between chlorophyll a and chlorophyll b. Plant Physiology, 34(3),
329.
Bogorad, L. (1976). Chlorophyll biosynthesis. In T. W. Goodwin (Ed.), Chemistry and biochemistry
of plant pigments (2nd ed., pp. 64–148). New York: Academic Press.
Bogorad, L. (1967). Chlorophylls. In: R. A. Lewin (Ed.), Physiology and biochemistry of algae
(pp. 385–408) New York: Academic Press.
Borodin, I. P. (1882). Über chlorophyllkristalle. Bot Z, 40(36), 608–610.
Cahoon, A. B., & Timko, M. P. (2003). Biochemistry and regulation of chlorophyll biosynthesis.
In: A. W. D. Larkum, S. E. Douglas, & Raven, J. A. (Eds.), Photosynthesis in algae (pp. 96–131).
Springer, Dordrecht.
Chen, M., Schliep, M., Willows, R. D., Cai, Z. L., Neilan, B. A., & Scheer, H. (2010). A red-shifted
chlorophyll. Science, 329(5997), 1318–1319.
Chen, M., & Blankenship, R. E. (2011). Expanding the solar spectrum used by photosynthesis.
Trends in Plant Science, 16, 427–431.
Chen, M., Li, Y., Birch, D., & Willows, R. D. (2012). A cyanobacterium that contains chlorophyll
f–a red-absorbing photopigment. FEBS Letters, 586(19), 3249–3254.
Chen, M. (2014). Chlorophyll modifications and their spectral extension in oxygenic photosynthesis.
Annual Review of Biochemistry, 83, 26.1–26.24.
De Duve, C. (2007). The origin of eukaryotes: a reappraisal. Nature Reviews Genetics, 8(5), 395.
Delwiche, C. F. (1999). Tracing the thread of plastid diversity through the tapestry of life. The
American Naturalist, 154, 164–177.
Douglas, S. E., Raven, J. A., & Larkum, A. W. D. (2003). The algae and their general characteristics.
In: A. W. Larkum, S. E. Douglas, & Raven. J. A. (Eds.), Photosynthesis in algae (pp. 1–10). The
Netherlands: Kluwer Academic Publishers.
Dujardin, E., Laszlo, P., & Sacks, D. (1975). The chlorophylls. An experiment in bio-inorganic
chemistry. Journal of Chemical Education 52(11), 742.
Eggink, L. L., LoBrutto, R., Brune, D. C., Brusslan, J., Yamasato, A., Tanaka, A., & Hoober, J. K.
(2004). Synthesis of chlorophyll b: localization of chlorophyllide a oxygenase and discovery of
a stable radical in the catalytic subunit. BMC Plant Biology, 4(1), 5.
Falkowski, P. G., & Owens, T. G. (1980). Light–shade adaptation: two strategies in marine
phytoplankton. Plant Physiology, 66, 592–595.
Fawley, M. W. (1989). Detection of chlorophylls c1, c2 and c3 in pigment extracts of Prymnesium
parvum (PRMNESIOPHYCEAE). Journal of Phycology, 25(3), 601–604.
Falkowski, P. G., Katz, M. E., Knoll, A. H., Quigg, A., Raven, J. A., Schofield, O., & Taylor, F. J.
R. (2004). The Evolution of Modern Eukaryotic Phytoplakton. Science, 305, 354–360.
Ferreira, V. S., & Sant’Anna, C. (2017). Impact of culture conditions on the chlorophyll content of
microalgae for biotechnological applications. World Journal of Microbiology and Biotechnology,
2017(33), 19–27.
Fisher, H., & Orth, H. (1937). Die Chemie des pyrrols. Leipzig, Germany: Acad. Verlag.
Fischer, H., & Orth, H. (1940). In Die Chemie der Pyrrols (pp. 153–154). Leipzig: Akad. Verlag.
