16
J. C. da Silva and A. T. Lombardi
Larkum, A. W. (2016). Photosynthesis and Light Harvesting in Algae. In M. A. Borowitzka, J.
Beardal, & J. A. Raven (Eds.), The Physiology of Microalgae (pp. 67–87). Switzerland: Springer
International Publishing A G.
Larkum, A. W., & Kühl, M. (2005). Chlorophyll d: the puzzle resolved. Trends in Plant Science,
10(8), 355–357.
Larkum, A. W. D. , Scaramuzzi, C. , Cox, G. C. , Hiller, R. G. , & Turner, A. G. (1994). Light
harvesting chlorophyll c-like pigment in Prochloron. Proceedings of the National Academy of
Sciences USA, 91, 679–683.
Lehninger, A. L. (1987). Principles of biochemistry. New York—USA: Worth Publishers, Inc..
Li, J., Goldschmidt-Clermont, M., & Timko, M. P. (1993). Chloroplast-encoded chlB is required
for light-independent protochlorophyllide reductase activity in Chlamydomonas reinhardtii. The
Plant Cell, 5, 1817–1829.
Li, Y., & Chen, M. (2015). Novel chlorophylls and new directions in photosynthesis research.
Functional Plant Biology, 42, 493–501.
Li, Y., Scales, N., Blankenship, R. E., Willows, R. D., & Chen, M. (2012). Extinction coefficient
for red-shifted chlorophylls: chlorophyll d and chlorophyll f. BBA-Bioenergetics, 1817(8), 1292–
1298.
Loeffler, J. E. (1955). Precursors of protochlorophyll in etiolated barley seedlings. Carnegie
Institution of Washington Year Book, 54, 159–160.
Manning, W. M., & Strain, H. H. (1943). Chlorophyll d, a green pigment in red algae. Journal of
Biological Chemistry, 151, 1–19.
Marks, G. S. (1966). The biosynthesis of heme and chlorophyll. Botanical Review, 32, 56–94.
Markwell, J. P., Thornber, J. P., & Boggs, R. T. (1979). Higher plant chloroplasts: Evidence that all
the chlorophyll exists as chlorophyll—protein complexes. Proceedings of the National Academy
of Sciences USA., 76(3), 1233–1235.
Miyashita, H., Adachi, K., Kurano, N., Ikemoto, H., Chihara, M., & Miyachi, S. (1996). Chlorophyll
d as a major pigment. Nature, 383, 402.
Miyashita, H., Adachi, K., Kurano, N., Ikemoto, H., Chihara, M., & Miyachi, S. (1997). Pigment
composition of a novel oxygenic photosynthetic procaryote containing chlorophyll d as the major
chlorophyll. Plant and Cell Physiology, 38, 274–281.
Monteverde, NA. (1893). Acta Horti Petropolitani, 13, 148.
Nakagawara, E., Sakuraba, Y., Yamasato, A., Tanaka, R., & Tanaka, A. (2007). Clp protease controls
chlorophyll b synthesis by regulating the level of chlorophyllide a oxygenase. The Plant Journal,
49(5), 800–809.
Nencki, M, & Marchlewski, L. (1901). Berichte der deutschen chemischen Gesellschaft, 34, 1687.
Nencki, M. (1896). Berichte der deutschen chemischen Gesellschaft, 29, 2877.
Nencki, M., & Zaleski, J. (1901). Berichte der deutschen chemischen Gesellschaft, 34, 997.
Nieuwenburg, P., Clarke, R. J., Cai, Z.-L., Chen, M., Larkum, A. W. D., Cabra, I. N. M., et al.
(2003). Examination of the photophysical processes of chlorophyll d leading to a clarification of
proposed uphill energy transfer processes in cells of Acaryochloris marina. Photochemistry and
Photobiology, 77, 637–638.
Nurnberg, D. J., Morton, J., Santabarbara, S., Telfer, A., Joliot, P., Antonaru, L. A., et al. (2018).
Photochemistry beyond the red limit in chlorophyll f -containing photosystems. Science, 360,
1210–1213.
Partensky, F., & Garczarek, L. (2003). The photosynthetic apparatus of chlorophyll b and d
containing Oxyphotobacteria. In: A. W. D. Larkum, S. E. Douglas, & J. A. Raven (Eds.)
Photosynthesis in Algae (pp. 29–62). Springer, Dordrecht.
Pelletier, P. J., & Caventou, J. B. (1818). Note sur un nouvel Alcali. Annales de chimie et de physique,
8, 323–324.
Pocock, T. H., Koziak, A., Rosso, D., Falk, S., & Huner, N. P. A. (2007). Chlamydomonas raudensis
(UWO 241), Chlorophyceae, exhibits the capacityfor rapid D1 repair in response to chronic
photoinhibition at low temperature. Journal of Phycology, 43, 924–936.
J. C. da Silva and A. T. Lombardi
Larkum, A. W. (2016). Photosynthesis and Light Harvesting in Algae. In M. A. Borowitzka, J.
Beardal, & J. A. Raven (Eds.), The Physiology of Microalgae (pp. 67–87). Switzerland: Springer
International Publishing A G.
Larkum, A. W., & Kühl, M. (2005). Chlorophyll d: the puzzle resolved. Trends in Plant Science,
10(8), 355–357.
Larkum, A. W. D. , Scaramuzzi, C. , Cox, G. C. , Hiller, R. G. , & Turner, A. G. (1994). Light
harvesting chlorophyll c-like pigment in Prochloron. Proceedings of the National Academy of
Sciences USA, 91, 679–683.
Lehninger, A. L. (1987). Principles of biochemistry. New York—USA: Worth Publishers, Inc..
Li, J., Goldschmidt-Clermont, M., & Timko, M. P. (1993). Chloroplast-encoded chlB is required
for light-independent protochlorophyllide reductase activity in Chlamydomonas reinhardtii. The
Plant Cell, 5, 1817–1829.
Li, Y., & Chen, M. (2015). Novel chlorophylls and new directions in photosynthesis research.
Functional Plant Biology, 42, 493–501.
Li, Y., Scales, N., Blankenship, R. E., Willows, R. D., & Chen, M. (2012). Extinction coefficient
for red-shifted chlorophylls: chlorophyll d and chlorophyll f. BBA-Bioenergetics, 1817(8), 1292–
1298.
Loeffler, J. E. (1955). Precursors of protochlorophyll in etiolated barley seedlings. Carnegie
Institution of Washington Year Book, 54, 159–160.
Manning, W. M., & Strain, H. H. (1943). Chlorophyll d, a green pigment in red algae. Journal of
Biological Chemistry, 151, 1–19.
Marks, G. S. (1966). The biosynthesis of heme and chlorophyll. Botanical Review, 32, 56–94.
Markwell, J. P., Thornber, J. P., & Boggs, R. T. (1979). Higher plant chloroplasts: Evidence that all
the chlorophyll exists as chlorophyll—protein complexes. Proceedings of the National Academy
of Sciences USA., 76(3), 1233–1235.
Miyashita, H., Adachi, K., Kurano, N., Ikemoto, H., Chihara, M., & Miyachi, S. (1996). Chlorophyll
d as a major pigment. Nature, 383, 402.
Miyashita, H., Adachi, K., Kurano, N., Ikemoto, H., Chihara, M., & Miyachi, S. (1997). Pigment
composition of a novel oxygenic photosynthetic procaryote containing chlorophyll d as the major
chlorophyll. Plant and Cell Physiology, 38, 274–281.
Monteverde, NA. (1893). Acta Horti Petropolitani, 13, 148.
Nakagawara, E., Sakuraba, Y., Yamasato, A., Tanaka, R., & Tanaka, A. (2007). Clp protease controls
chlorophyll b synthesis by regulating the level of chlorophyllide a oxygenase. The Plant Journal,
49(5), 800–809.
Nencki, M, & Marchlewski, L. (1901). Berichte der deutschen chemischen Gesellschaft, 34, 1687.
Nencki, M. (1896). Berichte der deutschen chemischen Gesellschaft, 29, 2877.
Nencki, M., & Zaleski, J. (1901). Berichte der deutschen chemischen Gesellschaft, 34, 997.
Nieuwenburg, P., Clarke, R. J., Cai, Z.-L., Chen, M., Larkum, A. W. D., Cabra, I. N. M., et al.
(2003). Examination of the photophysical processes of chlorophyll d leading to a clarification of
proposed uphill energy transfer processes in cells of Acaryochloris marina. Photochemistry and
Photobiology, 77, 637–638.
Nurnberg, D. J., Morton, J., Santabarbara, S., Telfer, A., Joliot, P., Antonaru, L. A., et al. (2018).
Photochemistry beyond the red limit in chlorophyll f -containing photosystems. Science, 360,
1210–1213.
Partensky, F., & Garczarek, L. (2003). The photosynthetic apparatus of chlorophyll b and d
containing Oxyphotobacteria. In: A. W. D. Larkum, S. E. Douglas, & J. A. Raven (Eds.)
Photosynthesis in Algae (pp. 29–62). Springer, Dordrecht.
Pelletier, P. J., & Caventou, J. B. (1818). Note sur un nouvel Alcali. Annales de chimie et de physique,
8, 323–324.
Pocock, T. H., Koziak, A., Rosso, D., Falk, S., & Huner, N. P. A. (2007). Chlamydomonas raudensis
(UWO 241), Chlorophyceae, exhibits the capacityfor rapid D1 repair in response to chronic
photoinhibition at low temperature. Journal of Phycology, 43, 924–936.
