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Maga, J. A. and LeBowitz, J. H., Unravelling the kinetoplastid paraflagellar rod, Trends Cell Biology,9,
409–413, 1999.
Mann, K. H. and Lazier, J. R. N., Dinamics of Marine Ecosystems, Blackwell Science, Cambridge, 1996.
Marian, B. and Melkonian, M., Flagellar hairs in Prasinophytes: ultrastructure and distribution on the flagellar
surface, Journal of Phycology, 30, 659–678, 1994.
Martin, R. L., Wood, C., Baehr, W., and Applebury, M., Visual pigment homologies revealed by DNA
hybridization, Science 232, 1266–1269, 1986.
Maruyama, T., Fine structure of the longitudinal flagellum in Ceratium tripos, a marine dinoflagellate, Journal
of Cell Science, 58, 109–123, 1982.
Melkonian, M., Ed., Algal Cell Motility, Chapman Hall, New York, 1992.
Melkonian, M. and Robenek, H., The eyespot apparatus of flagellated green algae: a critical review, in
Progress in Phycological Research, Vol. 3, Round, F. E. and Chapman, D. J., Eds., Biopress Ltd.,
Bristol, 1984, pp. 193–268.
Menzel, D., Ed., The Cytoskeleton of the Algae, CRC Press Inc., Boca Raton, 1992.
Miyasaka, I., Nanba, K., Furuya, K., Nimura, Y., and Azuma, A., Functional roles of the transverse and
longitudinal flagella in the swimming motility of Prorocentrum minimum, Journal of Experimental
Biology, 207, 3055–3066, 2004.
Moenstrup, Ø., Flagellar structure in algae: a review, with new observations particularly on the
Chrysophyceae, Phaeophyceae, Euglenophyceae, and Reckertia, Phycologia, 21 (4), 427–528, 1982.
Moenstrup, Ø. and Sengco, M., Ultrastructural studies on Bigelowiella natans, a Chlorarachniophyte flagellate,
Journal of Phycology, 37, 624–646, 2001.
Nagel, G., Ollig, D., Fuhrmann, M., Kateriya, S., Musti, A. M., Bamberg, E., and Hegemann, P., Channel-
rhodopsin-1: a light-gated proton channel in green algae, Science 296, 2395–2398, 2002.
Niklas, K. J., The cell walls the bind the tree of life, Bioscience, 54, 831–841, 2004.
Norton, T. A., Andersen R. A., and Melkonian, M., Algal biodiversity, Phycologia, 35, 308, 1996.
Novarino, G., A companion to the identification of cyptomonad flagellates, Hydrobiologia, 502, 225–270,
2003.
Parkinson, P. R., Ontogeny v. Phylogeny. The strange case of the silicoflagellates, Constancea, 83, 1–29, 2002.
Passarelli, V., Barsanti, L., Evangelista, V., Frassanito, A. M., and Gualtieri, P., Euglena gracilis photorecep-
tion interpreted by microspectroscopy, European Journal of Protistology, 39, 404–408, 2003.
Patterson, D. J. and Larsen, J., The Biology of Free-living Heterotrophic Flagellates, Claredon Press, Oxford,
1991.
Pickett-Heaps, J. D., Carpenter, J., and Koutoulis, A., Valve and sseta (spine) morphogenesis in the centric
diatom Chaetoceros peruvianus, Protoplasma, 181, 269–282, 1994.
Preisig, H. R., Siliceous structure and silicification in flagellate protists, Protoplasma, 181, 29–42, 1994.
Preisig, H. R., Anderson, O. R., Corliss, J. O., Moestrup, Ø., Powell, M. J., Roberson, R. W., and Wetherbee,
R., Terminology and nomenclature of protest cell surface structures, Protoplasma, 181,1–28, 1994.
Purcell, E. M., Life at low Reynold number, American Journal of Physics, 45 (1), 3–11, 1977.
Rave, J. A. and Brownlee, C., Understanding membrane function, Journal of Phycology, 37, 960–967, 2001.
Rizzo, P. J., Those amazing dinoflagellate chromosomes, Cell Research, 13, 215–217, 2002.
Rosati, G., Verni, F., Barsanti, L., Passarelli, V., and Gualtieri, P., Ultrastructure of the apical zone of Euglena
gracils: photoreceptor and motor apparatus, Electron Microscopy Review, 4, 319–342, 1991.
Saunders, G. W. and Hommersand, M. H., Assessing red algae supraordinary diversity and taxonomy in the
context of contemporary systematic data, American Journal of Botany, 91, 1494–1507, 2004.
Sato, H., Greuet, C., Cachon, M., and Cosson, J., Analysis of the contraction of an organelle using
its birefringency: the R-fiber of the Ceratium flagellum, Cell Biology International, 28, 387–396, 2004.
Schaller, K. and Uhl, R., A microspectrophotometric study of the shielding proprieties of eyespot and cell body
in Chlamydomonas, Biophysic Journal, 73, 1573, 1997.
Schaller, K., David, R., and Uhl, R., How Chlamydomonas keeps track of the light once it has reached the right
phototactic orientation, Biophysical Journal, 73, 1562–1567, 1997.
Sineshchekov, O. A., Jung, K.-H., and Spudich, J. L., Two rhodopsins mediate phototaxis to low and high-
intensity light in Chlamydomonas reinhardtii, Proceedings of the National Academy of Science, 99,
8689–8693, 2002.
Solomon, C. M., Evelyn, J., Lessard, R. G., Keil, M. S., Foy, Characterization of extracellular polymers of
Phaeocystis globosa and P. antarctica, Marine Ecology Progress Series, 250, 81–89, 2003.