The following bibliography has been generated by bringing together all references provided by our content partners. There may be duplication.

References

  • Adl, S.M., Simpson, A.G.B., Farmer, M.A., Andersen, R.A., Anderson, R.A., Barta, J., Bowser, S., Brugerolle, G., Fensome, R., Fredericq, S., James, T.Y., Karpov, S., Kugrens, P., Krug, J., Lane, C., Lewis, L.A., Lodge, J., Lynn, D.H., Mann, D.G., McCourt, R.M., Mendoza, L., Moestrup, Ø., Mozeley-Standridge, S.E., Nerad, T.A., Sheraer, C., Spiegel, F. & Taylor, F.J.R. (Max) (2005). The new higher level classification of eukaryotes and taxonomy of protists. Journal of Eukaryotic Microbiology 52: 399-451.
  • Crawford, R.M. (1974). The auxospore wall of the marine diatom Melosira nummuloides (Dillw.) C. Ag. and related species. British Phycological Journal 9: 9–20.
  • Field, C.B., Behrenfeld, M.J., Randerson, J.T. & Falkowski, P. (1998). Primary production of the biosphere: integrating terrestrial and oceanic components. Science 281: 237-240.
  • Guillou, L., Chrétiennot-Dinet, M.-J., Medlin, L. K., Claustre, H., Loiseaux-de Goër, S., Vaulot, D.: Bolidomonas: a new genus with two species belonging to a new algal class, the Bolidophyceae (Heterokonta). Journal of Phycology 35, 368–381 (1999).
  • Holotype: Lohman, K. E. Cenozoic nonmarine diatoms of the Great Basin. 148, plate 12, fig. 4.
  • Lovejoy, C., Massana, R. & Pedrós-Alió, C. (2006). Diversity and distribution of marine microbial eukaryotes in the Arctic Ocean and adjacent seas. Applied and Environmental Microbiology 72: 3085–3095.
  • M. R. Landry, A review of important concepts in the trophic organization of pelagic ecosystems, Helgolander wiss. Meeresunters. 30:8-17, from p. 12 (1977).
  • Mann, D.G. & Droop, S.J.M. (1996). Biodiversity, biogeography and conservation of diatoms. Hydrobiologia 336: 19–32.
  • Mann, D.G. & Evans, K.M. (2007). Molecular genetics and the neglected art of diatomics. In: Unravelling the algae – the past, present and future of algal systematics (Ed. by J. Brodie & J. Lewis), pp. 231-265. CRC Press, Boca Raton, Florida.
  • Mann, D.G. & Marchant, H. (1989). The origins of the diatom and its life cycle. In J. C. Green, B. S. C. Leadbeater & W. L. Diver (eds.) The chromophyte algae: problems and perspectives (Systematics Association Special Volume 38), pp. 305–321. Clarendon Press, Oxford.
  • Mann, D.G. (1999). The species concept in diatoms. Phycologia 38: 437-495.
  • Medlin, L.K. & Kaczmarska, I. (2004). Evolution of the diatoms: V. Morphological and cytological support for the major clades and a taxonomic revision. Phycologia 43: 245–270.
  • Nelson, D.M., Tréguer, P., Brzezinski, M.A., Leynaert, A. & Quéguiner, B. (1995). Production and dissolution of biogenic silica in the ocean: revised global estimates, comparison with regional data and relationship to biogenic sedimentation. Global Biochemical Cycles 9: 359-372.
  • Pascher, A. (1914). Über Flagellaten und Algen. Berichte der Deutschen Botanischen Gesellschaft 32: 136–160.
  • Pascher, A. (1921). Über die Übereinstimmung zwischen den Diatomeen Heterokonten und Chrysomonaden. Berichte der Deutschen Botanischen Gesellschaft 39: 236–248.
  • Round, F.E. & Crawford, R.M. (1981). The lines of evolution of the Bacillariophyta. I. Origin. Proceedings of the Royal Society of London, B 211: 237–260.
  • Schmid, A.-M.M. & Crawford, R.M. (2001). Ellerbeckia arenaria (Bacillariophyceae): formation of auxospores and initial cells. European Journal of Phycology 36: 307–320.
  • Simonsen, R. (1979). The diatom system: ideas on phylogeny. Bacillaria 2: 9–71.
  • Williams, D.M. & Kociolek, J.P. (2007). Pursuit of a natural classification of diatoms: history, monophyly and the rejection of paraphyletic taxa. European Journal of Phycology 42: 313-319.

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