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  • Other Sources  (3)
  • American Chemical Society (ACS)
  • Nature Publishing Group (NPG)
  • Oxford Univ. Press
  • 1980-1984  (3)
  • 1
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    Oxford Univ. Press
    In:  Journal of Plankton Research, 4 . pp. 137-142.
    Publication Date: 2018-05-30
    Description: Rhodomonas minuta v. nannoplanctica Skuja and Rhodomonas lens Pascher et Ruttner were found to perform vertical migrations. From sunrise until afternoon they adjust their vertical position to an optimum light-intensity, which is for R. minuta 2.5 times higher than for R. lens. The spatial separation of both species is increasing throughout the whole light phase. The species distinction between them has been questioned recently, but can be maintained not only because of morphological differences but also because they are occupying different niches within the plankton community.
    Type: Article , PeerReviewed
    Format: text
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  • 2
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    Oxford Univ. Press
    In:  Journal of Plankton Research, 6 (2). pp. 239-247.
    Publication Date: 2018-05-30
    Description: Changes of algal biomass, as carbon, cell numbers and volume were determined for phytoplankton of Lake Constance suspended in situ in 2 1 glass bottles. Phytoplankton placed at the 6% surface penetrating light level (photosynthetically available radiation) were close to the compensation depth for growth estimated as total paniculate carbon and total cell volumes. Cell counts of individual algal species however, showed appreciable growth of diatoms offset by the decline of flagellates. Bottles suspended at two shallower depths in a separate experiment showed some growth of all species and indicated a vertical niche separation of growth of Rhodomonas minuta Skuja and R. lens Dascher and Ruttner in accordance with their vertical distribution.
    Type: Article , PeerReviewed
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  • 3
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    Oxford Univ. Press
    In:  Journal of Plankton Research, 6 (1). pp. 1-14.
    Publication Date: 2018-05-30
    Description: Sedimentation of nine phytoplankton species was studied in Lake Constance with the aid of sedimentation traps exposed at six different depths from 20 to 120 m. The study examines sedimentary fluxes at all depths, temporal variation of sinking velocities into the uppermost trap, annual averages of the sinking velocities at all depths and survival of algae during the sedimentation process. In spite of high intraspecific temporal variability of the sinking velocity there is a clear hierarchy from the pennate and the filamentous centric diatoms sinking the fastest to the Cryptomonads, nearly not at all affected by sedimentary losses. Temporal variability of the sinking velocity within species seems to be related to the ‘physiological state’, the highest velocities always occurring during stationary or decline phases of the population development. An analysis of the role of sedimentary losses in the population dynamics of Asterionella formosa, Fragilaria crotonensis, Stephanodiscus binderaniss, Melosira granulata reveals positive correlations between the sedimentation rate and cell mortality.
    Type: Article , PeerReviewed
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