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  • 1
    Publication Date: 2018-08-15
    Description: Observations of the dinoflagellate Dinophysis norvegica in the Baltic Sea during the summers of 1991–1993 indicate that maximal abundances (c 40–150 × 103 cells l-1) were found at the thermocline, typically at 12°C. Maximum densities were usually between 12 and 15 m where 2·9% and 1·5% of surface photon irradiances, respectively, were measured. No diel vertical migration was observed, and cell densities in the mixed layer were always low. Photosynthesis versus irradiance measurements with an oxygen electrode indicated that these populations had a P max of 2·47 [coefficient of variation (CV) 7·3%] and 3·4 (CV 4·7%) mg O2 mg Chl a -1 h-1, and compensation values of photon irradiance were 16·5 and 83 μmol m-2 s-1 in 1992 and 1993, respectively. Both oxygen electrode and 14C light/dark bottle measurements indicated that D. norvegica had very little net photosynthesis at the depths where it was most abundant; it would have had about 2·5-fold greater capacity at photon irradiances present closer to the surface. Calculated carbon doubling times via photosynthesis averaged 4–11 months. There was no observable diel rhythym of DNA synthesis, suggesting that either D. norvegica was not dividing synchronously (asynchronous division is common in heterotrophs) or not dividing at all. Electron microscopy did not reveal the presence of food vacuoles, but feeding and digestion could have been extracellular. The data suggest that this species is a mixotroph which received its primary nutrition via heterotrophic means during our observation periods in the summers of 1991–1993.
    Type: Article , PeerReviewed
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  • 2
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    Taylor & Francis
    In:  European Journal of Phycology, 30 (2). pp. 87-94.
    Publication Date: 2018-08-15
    Description: The mean pressures required to collapse gas vesicles in turgid cells of cyanobacteria from the Baltic Sea were 0·91 MPa (9·1 bar) in Aphanizomenon flos-aquae, 0·83 MPa in Nodularia sp. collected from the main deep basins and 0·34 MPa in Nodularia from shallower coastal regions. The gas vesicles were strong enough to withstand the depth of winter mixing, down to the permanent halocline (60 m in the Bornholm Sea, 90 m in the Eastern Gotland Sea) or to the sea bottom (30 m or less in the shallow Arkona Sea and Mecklenburg Bight). The cyanobacteria had low cell turgor pressures, within the range 0·08–0·18 MPa. The colonies were highly buoyant: the Aphanizomenon colonies floated up at a mean velocity of 22 m per day and the Nodularia colonies at 36 m per day. The colonies remained floating when up to half of the gas vesicles had been collapsed. In summer the cyanobacteria were mostly restricted to the water above the thermocline and in calm conditions their concentration increased towards the top of the water column. A series of colony concentration profiles indicated that, following a deep mixing event, the population of colonies moved upward with a net velocity of 22 m per day, similar to the colony floating velocity. This demonstrated that the buoyancy provided by gas vesicles would give a selective advantage to populations of cyanobacteria by enabling them to float into the higher irradiance of the near-surface water.
    Type: Article , PeerReviewed
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  • 3
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    In:  (PhD/ Doctoral thesis), Christian-Albrechts-Universität Kiel, Kiel, Germany, 56 pp
    Publication Date: 2018-08-15
    Type: Thesis , NonPeerReviewed
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  • 4
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    Institut für Meereskunde Kiel
    In:  Institut für Meereskunde Kiel, Kiel, Germany, 4 pp.
    Publication Date: 2018-08-15
    Type: Report , NonPeerReviewed
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  • 5
    Publication Date: 2022-04-07
    Description: Miesmuscheln gleicher Anfangslänge vom Kieler Olympiahafen wurden 1961 in der Kieler Förde und im Nord-Ostsee-Kanal ausgesetzt und Untersuchungen über ihr Wachstum und dessen Abhängigkeit vom Nahrungsangebot und anderen Umweltfaktoren durchgeführt. Die Aufnahme und Verdauung der Nahrung, die Bedeutung von Nahrungsfaktoren für das Wachstum und die Beziehung zwischen abfiltrierter organischer Substanz und Zunahme der Weichteilgewichte wird diskutiert. Unter gleichen Aktivitätsbedingungen zeigen Muscheln bei großem Nahrungsangebot ein schnelles Wachstum und bilden niedrige Schalen- und hohe Weichteilgewichte aus (Innenförde), bei kleinem Nahrungsangebot erfolgt das Wachstum langsam und ist durch hohe Schalen- und niedrige Weichteilgewichte gekennzeichnet (Außenförde). Besonders wichtig für die Muschelernährung ist Nannoplankton und „junger" (noch wenig zersetzter) organischer Detritus. Das gute Sommerwachstum an den Untersuchungsorten ist Ausdruck der bei steigender Wassertemperatur erhöhten Aktivität der Tiere. Im Herbst finden sich bei Muscheln gleicher Länge größere Schalengewichte als im Frühjahr. Das höchste Weichteilgewicht besitzen Miesmuscheln vor Beginn der Laichzeit im Juni. Im Sommer und Herbst wird während der Untersuchungszeit 20-30% der abfiltrierten organischen Substanz als Weichteilgewicht festgelegt (Berechnungen unter Verwendung der Filtrationsraten von THEEDE 1963). Diese Werte erniedrigen sich bei großer Häufigkeit von stark zersetztem organischem Detritus, wie er im Frühjahr an den Untersuchungsorten auftritt.
    Type: Article , NonPeerReviewed
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  • 6
    Publication Date: 2022-08-04
    Type: Article , PeerReviewed
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  • 7
    Publication Date: 2023-09-19
    Type: Report , NonPeerReviewed
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