Sebastian Teichert

Dr. Sebastian Teichert
Diplom-Geologe Univ.


Herzlich willkommen auf meiner Website mit Informationen über meine Forschungsinteressen sowie meine wissenschaftlichen Publikationen.

Für weitere Details empfehle ich Ihnen den Besuch meiner Mitarbeiterseite am GeoZentrum Nordbayern sowie meines Profils bei ResearchGate.

Forschungsinteressen
  • Coralline Rotalgen
  • Arktische Biodiversität
  • Ökosystem-Ingenieure

Publikationen (peer reviewed)

  • Teichert S., Voigt N., Wisshak M. (2020) Do skeletal Mg/Ca ratios of Arctic rhodoliths reflect atmospheric CO2 concentrations?
    Polar Biology 43: 2059-2069
    DOI: 10.1007/s00300-020-02767-3
  • Teichert S., Steinbauer M., Kießling W. (2020) A possible link between coral reef success, crustose coralline algae and the evolution of herbivory.
    Scientific Reports 10: 17748     (open access)
    DOI: 10.1038/s41598-020-73900-9
  • Ragazzola F., Kolzenburg R., Zekonyte J., Teichert S., Jiang C., Žulevíc A., Caragnano A., Falace A (2020) Structural and elemental analysis of the freshwater, low-Mg calcite coralline alga Pneophyllum cetinaensis.
    Plants 9: 1089     (open access)
    DOI: 10.3390/plants9091089
  • Schnier J., Ahlrichs W., Gruhl A., Schulbert C., Teichert S., Kieneke A. (2019) Ultrastructure of the epidermal gland system of Tetranchyroderma suecicum Boaden, 1960 (Gastrotricha: Macrodasyida) indicates a defensive function of its exudate.
    Zoomorphology 138: 443-462     (Winner of the Reinhard Rieger-Award)
    DOI: 10.1007/s00435-019-00462-4    
  • Teichert S., Woelkerling W., Munnecke A. (2019) Coralline red algae from the Silurian of Gotland indicate that the order Corallinales (Corallinophycidae, Rhodophyta) is much older than previously thought.
    Palaeontology 62: 599-613
    DOI:10.1111/pala.12418
  • Teichert S., Nützel A. (2015) Early Jurassic anoxia triggered the evolution of the oldest holoplanktonic gastropod Coelodiscus minutus by means of heterochrony.
    Acta Palaeontologica Polonica 60(2): 269-276
    DOI: 10.4202/app.00145.2014     (Editor's choice, open access)
  • Teichert S. (2014) Hollow rhodoliths increase Svalbard's shelf biodiversity.
    Scientific Reports 4: 6972     (open access)
    DOI:10.1038/srep06872
  • Teichert S., Freiwald A. (2014) Polar coralline algal CaCO3-production rates correspond to intensity and duration of the solar radiation.
    Biogeosciences 11(3): 833-842     (open access)
    DOI:10.5194/bg-11-833-2014
  • Teichert S., Woelkerling W., Rüggeberg A., Wisshak M., Piepenburg D., Meyerhöfer M., Form A., Freiwald A. (2014, online May 2013) Arctic rhodolith beds and their environmental controls (Spitsbergen, Norway).
    Facies 60(1): 15-37
    DOI: 10.1007/s10347-013-0372-2
  • Teichert S., Woelkerling W., Rüggeberg A., Wisshak M., Piepenburg D., Meyerhöfer M., Form A., Büdenebender J., Freiwald A. (2012) Rhodolith beds (Corallinales, Rhodophyta) and their physical and biological environment at 80°31'N in Nordkappbukta (Nordaustlandet, Svalbard Archipelago, Norway).
    Phycologia 51(4): 371-390
    DOI: 10.2216/11-76.1



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