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/content/papers/10.3997/2214-4609.202333197
2023-09-10
2026-03-07
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References

  1. Bauersachs, T., Talbot, H.M., Sidgwick, F., Sivonen, K., Schwark, L.Lipid biomarker signatures as tracers for harmful cyanobacterial blooms in the Baltic Sea.PLoS ONE12, e0186360
    [Google Scholar]
  2. Bauersachs, T., Miller, S.R., Gugger, M., Mudimu, O., Friedl, T., Schwark, L., 2019. Heterocyst glycolipids indicate polyphyly of stigonematalean cyanobacteria.Phytochemistry166, 112059
    [Google Scholar]
  3. Meier, H.E.M., Dieterich, C., Gröger, M., 2021. Natural variability is a large source of uncertainty in future projections of hypoxia in the Baltic Sea.Communications Earth & Environment2, 50
    [Google Scholar]
  4. Wörmer, L., Cirés, S., Veláquez, D., Quesada, A., Hinrichs, K.U., 2012. Cyanobacterial heterocyst glycolipids in cultures and environmental samples: Diversity and biomarker potential.Limnology and Oceanography57, 1775–1788
    [Google Scholar]
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