Increase in the production of allelopathic substances by Prymnesium parvum cells grown under N- or P-deficient conditions

Author:

Granéli Edna,Johansson Niclas

Publisher

Elsevier BV

Subject

Plant Science,Aquatic Science

Reference37 articles.

1. The salinity tolerance of 46 marine phytoplankton isolates;Brand;Est. Coast. Shelf Sci.,1984

2. Algal toxins;Collins;Microbiol. Rev.,1978

3. Edvardsen, B., Paasche, E., 1998. Bloom dynamics and physiology of Prymnesium and Chrysochromulina. In: Anderson, D.M., Cembella, A.D., Hallegraeff, G.M. (Eds.), The Physiological Ecology of Harmful Algal Blooms. Springer Verlag, Heidelberg, pp. 193–208.

4. Einhellig, F.A., 1995. Allelopathy: current status and future goals. In: Derjit, Dakshini, K.M.M., Einhellig, F.A. (Eds.), Allelopathy: Organisms, Processes, and Applications, vol. 582, ACS Symposium Series, pp. 1–24.

5. Phosphorus limitation and not light controls the extracellular release of allelopathic compounds by Trichormus doliolum (Cyanobacteria);von Elert;Limnol. Oceanogr.,1977

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