It is considered self-evident that chemical interactions are a component of competition in terrestrial systems, but they are largely unknown in aquatic systems. In this review, we propose that chemical interactions, specifically allelopathy, are an important part of phytoplankton competition. Allelopathy, as defined here, applies only to the inhibitory effects of secondary metabolites produced by one species on the growth or physiological function of another phytoplankton species. A number of approaches are used to study allelopathy, but there is no standard methodology available. One of the methods used is cross-culturing, in which the cell-free filtrate of a donor alga is added to the medium of the target species. Another is to study the ...
Phytoplankton produce allelochemicals; excreted chemical substances that are affecting other microor...
Toxin-producing phytoplankton species may compensate for competitive disadvantages by secreting chem...
Submerged aquatic macrophytes are important in shallow aquatic ecosystems because they stabilize the...
Aquatic macrophytes can excrete chemical substances into their enviroment and these compounds may in...
Aquatic macrophytes can excrete chemical substances into their enviroment and these compounds may in...
Item does not contain fulltextAquatic macrophytes can excrete chemical substances into their envirom...
ABSTRACT: Allelopathy in aquatic environments may provide a competitive advantage to angiosperms, al...
Allelopathy, here defined as biochemical interactions between aquatic primary producers, has always ...
Allelopathy, here defined as biochemical interactions between aquatic primary producers, has always ...
Photosynthetic organisms in littoral and benthic habitats are in general situated in close proximity...
Photosynthetic organisms in littoral and benthic habitats are in general situated in close proximity...
Allelopathic effects are one of the factors potentially influencing the succession ofphytoplankton c...
Phytoplankton produce allelochemicals; excreted chemical substances that are affecting other microor...
The allelopathic activity of the aquatic macrophyte, Stratiotes aloides, was determined with laborat...
Submerged aquatic macrophytes are important in shallow aquatic ecosystems because they stabilize the...
Phytoplankton produce allelochemicals; excreted chemical substances that are affecting other microor...
Toxin-producing phytoplankton species may compensate for competitive disadvantages by secreting chem...
Submerged aquatic macrophytes are important in shallow aquatic ecosystems because they stabilize the...
Aquatic macrophytes can excrete chemical substances into their enviroment and these compounds may in...
Aquatic macrophytes can excrete chemical substances into their enviroment and these compounds may in...
Item does not contain fulltextAquatic macrophytes can excrete chemical substances into their envirom...
ABSTRACT: Allelopathy in aquatic environments may provide a competitive advantage to angiosperms, al...
Allelopathy, here defined as biochemical interactions between aquatic primary producers, has always ...
Allelopathy, here defined as biochemical interactions between aquatic primary producers, has always ...
Photosynthetic organisms in littoral and benthic habitats are in general situated in close proximity...
Photosynthetic organisms in littoral and benthic habitats are in general situated in close proximity...
Allelopathic effects are one of the factors potentially influencing the succession ofphytoplankton c...
Phytoplankton produce allelochemicals; excreted chemical substances that are affecting other microor...
The allelopathic activity of the aquatic macrophyte, Stratiotes aloides, was determined with laborat...
Submerged aquatic macrophytes are important in shallow aquatic ecosystems because they stabilize the...
Phytoplankton produce allelochemicals; excreted chemical substances that are affecting other microor...
Toxin-producing phytoplankton species may compensate for competitive disadvantages by secreting chem...
Submerged aquatic macrophytes are important in shallow aquatic ecosystems because they stabilize the...