» Articles » PMID: 19863381

Allelopathy in Freshwater Cyanobacteria

Overview
Publisher Informa Healthcare
Specialty Microbiology
Date 2009 Oct 30
PMID 19863381
Citations 40
Authors
Affiliations
Soon will be listed here.
Abstract

Freshwater cyanobacteria produce several bioactive secondary metabolites with diverse chemical structure, which may achieve high concentrations in the aquatic medium when cyanobacterial blooms occur. Some of the compounds released by cyanobacteria have allelopathic properties, influencing the biological processes of other phytoplankton or aquatic plants. These kinds of interactions are more easily detectable under laboratory studies; however their ecological relevance is often debated. Recent research has discovered new allelopathic properties in some cyanobacteria species, new allelochemicals and elucidated some of the allelopathic mechanisms. Ecosystem-level approaches have shed some light on the factors that influence allelopathic interactions, as well as how cyanobacteria may be able to modulate their surrounding environment by means of allelochemical release. Nevertheless, the role of allelopathy in cyanobacteria ecology is still not well understood, and its clarification should benefit from carefully designed field studies, chemical characterization of allelochemicals and new methodological approaches at the "omics" level.

Citing Articles

The Cyanobacterial Oxadiazine Nocuolin A Shows Broad-Spectrum Toxicity Against Protozoans and the Nematode C. elegans.

Vieira A, Camacho F, Sousa M, Luelmo S, Santarem N, Cordeiro-da-Silva A Microb Ecol. 2025; 88(1):9.

PMID: 40035794 PMC: 11880066. DOI: 10.1007/s00248-025-02507-2.


Screening of Lipid-Reducing Activity and Cytotoxicity of the Exometabolome from Cyanobacteria.

Luz R, Cordeiro R, Goncalves V, Vasconcelos V, Urbatzka R Mar Drugs. 2024; 22(9).

PMID: 39330293 PMC: 11433081. DOI: 10.3390/md22090412.


Two cyanobacterial species exhibit stress responses when grown together in visible light or far-red light.

Nien T, Chan T, Li Y, Liu T, Shiau Y, Ho M mSphere. 2024; 9(9):e0025124.

PMID: 39120135 PMC: 11423583. DOI: 10.1128/msphere.00251-24.


Effects of Algicidal Macrophyte Metabolites on Cyanobacteria, Microcystins, Other Plankton, and Fish in Microcosms.

Kurbatova S, Berezina N, Sharov A, Chernova E, Kurashov E, Krylova Y Toxins (Basel). 2023; 15(9).

PMID: 37755955 PMC: 10535574. DOI: 10.3390/toxins15090529.


Changes in the morphology and cell ultrastructure of a microalgal community exposed to a commercial glyphosate formulation and a toxigenic cyanobacterium.

Hernandez-Garcia C, Martinez-Jeronimo F Front Microbiol. 2023; 14:1195776.

PMID: 37426024 PMC: 10324582. DOI: 10.3389/fmicb.2023.1195776.