Harmful cyanobacteria producing toxic microcystins are a major concern in water quality management. In recent years, hydrogen peroxide (H2O2) has been successfully applied to suppress cyanobacterial blooms in lakes. Physiological studies, however, indicate that microcystin protects cyanobacteria against oxidative stress, suggesting that H2O2 addition might provide a selective advantage for microcystin-producing (toxic) strains. This study compares the response of a toxic Microcystis strain, its non-toxic mutant, and a naturally non-toxic Microcystis strain to H2O2 addition representative of lake treatments. All three strains initially ceased growth upon H2O2 addition. Contrary to expectation, the non-toxic strain and non-toxic mutant rapidl...
Hydrogen peroxide (HP) is a feasible algicide to control cyanobacterial blooms, but its application ...
Oxidation processes can provide an effective barrier to eliminate cyanotoxins by damaging cyanobacte...
Hydrogen peroxide (HP) is a feasible algicide to control cyanobacterial blooms, but its application ...
The increasing incidence of cyanobacterial blooms with their associated production of cyanotoxins le...
Hydrogen peroxide (H2O2) can be used as an emergency method to selectively suppress cyanobacterial b...
Oceanographic studies have shown that heterotrophic bacteria can protect marine cyanobacteria agains...
Microcystis blooms have become a ubiquitous phenomenon in freshwater ecosystems, and the size of Mic...
Microcystis blooms have become a ubiquitous phenomenon in freshwater ecosystems, and the size of Mic...
Under some conditions the growth of toxic cyanobacteria must be controlled by treatment with algicid...
Although harmful cyanobacteria form a major threat to water quality, few methods exist for the rapid...
A Chrysophyceae species, Poterioochromonas sp., was isolated from Microcystis cultures. This species...
Cyanobacterial blooms are expected to increase, and the toxins they produce threaten human health an...
Cyanobacterial blooms are expected to increase, and the toxins they produce threaten human health an...
Applying low concentrations of hydrogen peroxide (H2O2 ) to lakes is an emerging method to mitigate ...
Cyanobacterial blooms are observed when high cell densities occur and are often dangerous to human a...
Hydrogen peroxide (HP) is a feasible algicide to control cyanobacterial blooms, but its application ...
Oxidation processes can provide an effective barrier to eliminate cyanotoxins by damaging cyanobacte...
Hydrogen peroxide (HP) is a feasible algicide to control cyanobacterial blooms, but its application ...
The increasing incidence of cyanobacterial blooms with their associated production of cyanotoxins le...
Hydrogen peroxide (H2O2) can be used as an emergency method to selectively suppress cyanobacterial b...
Oceanographic studies have shown that heterotrophic bacteria can protect marine cyanobacteria agains...
Microcystis blooms have become a ubiquitous phenomenon in freshwater ecosystems, and the size of Mic...
Microcystis blooms have become a ubiquitous phenomenon in freshwater ecosystems, and the size of Mic...
Under some conditions the growth of toxic cyanobacteria must be controlled by treatment with algicid...
Although harmful cyanobacteria form a major threat to water quality, few methods exist for the rapid...
A Chrysophyceae species, Poterioochromonas sp., was isolated from Microcystis cultures. This species...
Cyanobacterial blooms are expected to increase, and the toxins they produce threaten human health an...
Cyanobacterial blooms are expected to increase, and the toxins they produce threaten human health an...
Applying low concentrations of hydrogen peroxide (H2O2 ) to lakes is an emerging method to mitigate ...
Cyanobacterial blooms are observed when high cell densities occur and are often dangerous to human a...
Hydrogen peroxide (HP) is a feasible algicide to control cyanobacterial blooms, but its application ...
Oxidation processes can provide an effective barrier to eliminate cyanotoxins by damaging cyanobacte...
Hydrogen peroxide (HP) is a feasible algicide to control cyanobacterial blooms, but its application ...