Cyanobacteria are phototrophic organisms with great ecological and economical importance.Species of the genus Microcystis are known for their potential ability to synthesize toxins, notably microcystins.There is a growing interest in the evaluation of oxidative stress in relation to the impact of global climate change on natural ecosystems in different trophic levels. Several studies have focused on the analysis of organismal responses to mitigate the damage by controlling the generation of reactive oxygen species. Variations in environmentalfactors caused by climate change generate a situation of oxidative damage in Microcystis aeruginosa as a direct or indirect consequence. In this study we evaluate the effects of ultraviolet radiation an...
In order to get insight into the impacts of UVC/H2O2 on Microcystis aeruginosa, physiological and mo...
For Microcystis aeruginosa PCC 7806, temperature decreases from 26 °C to 19 °C double the microcysti...
Cyanobacteria, the only known prokaryotes that perform oxygen-evolving photosynthesis, are receiving...
Cyanobacteria are phototrophic organisms with great ecological and economical importance. Species o...
Cyanobacteria are phototrophic organisms with great ecological and economical importance.Species of ...
The aim of this study was to evaluate the effects of short-term (hours) exposure to solar UV radiati...
Microcystis are known for their potential ability to synthesize toxins, mainly microcystins (MCs). I...
Microcystis are known for their potential ability to synthesize toxins, mainly microcystins (MCs). I...
The combined efects of increased temperature and solar ultraviolet radiation (UVR, 280–400 nm) on M....
Solar UVA radiation is one of the main environmental stress factors for Pseudomonas aeruginosa. Expo...
M. aeruginosa has strong adaptation capability in the eutrophic UV-radiated waters and P enrichment ...
Environmental climate conditions could lead to an increasing global occurrence of microorganism bloo...
Due to the stratospheric ozone depletion, several organisms will become exposed to increased biologi...
Due to the stratospheric ozone depletion, several organisms will become exposed to increased biologi...
Changes in fatty acid (FA) composition can mean a mechanism of acclimation of Cyanobacteria to clima...
In order to get insight into the impacts of UVC/H2O2 on Microcystis aeruginosa, physiological and mo...
For Microcystis aeruginosa PCC 7806, temperature decreases from 26 °C to 19 °C double the microcysti...
Cyanobacteria, the only known prokaryotes that perform oxygen-evolving photosynthesis, are receiving...
Cyanobacteria are phototrophic organisms with great ecological and economical importance. Species o...
Cyanobacteria are phototrophic organisms with great ecological and economical importance.Species of ...
The aim of this study was to evaluate the effects of short-term (hours) exposure to solar UV radiati...
Microcystis are known for their potential ability to synthesize toxins, mainly microcystins (MCs). I...
Microcystis are known for their potential ability to synthesize toxins, mainly microcystins (MCs). I...
The combined efects of increased temperature and solar ultraviolet radiation (UVR, 280–400 nm) on M....
Solar UVA radiation is one of the main environmental stress factors for Pseudomonas aeruginosa. Expo...
M. aeruginosa has strong adaptation capability in the eutrophic UV-radiated waters and P enrichment ...
Environmental climate conditions could lead to an increasing global occurrence of microorganism bloo...
Due to the stratospheric ozone depletion, several organisms will become exposed to increased biologi...
Due to the stratospheric ozone depletion, several organisms will become exposed to increased biologi...
Changes in fatty acid (FA) composition can mean a mechanism of acclimation of Cyanobacteria to clima...
In order to get insight into the impacts of UVC/H2O2 on Microcystis aeruginosa, physiological and mo...
For Microcystis aeruginosa PCC 7806, temperature decreases from 26 °C to 19 °C double the microcysti...
Cyanobacteria, the only known prokaryotes that perform oxygen-evolving photosynthesis, are receiving...