Abstract: Much of the research effort focused on the impacts of elevated CO2 on marine algae but very little work was done on freshwater algae, or on freshwater algal viruses. In this paper, we studied the impacts of elevated CO2 on the infection of a freshwater cyanobacterium (wild Leptolyngbya sp.) by cyanophage PP that have a wide distribution in China. In a 12-month experiment, logarithmic-phase host cells were infected with cyanophage PP at 370 or 740 µatm pCO2 concentrations; the burst size, lysing cycle and proportion of adsorption were measured. The results showed that the proportion of adsorption, and burst sizes of cyanophage PP increased significantly with elevated CO2 concentrations, and the proportion of adsorption increased gr...
Climate change is likely to stimulate the development of harmful cyanobacterial blooms in eutrophic ...
Climate change is likely to stimulate the development of harmful cyanobacterial blooms in eutrophic ...
In order to investigate the possible impacts of increased atmospheric CO2 levels on algal growth and...
Intensification of human activities has led to changes in the availabilities of CO2 and nutrients in...
BACKGROUND: Rising CO2 concentrations may have large effects on aquatic microorganisms. In this stud...
Intensification of human activities has led to changes in the availabilities of CO2 and nutrients in...
Intensification of human activities has led to changes in the availabilities of CO2 and nutrients in...
Intensification of human activities has led to changes in the availabilities of CO2 and nutrients in...
Rising CO2 concentrations may have large effects on aquatic microorganisms. In this study, we invest...
Intensification of human activities has led to changes in the availabilities of CO2 and nutrients in...
The waters of our planet are full with cyanobacteria that use CO₂, water and light for photosynthesi...
Elevated pCO2 and warming are generally expected to influence cyanobacterial growth, and may promote...
Rising atmospheric CO2 concentrations are predicted to have a significant impact on global phytoplan...
Rising atmospheric carbon dioxide (CO2) may stimulate the proliferation of cyanobacteria. To investi...
Climate change is likely to stimulate the development of harmful cyanobacterial blooms in eutrophic ...
Climate change is likely to stimulate the development of harmful cyanobacterial blooms in eutrophic ...
Climate change is likely to stimulate the development of harmful cyanobacterial blooms in eutrophic ...
In order to investigate the possible impacts of increased atmospheric CO2 levels on algal growth and...
Intensification of human activities has led to changes in the availabilities of CO2 and nutrients in...
BACKGROUND: Rising CO2 concentrations may have large effects on aquatic microorganisms. In this stud...
Intensification of human activities has led to changes in the availabilities of CO2 and nutrients in...
Intensification of human activities has led to changes in the availabilities of CO2 and nutrients in...
Intensification of human activities has led to changes in the availabilities of CO2 and nutrients in...
Rising CO2 concentrations may have large effects on aquatic microorganisms. In this study, we invest...
Intensification of human activities has led to changes in the availabilities of CO2 and nutrients in...
The waters of our planet are full with cyanobacteria that use CO₂, water and light for photosynthesi...
Elevated pCO2 and warming are generally expected to influence cyanobacterial growth, and may promote...
Rising atmospheric CO2 concentrations are predicted to have a significant impact on global phytoplan...
Rising atmospheric carbon dioxide (CO2) may stimulate the proliferation of cyanobacteria. To investi...
Climate change is likely to stimulate the development of harmful cyanobacterial blooms in eutrophic ...
Climate change is likely to stimulate the development of harmful cyanobacterial blooms in eutrophic ...
Climate change is likely to stimulate the development of harmful cyanobacterial blooms in eutrophic ...
In order to investigate the possible impacts of increased atmospheric CO2 levels on algal growth and...