There is increasing concern about the effects of ocean acidification on marine biogeochemical and ecological processes and the organisms that drive them, including marine bacteria. Here, we examine the effects of elevated CO2 on the bacterioplankton community during a mesocosm experiment using an artificial phytoplankton community in subtropical, eutrophic coastal waters of Xiamen, southern China. Through sequencing the bacterial 16S rRNA gene V3-V4 region, we found that the bacterioplankton community in this high-nutrient coastal environment was relatively resilient to changes in seawater carbonate chemistry. Based on comparative ecological network analysis, we found that elevated CO2 hardly altered the network structure of high-abundance ...
By the end of the 21st century, mean sea surface temperatures are expected to increase 4°C, while at...
The predicted rise in anthropogenic CO2 emissions will increase CO2 concentrations and decrease seaw...
The effects of ocean acidification on ecosystems remain poorly understood, because it is difficult t...
There is increasing concern about the effects of ocean acidification on marine biogeochemical and e...
Ocean acidification (OA), caused by seawater CO2 uptake, has significant impacts on marine calcifyin...
By the end of the 21st century, mean sea surface temperatures are expected to increase 4˚C, while at...
Bacterioplankton are keystone organisms in marine ecosystems. They are important for element cycles,...
Bacterioplankton are keystone organisms in marine ecosystems. They are important for element cycles,...
Ocean acidification (OA), a consequence of increased global carbon dioxide (CO2) emissions, is consi...
Bacterioplankton are keystone organisms in marine ecosystems. They are important for element cycles,...
Bacterioplankton are keystone organisms in marine ecosystems. They are important for element cycles,...
Bacterioplankton are keystone organisms in marine ecosystems. They are important for element cycles,...
Bacterioplankton are keystone organisms in marine ecosystems. They are important for element cycles,...
Human-induced ocean acidification impacts marine life. Marine bacteria are major drivers of biogeoch...
By the end of the 21st century, mean sea surface temperatures are expected to increase 4°C, while at...
By the end of the 21st century, mean sea surface temperatures are expected to increase 4°C, while at...
The predicted rise in anthropogenic CO2 emissions will increase CO2 concentrations and decrease seaw...
The effects of ocean acidification on ecosystems remain poorly understood, because it is difficult t...
There is increasing concern about the effects of ocean acidification on marine biogeochemical and e...
Ocean acidification (OA), caused by seawater CO2 uptake, has significant impacts on marine calcifyin...
By the end of the 21st century, mean sea surface temperatures are expected to increase 4˚C, while at...
Bacterioplankton are keystone organisms in marine ecosystems. They are important for element cycles,...
Bacterioplankton are keystone organisms in marine ecosystems. They are important for element cycles,...
Ocean acidification (OA), a consequence of increased global carbon dioxide (CO2) emissions, is consi...
Bacterioplankton are keystone organisms in marine ecosystems. They are important for element cycles,...
Bacterioplankton are keystone organisms in marine ecosystems. They are important for element cycles,...
Bacterioplankton are keystone organisms in marine ecosystems. They are important for element cycles,...
Bacterioplankton are keystone organisms in marine ecosystems. They are important for element cycles,...
Human-induced ocean acidification impacts marine life. Marine bacteria are major drivers of biogeoch...
By the end of the 21st century, mean sea surface temperatures are expected to increase 4°C, while at...
By the end of the 21st century, mean sea surface temperatures are expected to increase 4°C, while at...
The predicted rise in anthropogenic CO2 emissions will increase CO2 concentrations and decrease seaw...
The effects of ocean acidification on ecosystems remain poorly understood, because it is difficult t...