It has been suggested that climate change may promote the outbreaks of diseases in the sea through altering the host susceptibility, the pathogen virulence, and the host-pathogen interaction. However, the impacts of ocean acidification (OA) on the pathogen components of bacterial community and the host-pathogen interaction of marine bivalves are still poorly understood. Therefore, 16S rRNA high-throughput sequencing and host-pathogen interaction analysis between blood clam (Tegillarca granosa) and Vibrio harveyi were conducted in the present study to gain a better understanding of the ecological impacts of ocean acidification. The results obtained revealed a significant impact of ocean acidification on the composition of microbial community...
Summary: Microorganisms form symbiotic partnerships with a diverse range of marine organisms and can...
An enormous amount of anthropogenic carbon dioxide (CO2) has been dissolved into the ocean, leading ...
Ocean warming and ocean acidification (OA) are direct consequences of climate change and affect cora...
Ocean acidification (OA) can shift the ecological balance between interacting organisms. In this stu...
The impact of pCO2 driven ocean acidification on marine bivalve immunity remains poorly understood. ...
Thesis (Master's)--University of Washington, 2012Vibrio tubiashii (Vt) is a causative agent of vibri...
Oceanic uptake of CO2 from the atmosphere has significantly reduced surface seawater pH and altered ...
Abstract Host‐associated microbial communities are fundamental to host physiology, yet it is unclear...
Ocean acidification (OA) and pathogenic diseases pose a considerable threat to key species of marine...
Changes in marine environments, including pH changes, have been correlated to alterations in the phy...
Seawater pH and carbonate saturation are predicted to decrease dramatically by the end of the centur...
The wellbeing of marine organisms is connected to their microbiome. Oysters are a vital food source ...
An enormous amount of anthropogenic carbon dioxide (CO2) has been dissolved into the ocean, leading ...
Oceanic uptake of atmospheric CO2 is reducing seawater pH and shifting carbonate chemistry within, a...
In recent years, the oyster Crassostrea gigas has been subject to recurrent outbreaks of vibriosis. ...
Summary: Microorganisms form symbiotic partnerships with a diverse range of marine organisms and can...
An enormous amount of anthropogenic carbon dioxide (CO2) has been dissolved into the ocean, leading ...
Ocean warming and ocean acidification (OA) are direct consequences of climate change and affect cora...
Ocean acidification (OA) can shift the ecological balance between interacting organisms. In this stu...
The impact of pCO2 driven ocean acidification on marine bivalve immunity remains poorly understood. ...
Thesis (Master's)--University of Washington, 2012Vibrio tubiashii (Vt) is a causative agent of vibri...
Oceanic uptake of CO2 from the atmosphere has significantly reduced surface seawater pH and altered ...
Abstract Host‐associated microbial communities are fundamental to host physiology, yet it is unclear...
Ocean acidification (OA) and pathogenic diseases pose a considerable threat to key species of marine...
Changes in marine environments, including pH changes, have been correlated to alterations in the phy...
Seawater pH and carbonate saturation are predicted to decrease dramatically by the end of the centur...
The wellbeing of marine organisms is connected to their microbiome. Oysters are a vital food source ...
An enormous amount of anthropogenic carbon dioxide (CO2) has been dissolved into the ocean, leading ...
Oceanic uptake of atmospheric CO2 is reducing seawater pH and shifting carbonate chemistry within, a...
In recent years, the oyster Crassostrea gigas has been subject to recurrent outbreaks of vibriosis. ...
Summary: Microorganisms form symbiotic partnerships with a diverse range of marine organisms and can...
An enormous amount of anthropogenic carbon dioxide (CO2) has been dissolved into the ocean, leading ...
Ocean warming and ocean acidification (OA) are direct consequences of climate change and affect cora...