Seagrass meadows provide valuable ecosystem benefits but are at risk from disease. Eelgrass (Zostera marina) is a temperate species threatened by seagrass wasting disease (SWD), caused by the protist Labyrinthula zosterae. The pathogen is sensitive to warming ocean temperatures, prompting a need for greater understanding of the impacts on host health under climate change. Previous work demonstrates pathogen cultures grow faster under warmer laboratory conditions and documents positive correlations between warmer ocean temperatures and disease levels in nature. However, the consequences of disease outbreaks on eelgrass growth remain poorly understood. Here, we examined the effect of disease on eelgrass productivity in the field. We coupled i...
Seagrass wasting disease, caused by the opportunistic marine pathogen Labyrinthula zosterae, has the...
Human-induced global change is expected to amplify the disease risk for marine biota. However, the r...
Human-induced global change is expected to amplify the disease risk for marine biota. However, the r...
Ocean warming endangers coastal ecosystems through increased risk of infectious disease, yet detecti...
Seagrasses are ecosystem engineers of essential marine habitat. Their populations are rapidly declin...
Seagrasses are ecosystem engineers of essential marine habitat. Their populations are rapidly declin...
Ocean warming endangers coastal ecosystems through increased risk of infectious disease, yet detecti...
Ocean warming endangers coastal ecosystems through increased risk of infectious disease, yet detecti...
During the 1930s, ‘wasting disease’ decimated eelgrass, Zostera marina L., meadows along the Atlanti...
Marine infectious diseases can have large-scale impacts when they affect foundation species such as ...
Marine infectious diseases can have large-scale impacts when they affect foundation species such as ...
Infectious disease has the potential to cause devastating damage to valuable marine organisms and ha...
Infectious disease has the potential to cause devastating damage to valuable marine organisms and ha...
Ocean warming endangers coastal ecosystems through increased risk of infectious disease, yet detecti...
The temperate seagrass species eelgrass Zostera marina can be infected by the wasting disease pathog...
Seagrass wasting disease, caused by the opportunistic marine pathogen Labyrinthula zosterae, has the...
Human-induced global change is expected to amplify the disease risk for marine biota. However, the r...
Human-induced global change is expected to amplify the disease risk for marine biota. However, the r...
Ocean warming endangers coastal ecosystems through increased risk of infectious disease, yet detecti...
Seagrasses are ecosystem engineers of essential marine habitat. Their populations are rapidly declin...
Seagrasses are ecosystem engineers of essential marine habitat. Their populations are rapidly declin...
Ocean warming endangers coastal ecosystems through increased risk of infectious disease, yet detecti...
Ocean warming endangers coastal ecosystems through increased risk of infectious disease, yet detecti...
During the 1930s, ‘wasting disease’ decimated eelgrass, Zostera marina L., meadows along the Atlanti...
Marine infectious diseases can have large-scale impacts when they affect foundation species such as ...
Marine infectious diseases can have large-scale impacts when they affect foundation species such as ...
Infectious disease has the potential to cause devastating damage to valuable marine organisms and ha...
Infectious disease has the potential to cause devastating damage to valuable marine organisms and ha...
Ocean warming endangers coastal ecosystems through increased risk of infectious disease, yet detecti...
The temperate seagrass species eelgrass Zostera marina can be infected by the wasting disease pathog...
Seagrass wasting disease, caused by the opportunistic marine pathogen Labyrinthula zosterae, has the...
Human-induced global change is expected to amplify the disease risk for marine biota. However, the r...
Human-induced global change is expected to amplify the disease risk for marine biota. However, the r...