Seagrass meadows form highly productive and valuable ecosystems in the marine environment. Throughout the year, seagrass meadows are exposed to abiotic and biotic variations linked to (i) seasonal fluctuations, (ii) short-term stress events such as, e.g., local nutrient enrichment, and (iii) small-scale disturbances such as, e.g., biomass removal by grazing. We hypothesized that short-term stress events and small-scale disturbances may affect seagrass chance for survival in temperate latitudes. To test this hypothesis we focused on seagrass carbon reserves in the form of starch stored seasonally in rhizomes, as these have been defined as a good indicator for winter survival. Twelve Zostera noltei meadows were monitored along a latitudinal g...
Seagrasses are considered highly important CO2 sinks, with the capacity to store substantial quantit...
Eutrophication causes tremendous losses to seagrass around the globe. The effects of nutrient loadin...
Seagrasses form one of the most productive habitats on earth and are recognized as very efficient ca...
Seagrass meadows form highly productive and valuable ecosystems in the marine environment. Throughou...
Key-ecosystems such as seagrass beds are disappearing on a global scale. In order to counter-act loc...
Temperate seagrass meadows form valuable ecosystems in coastal environments and present a distinctse...
20 pages, 6 figures, 2 tables.-- This is an open-access article distributed under the terms of the C...
The vulnerability of seagrass ecosystems, and the services they provide, to damage and loss from ant...
The organic carbon (Corg) stored in seagrass meadows is globally significant and could be relevant i...
Seagrass beds are major blue carbon ecosystems. Climate change-associated factors may change the sea...
The actual estimates of carbon stocks beneath seagrass meadows worldwide are derived from few data, ...
Eutrophication is one of the main threats to seagrass meadows, but there is limited knowledge on the...
Intertidal seagrass meadows are exposed to both marine and terrestrial environmental constraints. Se...
Eutrophication causes tremendous losses to seagrass around the globe. The effects of nutrient loadin...
Seagrasses are considered highly important CO2 sinks, with the capacity to store substantial quantit...
Eutrophication causes tremendous losses to seagrass around the globe. The effects of nutrient loadin...
Seagrasses form one of the most productive habitats on earth and are recognized as very efficient ca...
Seagrass meadows form highly productive and valuable ecosystems in the marine environment. Throughou...
Key-ecosystems such as seagrass beds are disappearing on a global scale. In order to counter-act loc...
Temperate seagrass meadows form valuable ecosystems in coastal environments and present a distinctse...
20 pages, 6 figures, 2 tables.-- This is an open-access article distributed under the terms of the C...
The vulnerability of seagrass ecosystems, and the services they provide, to damage and loss from ant...
The organic carbon (Corg) stored in seagrass meadows is globally significant and could be relevant i...
Seagrass beds are major blue carbon ecosystems. Climate change-associated factors may change the sea...
The actual estimates of carbon stocks beneath seagrass meadows worldwide are derived from few data, ...
Eutrophication is one of the main threats to seagrass meadows, but there is limited knowledge on the...
Intertidal seagrass meadows are exposed to both marine and terrestrial environmental constraints. Se...
Eutrophication causes tremendous losses to seagrass around the globe. The effects of nutrient loadin...
Seagrasses are considered highly important CO2 sinks, with the capacity to store substantial quantit...
Eutrophication causes tremendous losses to seagrass around the globe. The effects of nutrient loadin...
Seagrasses form one of the most productive habitats on earth and are recognized as very efficient ca...