Seagrass beds are considered to be substantial sinks of “blue carbon”. However, differentiation in the carbon sink capacities of seagrass beds in different regions with distinct nutrient conditions remains unclear. In this study, sediment carbon stocks, seagrass biomass, and microbial community structures and potential functions of seagrass beds in eutrophic seawater adjacent to Hainan Island and oligotrophic seawater around the Xisha Islands were compared. Our results showed that sediment mineralizable organic carbon and dry bulk density were substantially higher on Hainan Island than on the Xisha Islands (t-test, p p > 0.05). Similarly, seagrass biomass was much higher on Hainan Island (p p p < 0.05). Proteobacteria, Desulfobacterota, Asc...
Seagrass meadows may play a substantial role in climate change mitigation as they are capable to seq...
Seagrass meadows are important marine carbon sinks, yet they are threatened and declining worldwide....
Seagrass meadows are productive ecosystems that contribute to climate change mitigation by accumulat...
Seagrass beds are considered to be substantial sinks of “blue carbon”. However, differentiation in t...
Eight new seagrass beds were discovered along the coastline of Hainan Island in South China Sea with...
Nutrient loading is a leading cause of global seagrass decline, triggering shifts from seagrass- to ...
Seagrasses are complex benthic coastal ecosystems that play a crucial role in organic matter cycling...
Recent studies have reported significant variability in sediment organic carbon (SOC) storage capaci...
Eutrophication can play a significant role in seagrass decline and habitat loss. Microorganisms in s...
Dissolved organic carbon (DOC) pool in seawater plays an important role in long-term carbon sequestr...
Stable carbon-isotope ratios of bacterial biomarkers were studied in Mediterranean seagrass meadows ...
Seagrasses are an important feature of coastal systems worldwide, capable of fixing significant amo...
© 2020 Elsevier Ltd Carbon stocks in coastal vegetated ecosystems account for half of the carbon in ...
Coastal vegetated ecosystems play an important role in carbon cycling and bacterial communities inha...
Seagrasses represent high primary productivity and provide important ecosystem services to the marin...
Seagrass meadows may play a substantial role in climate change mitigation as they are capable to seq...
Seagrass meadows are important marine carbon sinks, yet they are threatened and declining worldwide....
Seagrass meadows are productive ecosystems that contribute to climate change mitigation by accumulat...
Seagrass beds are considered to be substantial sinks of “blue carbon”. However, differentiation in t...
Eight new seagrass beds were discovered along the coastline of Hainan Island in South China Sea with...
Nutrient loading is a leading cause of global seagrass decline, triggering shifts from seagrass- to ...
Seagrasses are complex benthic coastal ecosystems that play a crucial role in organic matter cycling...
Recent studies have reported significant variability in sediment organic carbon (SOC) storage capaci...
Eutrophication can play a significant role in seagrass decline and habitat loss. Microorganisms in s...
Dissolved organic carbon (DOC) pool in seawater plays an important role in long-term carbon sequestr...
Stable carbon-isotope ratios of bacterial biomarkers were studied in Mediterranean seagrass meadows ...
Seagrasses are an important feature of coastal systems worldwide, capable of fixing significant amo...
© 2020 Elsevier Ltd Carbon stocks in coastal vegetated ecosystems account for half of the carbon in ...
Coastal vegetated ecosystems play an important role in carbon cycling and bacterial communities inha...
Seagrasses represent high primary productivity and provide important ecosystem services to the marin...
Seagrass meadows may play a substantial role in climate change mitigation as they are capable to seq...
Seagrass meadows are important marine carbon sinks, yet they are threatened and declining worldwide....
Seagrass meadows are productive ecosystems that contribute to climate change mitigation by accumulat...