Javascript must be enabled to continue!
Multifunctionality of an Urbanized Coastal Marine Ecosystem
View through CrossRef
Coastal marine ecosystems provide numerous invaluable services and benefits to humankind. However, urbanization of coastal areas has homogenized and reduced the biodiversity of the surrounding marine environment and the sustainability of the multiple ecosystem services it provides. Studies have focused on single ecosystem functions despite human populations relying on several functions being delivered at once (known as multifunctionality). This study investigates five ecosystem functions (primary productivity, herbivory, predation, organic matter decomposition and carbon sequestration) and overall multifunctionality in four sites along a gradient of 16 environmental parameters. Ecosystem function varied significantly between sites that were farthest apart. In determining factors that drove ecosystem functioning, we found a positive relationship between coral cover and primary productivity but negative relationships between coral cover and levels of herbivory and predation intensity. Higher temperatures and greater concentrations of chlorophyll-a had a positive impact on predation and herbivory, respectively. Notably, we found a significant negative impact of total inorganic nitrogen and significant positive impact of total Kjeldahl nitrogen on carbon sequestration. Further, individual functions were compared with fish abundance (obtained from seawater eDNA), and benthic community composition (obtained from plate % coverage of autonomous reef monitoring structures). Increasing herbivorous fish abundance had a positive impact on Ulva mass loss. Overall, relative abundance of predatory, omnivorous and planktivorous fish exerted overriding influences on primary productivity and predation intensity, implying that fishing pressure and marine protected area status are important factors. Importantly, we found significant effects from environmental parameters indicating that reliably predicting the effects of future anthropogenic impacts will not be straightforward as multiple drivers are likely to have complex effects. Taken together, urbanized coastal ecosystems exhibit varying levels of multifunctionality depending on the extent of human impact, and the functional diversity of the benthic community present.
Title: Multifunctionality of an Urbanized Coastal Marine Ecosystem
Description:
Coastal marine ecosystems provide numerous invaluable services and benefits to humankind.
However, urbanization of coastal areas has homogenized and reduced the biodiversity of the surrounding marine environment and the sustainability of the multiple ecosystem services it provides.
Studies have focused on single ecosystem functions despite human populations relying on several functions being delivered at once (known as multifunctionality).
This study investigates five ecosystem functions (primary productivity, herbivory, predation, organic matter decomposition and carbon sequestration) and overall multifunctionality in four sites along a gradient of 16 environmental parameters.
Ecosystem function varied significantly between sites that were farthest apart.
In determining factors that drove ecosystem functioning, we found a positive relationship between coral cover and primary productivity but negative relationships between coral cover and levels of herbivory and predation intensity.
Higher temperatures and greater concentrations of chlorophyll-a had a positive impact on predation and herbivory, respectively.
Notably, we found a significant negative impact of total inorganic nitrogen and significant positive impact of total Kjeldahl nitrogen on carbon sequestration.
Further, individual functions were compared with fish abundance (obtained from seawater eDNA), and benthic community composition (obtained from plate % coverage of autonomous reef monitoring structures).
Increasing herbivorous fish abundance had a positive impact on Ulva mass loss.
Overall, relative abundance of predatory, omnivorous and planktivorous fish exerted overriding influences on primary productivity and predation intensity, implying that fishing pressure and marine protected area status are important factors.
Importantly, we found significant effects from environmental parameters indicating that reliably predicting the effects of future anthropogenic impacts will not be straightforward as multiple drivers are likely to have complex effects.
Taken together, urbanized coastal ecosystems exhibit varying levels of multifunctionality depending on the extent of human impact, and the functional diversity of the benthic community present.
Related Results
Modeling Adaptive Optimization of Cultivated Land Multifunctionality in the Yangtze River Delta, China 
Modeling Adaptive Optimization of Cultivated Land Multifunctionality in the Yangtze River Delta, China 
Abstracts: The utilization of cultivated land and its evaluation has gradually transitioned from a singular focus on food production to encompassing socio-economic development, mai...
COASTAL ENGINEERING 2000
COASTAL ENGINEERING 2000
*** Available Only Through ASCE ***
http://ascelibrary.aip.org/browse/asce/vol_title.jsp?scode=C
This Proceedings contains more than 300 papers pre...
Collaborative Citizen Science to Support Coastal Management
Collaborative Citizen Science to Support Coastal Management
Coastal communities in North West England face numerous anthropogenic challenges, including high vulnerability to the impacts of climate change, namely enhanced coastal erosion and...
Evaluating coastal multifunctionality: sand nourishment strategies at decadal timescales
Evaluating coastal multifunctionality: sand nourishment strategies at decadal timescales
Globally, there is a growing societal need for multifunctional coastal climate adaptation of sandy shores in the coming decades. Sand nourishment strategies are increasingly regard...
The high-resolution COASTAL CRETE ocean forecasting system 
The high-resolution COASTAL CRETE ocean forecasting system 
<p>The coastal area of Crete is an area of increasing interest due to the recent hydrocarbon exploration and exploitation activities in the Eastern Mediterranean Sea ...
Balance of coastal and marine assets for Panggang Island and Semak Daun Island, Kepulauan Seribu DKI Jakarta
Balance of coastal and marine assets for Panggang Island and Semak Daun Island, Kepulauan Seribu DKI Jakarta
Coastal and marine areas hold great wealth for the welfare of coastal and small island communities with dynamic magnitudes. Panggang Island and Semak Daun Island have the potential...
Ecosystem multifunctionality shows unique stability responses to global change drivers
Ecosystem multifunctionality shows unique stability responses to global change drivers
Abstract
Ecological research increasingly investigates the dimensionality of ecosystem functioning and stability through the multivariate relationships among their ...
The major axes of terrestrial ecosystem functions derived from ecosystem scale flux observations
The major axes of terrestrial ecosystem functions derived from ecosystem scale flux observations
<p>Understanding the coordination of ecosystem functions across global biomes is still a critical challenge in ecology to better predict biosphere response to environ...

