Urban coral communities and water quality parameters along the coasts of Guangdong Province, China.

Mar Pollut Bull

Southern Marine Science and Engineering Guangdong Laboratory (Guangzhou), Guangzhou 511458, PR China; Department of Biology, Hong Kong Baptist University, Hong Kong, China; HKBU Shenzhen Institute of Research and Continuing Education (IRACE), Shenzhen, PR China. Electronic address:

Published: July 2022

Coral communities in China's Great Bay Area (GBA) have experienced severe degradation, but only limited information is available about their community structure. We surveyed 20 sites across three regions (Daya Bay, Dapeng Bay, Wanshan Islands) in GBA to provide an updated baseline of these urban coral communities. Live coral cover varied substantially, with the lowest values (<2 %) found inside the highly urbanized Daya Bay, and highest values (40-47 %) from offshore islands that are less affected by human activities. The two sites with the lowest live coral cover had a high percentage of dead coral. Five groups of coral communities could be identified, with most of them characterized by dominance of massive and encrusting coral species. Both coral cover and generic richness were negatively correlated with dissolved inorganic nitrogen in the water column, indicating that nutrient pollution could potentially constrain the development of these urban coral communities.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.marpolbul.2022.113821DOI Listing

Publication Analysis

Top Keywords

coral communities
12
urban coral
8
communities water
4
water quality
4
quality parameters
4
parameters coasts
4
coasts guangdong
4
guangdong province
4
province china
4
china coral
4

Similar Publications

Microorganisms underpin numerous ecosystem processes and support biodiversity globally. Yet, we understand surprisingly little about what structures environmental microbiomes, including how to efficiently identify key players. Microbiome network theory predicts that highly connected hubs act as keystones, but this has never been empirically tested in nature.

View Article and Find Full Text PDF

Sponge exhalent metabolites influence coral reef picoplankton dynamics.

Sci Rep

December 2024

Marine Chemistry and Geochemistry, Woods Hole Oceanographic Institution, Falmouth, USA.

Coral reef sponges efficiently take up particulate and dissolved organic matter (DOM) from the water column and release compounds such as nucleosides, amino acids, and other dissolved metabolites to the surrounding reef via their exhalent seawater, but the influence of this process on reef picoplankton and nutrient processing is relatively unexplored. Here we examined the impact of sponge exhalent on the reef picoplankon community and subsequent alterations to the reef dissolved metabolite pool. We exposed reef picoplankton communities to a sponge exhalent water mixture (Niphates digitalis and Xestospongia muta) or filtered reef seawater (control) in closed, container-based dark incubations.

View Article and Find Full Text PDF

Following a recent dramatic increase in illegal fishing by Indonesian fishing vessels in Australian waters in 2022, we conducted an extensive survey of coral reef communities covering 33,000 m at Mermaid Reef Marine Park in the Rowley Shoals off north-western Australia in July 2022. Species richness of sea cucumbers was 13 species (three CITES listed) and 6 species of giant clams (all CITES listed). The most abundant sea cucumber species were the low or intermediate value, asexually reproducing species Holothuria atra and H.

View Article and Find Full Text PDF

Macroalgae of the Campeche Bank, Gulf of Mexico.

Biodivers Data J

December 2024

Universidad Nacional Autonoma de Mexico, Mexico, Mexico Universidad Nacional Autonoma de Mexico Mexico Mexico.

Background: The coastal habitats in the southern Gulf of Mexico face multiple threats, such as rising water temperatures, acidification, increased turbidity, invasive species and pollutants. This imperils the biodiversity of beaches, wetlands and coral reefs. To address this, there is a need for comprehensive baseline information on marine biodiversity.

View Article and Find Full Text PDF

Modeling the role of temperature-dependent microbiome composition in black band disease transmission among coral reefs.

Math Biosci

December 2024

Disease Modeling Lab (DiMoLab), Department of Mathematics and Statistics, San Diego State University, San Diego, 92182, CA, USA; Computational Science Research Center, San Diego State University, San Diego, 92182, CA, USA; Viral Information Institute, San Diego State University, San Diego, 92182, CA, USA. Electronic address:

Black band disease (BBD) is one of the most prevalent diseases causing significant destruction of coral reefs. Coral reefs acquire this deadly disease from bacteria in the microbiome community, the composition of which is highly affected by the environmental temperature. While previous studies have provided valuable insights into various aspects of BBD, the temperature-dependent microbiome composition has not been considered in existing BBD models.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!