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Rising ocean temperatures are the primary driver of coral reef declines throughout the tropics. Such declines include reductions in coral cover that facilitate the monopolization of the benthos by other taxa such as macroalgae, resulting in reduced habitat complexity and biodiversity. Long-term monitoring projects present rare opportunities to assess how sea surface temperature anomalies (SSTAs) influence changes in the benthic composition of coral reefs across distinct locations. Here, using extensively monitored coral reef sites from Honduras (in the Caribbean Sea), and from the Wakatobi National Park located in the center of the coral triangle of Indonesia, we assess the impact of global warming on coral reef benthic compositions over the period 2012-2019. Bayesian generalized linear mixed effect models revealed increases in the sponge, and hard coral coverage through time, while rubble coverage decreased at the Indonesia location. Conversely, the effect of SSTAs did not predict any changes in benthic coverage. At the Honduras location, algae and soft coral coverage increased through time, while hard coral and rock coverage were decreasing. The effects of SSTA at the Honduras location included increased rock coverage, but reduced sponge coverage, indicating disparate responses between both systems under SSTAs. However, redundancy analyses showed intralocation site variability explained the majority of variance in benthic composition over the course of the study period. Our findings show that SSTAs have differentially influenced the benthic composition between the Honduras and the Indonesian coral reefs surveyed in this study. However, the large intralocation variance that explains the benthic composition at both locations indicates that localized processes have a predominant role in explaining benthic composition over the last decade. The sustained monitoring effort is critical for understanding how these reefs will change in their composition as global temperatures continue to rise through the Anthropocene.
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http://dx.doi.org/10.1002/ece3.9263 | DOI Listing |
Mar Environ Res
September 2025
School of Biology, College of Science, University of Tehran, 1417935840, Tehran, Iran. Electronic address:
This study aimed to compare the species and functional diversity of macrobenthic communities between natural and planted mangrove ecosystems. Samples were collected from two mangrove sites in the Gulf of Oman. Physicochemical properties of water and sediment characteristics were analyzed to assess their correlation with community structure.
View Article and Find Full Text PDFEnviron Microbiol Rep
October 2025
Department of Biology, Marine Biology Section, University of Copenhagen, Helsingør, Denmark.
Due to climate change, sea ice more commonly retreats over the shelf breaks in the Arctic Ocean, impacting sea ice-pelagic-benthic coupling in the deeper basins. Nitrogen fixation (the reduction of dinitrogen gas to bioavailable ammonia by microorganisms called diazotrophs) is reported from Arctic shelf sediments but is unknown from the Arctic deep sea. We sampled five locations of deep-sea (900-1500 m) surface sediments in the central ice-covered Arctic Ocean to measure potential nitrogen fixation through long-term (> 280 days) stable-isotope (N) incubations and to study diazotroph community composition through amplicon sequencing of the functional marker gene nifH.
View Article and Find Full Text PDFEnviron Microbiol Rep
October 2025
Institut de Biologia Evolutiva (CSIC-Universitat Pompeu Fabra), Barcelona, Spain.
Marine heatwaves are intensifying due to global warming and increasingly drive mass mortality events in shallow benthic ecosystems. Marine invertebrates host diverse microbial communities that contribute to their health and resilience, yet microbiome responses under thermal stress remain poorly characterised across most taxa. Here, we characterise the microbiome composition in colonies of the common Mediterranean bryozoan Myriapora truncata at two depths (13 and 17 m) following the extreme 2022 marine heatwave.
View Article and Find Full Text PDFMar Environ Res
August 2025
Institute for Coastal and Marine Research, Nelson Mandela University, Gqeberha, Eastern Cape, 6031, Republic of South Africa; Department of Zoology and Entomology, Rhodes University, Makhanda, Eastern Cape, 6140, Republic of South Africa; Department of Zoology & Conservation Research Institute, Univ
Two permanently-open inlets, Knysna estuarine bay and Keurbooms Lagoon, and the only temporarily-open Swartvlei estuary are three adjacent warm-temperate water bodies that differ in their size, morphology and hydrography but which nevertheless all support extensive beds of the endangered seagrass, Nanozostera capensis. To investigate whether their varied environmental conditions influence the compositional structure of the functional guilds of seagrass-associated macrobenthos, the relative abundance and patchiness of the 28 identifiable guilds occurring subtidally along their main channels were examined, including in relation to the spatial patchiness in abundance displayed by their whole macrobenthic assemblages. Two markedly different functional-group structurings were apparent, without intermediate states: one overwhelmingly dominated by local but highly abundant, epifaunal microgastropods (Alaba pinnae, 'Assiminea' capensis and 'Hydrobia' knysnaensis) that feed on leaf-associated periphyton, and the other in which this guild although present was insignificant.
View Article and Find Full Text PDFEarth's most complex and biodiverse ecosystems are characterised by high habitat complexity. On coral reefs, habitat complexity is influenced by the diverse morphology and composition of hard corals, shaping reef structure and shelter provision for many species. Various metrics are used to quantify reef complexity, yet, it remains unclear how well these metrics capture ecological functions such as shelter provision.
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