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Search results for “Coral Reefs”

1,000+ results for "Coral Reefs"

Coral bleaching causes a permanent change in fish life

A long-term study in the Seychelles found that repeat coral bleaching caused lasting changes to fish communities, with large predator fish declining and being replaced by seaweed-loving fish. The study suggests that under current levels of ocean warming, permanent changes to reef fishes are likely on most coral reefs globally.

SourceLancaster University·JournalGlobal Change Biology·DateJun 18, 2019

Changing how we predict coral bleaching

Researchers developed an algorithm using over 30 years of satellite data to isolate extreme warming events leading to documented coral bleaching in the Red Sea. The findings suggest that coral bleaching may have been greatly underestimated and indicate a emerging pattern of extreme warming events in the northern region.

SourceKing Abdullah University of Science & Technology (KAUST)·JournalGlobal Change Biology·DateJun 18, 2019

Protecting coral reefs in a deteriorating environment

Coral reefs face growing danger from climate change, local pollution, and habitat destruction. New interventions, such as breeding corals with greater heat resistance and genetic manipulation, show promise but vary in readiness levels.

SourceNational Academies of Sciences, Engineering, and Medicine·DateJun 12, 2019

Rapid change in coral reefs prompts global calls for a rethink

Coral reefs, unchanged for 24 million years, are experiencing profound changes due to rapid climate change. Experts urge a rethink on conservation priorities in the face of these shifts, which exceed predictions. Carbon emissions reduction is key to sustaining coral ecosystems.

SourceLancaster University·JournalFunctional Ecology·DateJun 7, 2019
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Over half a million corals destroyed by port of Miami dredging, study finds

A new study found that over half a million corals were killed within 550 yards of the dredged channel, and that dredging impacts may have spread across more than 15 miles of Florida's reef tract. The researchers used satellite data to predict impacts on reefs below.

SourceUniversity of Miami Rosenstiel School of Marine, Atmospheric, and Earth Science·JournalMarine Pollution Bulletin·DateMay 30, 2019

Coral reefs can't return from acid trip

Researchers found that corals and coralline algae, crucial for reef structure, are vulnerable to ocean acidification. The study suggests a significant shift in the composition and function of future reefs if they can survive climate change.

SourceARC Centre of Excellence for Coral Reef Studies·JournalNature Climate Change·DateMay 29, 2019

Live fast, die young: Study shows tiny fishes fuel coral reefs

A new study published in Science has found that tiny, mostly bottom-dwelling creatures called cryptobenthic reef fishes perform a critical role on coral reefs. These small fish supply almost 60% of the consumed fish food by constantly replenishing their populations.

SourceSmithsonian·JournalScience·DateMay 23, 2019

Tiny fish a big lure for life on coral reefs

Researchers at Simon Fraser University discovered that tiny fish species around the world are a crucial food source for larger fishes on coral reefs. These 'cryptobenthic' fishes dominate larval communities near reefs and create a steady stream of babies that rapidly replaces each adult fish devoured on the reef.

SourceSimon Fraser University·JournalScience·DateMay 23, 2019
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Tiny fish live fast, die young

Researchers discovered that tiny fish living in the gaps of coral reefs play a crucial role in sustaining the ecosystem. These 'cryptobenthics,' which include species like gobies and blennies, reproduce rapidly and are consumed by other animals, providing a vital food supply for larger species.

SourceARC Centre of Excellence for Coral Reef Studies·JournalScience·DateMay 23, 2019

Ocean skeletons reveal historical climate impacts

Researchers studied skeletal stress bands on corals to reconstruct bleaching history and understand thermal thresholds of reef communities. The study found thermally tolerant reefs experienced more stress than the least resistant ones, highlighting historical climate impacts on coral reefs.

SourceWildlife Conservation Society·JournalCoral Reefs·DateMay 16, 2019

Breaking bread with rivals leads to more fish on coral reefs

A new study finds that when competing fishermen cooperate over local environmental problems, they can improve the quality and quantity of fish on coral reefs. The research, conducted across five coral reef fishing communities in Kenya, reveals that communication among competitors leads to more fish and higher quality catches.

SourceARC Centre of Excellence for Coral Reef Studies·JournalNature Communications·DateMay 3, 2019

Cooperation among fishers can improve fish stock in coral reefs

A study published in Nature Communications found that cooperation among competing fisheries can lead to improvements in both the quality and quantity of fish in local reefs. Fishers who communicated with their competitors about fishing gear and rules reported higher fish stocks.

SourceUniversity of Tennessee at Knoxville·JournalNature Communications·DateMay 3, 2019
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Localized efforts to save coral reefs won't be enough, study suggests

A National Science Foundation study suggests that localized pollution controls on coral reefs won't suffice, highlighting the need for a worldwide effort to reduce global warming. The researchers found that combined stressors from temperature, nutrient enrichment and physical damage significantly impacted the coral microbiome.

SourceOregon State University·JournalScientific Reports·DateMay 2, 2019

Reef engineers

Marine scientists investigate the relationship between bumphead parrotfish and their coral reef habitat using molecular analysis, finding that coral rock contains more calories than live coral. The study sheds light on the complex dynamics of coral reef ecology and the role of bumphead parrotfish in shaping their environment.

SourceUniversity of California - Santa Barbara·JournalCoral Reefs·DateApr 30, 2019

Place-based management can protect coral reefs in a changing climate

Researchers developed a new tool to pinpoint areas where improved wastewater management and landscape practices can benefit downstream reefs. This study highlights the importance of coordinating local actions across land and sea to promote resilience of coral reefs to global climate change.

SourceUniversity of Hawaii at Manoa·JournalEcological Applications·DateApr 25, 2019

Can we solve the riddle of the coral reef halos?

Researchers found that coral reef halos are more likely to occur in no-take marine reserves and are influenced by species interactions between plant-eating fishes and invertebrate-eating fishes. The presence of halos may serve as an indicator of aspects of reef ecosystem health.

SourceUniversity of Hawaii at Manoa·DateApr 24, 2019
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Scientists create largest collection of coral reef maps ever made

A global atlas offers a new way to map coral reefs from space, containing over 65,000 square kilometers of coral reefs and surrounding habitats. The high-resolution maps provide information on shallow water marine habitats, helping track changes in reef composition and structure over time.

SourceUniversity of Miami Rosenstiel School of Marine, Atmospheric, and Earth Science·JournalCoral Reefs·DateApr 23, 2019

Ocean currents bring good news for reef fish

Researchers discovered that reef fish rely heavily on food from the open ocean, with some species relying on more than 400 grams of plankton per kilogram of fish produced. The study found that areas of the reef exposed to the open ocean produce the largest quantities of fish, offering hope for resilient reefs.

SourceARC Centre of Excellence for Coral Reef Studies·JournalCurrent Biology·DateApr 18, 2019

New eDNA technology used to quickly assess coral reefs

Scientists at the University of Hawaii have developed a technique to measure living coral on reefs by analyzing DNA in small seawater samples. This new method, known as metabarcoding, can track changes in coral reef health and detect rare species.

SourceUniversity of Hawaii at Manoa·JournalEnvironmental DNA·DateApr 17, 2019

Global warming disrupts recovery of coral reefs

New research reveals that global warming has made it difficult for coral reefs to recover, with a 89% decline in adult corals and a 93% drop in coral replenishment. The study's findings indicate that the Great Barrier Reef's resilience is now severely compromised by global warming.

SourceARC Centre of Excellence for Coral Reef Studies·JournalNature·DateApr 3, 2019
Apple Watch Series 11 (GPS, 46mm)

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New study measures UV-filters in seawater and corals from Hawaii

Researchers analyzed 13 UV filters, including oxybenzone and octinoxate, in seawater, sediment, and coral tissues near Hawaiian coral reefs. The study found low concentrations of oxybenzone, but no octinoxate, and revealed surfactant degradation products in seawater that may impact corals.

SourceUniversity of Maryland Center for Environmental Science·JournalThe Science of The Total Environment·DateApr 1, 2019

Coral reefs near equator less affected by ocean warming

A new study published in Nature Communications found that coral reefs near the equator are less affected by ocean warming than those at higher latitudes. Corals in these regions were found to be more tolerant of high temperatures, with some even able to withstand temperatures that would bleach corals elsewhere.

SourceFlorida Institute of Technology·JournalNature Communications·DateMar 20, 2019

No silver bullet for helping the Great Barrier Reef

Chronic exposure to poor water quality limits coral recovery rates across the Great Barrier Reef. Improving water quality can enhance recovery rates, but it won't suffice to rescue the reef from threats like climate change and pollution.

SourceLancaster University·JournalNature Ecology & Evolution·DateMar 11, 2019

When coral reefs change, researchers and local communities may not see eye to eye

A study from Florida State University found that coral reefs change can trigger significant ecosystem shifts, but ecologists and local fishing populations perceive those shifts in fundamentally different ways. The findings suggest that local perceptions of change and ecosystem health differ from those of scientists and resource managers.

SourceFlorida State University·JournalAMBIO·DateMar 7, 2019

Coral reef parks protecting only 40 percent of fish biomass potential

A study by WCS and other groups found that even the best coral reef marine parks contain less than half of the fish biomass found in remote reefs. Fishing closures had an average biomass of 740 kg/ha, compared to 1,870 kg/ha in offshore reef sites.

SourceWildlife Conservation Society·JournalMarine Ecology Progress Series·DateMar 7, 2019
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Fish diversity linked to Caribbean coral reef health

A new study by Bigelow Laboratory for Ocean Sciences reveals that a diverse portfolio of herbivore fish species is equally important to keeping reefs well grazed and hospitable to baby corals. This finding has significant implications for the management of tropical fisheries.

SourceBigelow Laboratory for Ocean Sciences·JournalScience Advances·DateMar 6, 2019

Reduced salinity of seawater wreaks havoc on coral chemistry

New research confirms that drastic changes in ocean salinity can cause 'freshwater bleaching' of coral reefs, leading to cell function collapse. The study found corals sensitive to slight changes, with nearshore reefs exposed to half normal ocean salinity causing a shock response preventing normal cell function.

SourceARC Centre of Excellence for Coral Reef Studies·JournalBMC Genomics·DateFeb 28, 2019

How coral bleaching threatens Caribbean communities

A study analyzing Caribbean islands reveals that independent island nations like Cuba and Jamaica are less vulnerable to coral bleaching than territories like Saint Barthélemy. The study found that independent islands have lower social-ecological vulnerability due to their reduced economic dependence on reefs.

SourceUniversity of California - Berkeley·DateFeb 20, 2019
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Fishing and pollution regulations don't help corals cope with climate change

A new study finds that ocean warming is the primary cause of coral decline, contrary to the effectiveness of managed resilience efforts. Coral reefs face devastating impacts from extreme temperatures and mass bleaching, highlighting the need for drastic greenhouse gas emissions reduction.

SourceUniversity of North Carolina at Chapel Hill·JournalAnnual Review of Marine Science·DateFeb 19, 2019

Alternative stable states on coral reefs

Research in Moorea, French Polynesia, reveals that intense herbivory is required to prevent seaweed establishment and that seaweed-dominated patch reefs are resilient to moderate disturbances. The findings suggest that preventing shifts to seaweed should be a focus of reef management.

SourceProceedings of the National Academy of Sciences·JournalProceedings of the National Academy of Sciences·DateFeb 11, 2019

'Twilight Zone' could help preserve shallow water reefs

Researchers at University of Queensland found that corals from the 'twilight zone' can grow faster in shallow light environments, offering a potential solution to preserving coral habitats. The study suggests that mesophotic corals can thrive with limited light, challenging current views of these deep-water ecosystems.

SourceUniversity of Queensland·JournalRoyal Society Open Science·DateFeb 6, 2019

Rigs to reefs

Researchers at UC Santa Barbara have published a comprehensive study on the history, ecology, and pragmatics of rigs-to-reefs efforts. The study finds that these human-made reefs provide a productive habitat for marine life, with some platforms being more productive than coral reefs or Chesapeake Bay.

SourceUniversity of California - Santa Barbara·JournalOcean & Coastal Management·DateJan 31, 2019
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Climate change could make corals go it alone

Research suggests that coral species living alone may survive climate change better than those in reef communities. However, these isolated lifestyles could lead to bleak future ecosystems without reefs.

SourceUniversity of Texas at Austin·JournalPaleoceanography and Paleoclimatology·DateJan 31, 2019

How sponges undermine coral reefs from within

Scientists found that sponges hollow out and take over reef skeletons to protect themselves from predators, using chemical and mechanical techniques. Ocean acidification enhances this process, making it possible to predict future coral reef conditions more accurately.

SourceRoyal Netherlands Institute for Sea Research·JournalScientific Reports·DateJan 25, 2019

Corals light the way to a healthy partnership

Researchers discovered that corals use green fluorescent light to signal the presence of Symbiodinium, a type of mobile microalgae critical to the establishment of a healthy partnership. The study found that this 'positive phototaxis' mechanism enables corals to attract Symbiodinium, which provide essential nutrients via photosynthesis.

SourceARC Centre of Excellence for Coral Reef Studies·JournalProceedings of the National Academy of Sciences·DateJan 21, 2019

Full carbonate chemistry at the site of calcification in a tropical coral

Researchers directly measured calcium, carbonate and pH at coral calcification sites using microscopy and microsensor measurements. They found that parameters are higher in corals than in surrounding seawater, highlighting the importance of calcium and carbon concentrating mechanisms.

SourceMax Planck Institute for Marine Microbiology·JournalScience Advances·DateJan 16, 2019
Apple iPad Pro 11-inch (M4)

Apple iPad Pro 11-inch (M4) runs demanding GIS, imaging, and annotation workflows on the go for surveys, briefings, and lab notebooks.

Robot makes world-first baby coral delivery to Great Barrier Reef

A robot has successfully delivered heat-tolerant coral larvae to the Great Barrier Reef in the first small-scale pilot of a new technique to help restore and recover coral reefs. The robot, called LarvalBot, disperses microscopic baby corals onto damaged reef areas allowing them to settle and develop into coral polyps.

SourceQueensland University of Technology·DateDec 13, 2018

Coral larvae use sound to find a home on the reef

Researchers at Woods Hole Oceanographic Institution found that coral reefs' soundscape influences coral larvae's choice of settlement, with healthy reefs having more fish sounds attracting larvae. The study suggests using sound to aid in coral reef preservation and potentially rebuild damaged reefs.

SourceWoods Hole Oceanographic Institution·JournalRoyal Society Open Science·DateDec 12, 2018

A glimmer of hope for the world's coral reefs

A new study published in Nature Climate Change reveals that corals that survived 2016 bleaching were more resistant to heat stress in 2017. The research highlights the extent of damage caused by multiple coral bleaching events on the Great Barrier Reef, with only 7% of reefs escaping bleaching entirely since 1998.

SourceARC Centre of Excellence for Coral Reef Studies·JournalNature Climate Change·DateDec 10, 2018

Thriving reef fisheries continue to provide food despite coral bleaching

A new study published in Nature Ecology and Evolution found that reef fisheries can still provide stable catches despite extreme coral bleaching. However, the fishery's success is more patchy and dependent on fewer species, with algal-feeding fish like rabbitfish providing a temporary boost.

SourceLancaster University·JournalNature Ecology & Evolution·DateNov 29, 2018
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Threatened tropical coral reefs form complex, ancient associations with bacteria

A team of researchers has conducted a comprehensive survey of healthy corals, revealing that coral bacteria form complex associations with different sections of the coral body. The study found that distinct microbial communities exist in each tissue type, with the hard skeleton containing the greatest diversity of bacteria.

SourceUniversity of Washington·JournalNature Communications·DateNov 27, 2018

Study tracks severe bleaching events on a Pacific coral reef over past century

Researchers have discovered a history of bleaching on a coral reef in the central Pacific, which has survived extreme heatwaves due to currents that bring cold, nutrient-rich water. The reef's ability to recover after severe bleaching events is crucial for understanding how other reefs may grow back in the future.

SourceWoods Hole Oceanographic Institution·JournalCommunications Biology·DateNov 8, 2018

Research calls for new approach to tropical marine conservation

A study calls for a shift in focus from coral reefs to seagrass meadows as they face increasing threats from climate change and human activities. Seagrass conservation is crucial for global fisheries production, carbon cycle, and coastal ecosystem health.

SourceSwansea University·JournalCurrent Biology·DateNov 6, 2018

Reef RangerBot becomes 'LarvalBot' to spread coral babies

Scientists are using a QUT-developed robot, transformed into LarvalBot, to deliver baby coral larvae onto targeted reefs as part of coral restoration efforts. The technique, known as larval restoration, has the potential to revolutionize coral restoration on reefs worldwide.

SourceQueensland University of Technology·DateNov 1, 2018
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New study finds unique immunity genes in one widespread coral species

A recent study has identified unique immune genes in the Pocillopora damicornis coral species, which may help explain its ability to survive environmental stressors. The research found that this coral species has a more robust immune system than previously thought, with many diverse immunity genes.

SourceUniversity of Miami Rosenstiel School of Marine, Atmospheric, and Earth Science·JournalScientific Reports·DateNov 1, 2018

Fish give up the fight after coral bleaching

Researchers found that coral bleaching causes a decrease in aggressive behavior among butterflyfish, suggesting a link between bleaching and population declines. The study suggests that fish adjust their behavior in response to environmental stressors, but these changes may not be sustainable in the long term.

SourceLancaster University·JournalNature Climate Change·DateOct 22, 2018

Estimating the feeding habits of corals may offer new insights on resilient reefs

Researchers found that corals living in more productive waters consume plankton and other microorganisms for energy, suggesting some corals are less reliant on symbiotic algae. This discovery could aid predictions on coral recovery from bleaching events and inform strategies for identifying resilient reefs.

SourceUniversity of California - San Diego·JournalCurrent Biology·DateOct 18, 2018

Higher temperatures could help protect coral reefs

Researchers found that more aggressive farmerfish groups, which defend their territories from intruders, resided near branching corals and provided better protection. Additionally, corals planted in the territories of aggressive fish suffered less damage than those in non-aggressive groups.

SourceOxford University Press USA·DateOct 16, 2018
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Large stretches of coral reefs can be rehabilitated

Researchers found that installing small hexagonal structures called 'spiders' across 5 acres of reef increased live coral cover from less than 10% to over 60%. This cost-effective method has the potential to inform other large-scale coral reef restoration efforts.

SourceUniversity of California - Davis·JournalRestoration Ecology·DateSep 27, 2018

Scientists search for coral's new home

Researchers are creating artificial structures to mimic natural surfaces for coral larvae to settle on. By understanding the interactions between larvae and materials, they aim to increase reef regeneration rates and combat coral bleaching. The project combines engineering and biological expertise to tackle this critical issue.

SourceCarl R. Woese Institute for Genomic Biology, University of Illinois at Urbana-Champaign·DateSep 24, 2018

Climate change modifies the composition of reefs

A recent study found that climate change is causing a shift in reef composition, with gorgonians taking the place of declining coral species in some regions. The research suggests that gorgonians are better adapted to changing conditions due to their flexible trophic structure.

SourceUniversitat Autonoma de Barcelona·JournalScientific Reports·DateSep 20, 2018
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