EXPERT REACTION: Coral recovery time cut short by warming oceans

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Photo: Richard Freeman, UNSW Sydney
Photo: Richard Freeman, UNSW Sydney

The world’s coral reefs have lost almost 10% of their hard coral cover over four decades, as the most comprehensive global assessment yet finds damaging events now strike before recovering corals can mature and reproduce.

News release

From: The University of New South Wales

Coral recovery time cut short by warming oceans: new report

Given enough time, coral reefs can recover from cyclones, bleaching and other destructive events. But a new report released today suggests they are losing that time.

The Status of Coral Reefs of the World: 2025 is the most comprehensive global assessment of coral reefs yet. Released by the Global Coral Reef Monitoring Network (GCRMN), the report draws on more than 21 million observations from around 90,000 surveys, contributed by 600 partners across more than 120 countries, territories and economies.

The findings show global hard coral cover has declined by 9.5% from an average of 30.2% during the historical reference period of 1980–2009 to 27.3% in 2020–2024.

Four global coral bleaching events, caused by climate-driven marine heatwaves, were the main cause of the loss.

“We have entered a time when disturbance is a regular feature of coral reefs,” says UNSW Sydney’s Associate Professor Tracy Ainsworth, a report coauthor and current vice-president of the International Coral Reef Society.

Major bleaching events previously occurred about once a decade. Since 2010, they have occurred approximately every five to six years. But many corals need at least five years just to mature and begin reproducing.

“In some places, severe disturbance is already happening annually. In others, it is happening every few years,” A/Prof. Ainsworth says.

“The growth and maturity timeline that corals need is now being overwhelmed by stress and disturbance events.”

This means established corals can disappear faster than a new generation can grow and repopulate the reef.

“The large corals we expect to see on reefs can be decades old,” A/Prof. Ainsworth says.

“When they are lost, it takes decades for that population structure to return.

“But that timeline is now interrupted by more, and increasingly severe, stress events, making it harder for new corals to grow and fill the reef.”

Recovery, but not as we know it

The report provides some evidence of reefs’ resilience. Global hard coral cover increased by 6% from 2017 to 2019 following the third global bleaching event.

But those gains were reversed by the unprecedented coral loss associated with the fourth global bleaching event, which began in 2023 and continued into 2025. The event resulted in substantial losses from the 2024 mass bleaching event on the Great Barrier Reef and severe bleaching of Western Australian reefs in 2025.

The fourth global bleaching event produced the largest decline in hard coral cover in the 45-year record, although its full effects are not captured in the report.

A/Prof. Ainsworth says the capacity for recovery depends on retaining healthy, diverse reef areas that can continue supplying new corals to damaged sites. But that requires some reefs to escape bleaching, storms and land-based pollution, or, at least, for some corals to survive and reproduce afterwards.

“Unfortunately, we are now seeing more frequent bleaching events, more severe storms and more land-based pollution,” she says.

“Recovery to the reefs we enjoyed before 2016 is increasingly unlikely under these conditions.”

Rather than expecting damaged reefs to return to their previous state, scientists are increasingly considering how coral ecosystems might reorganise in response to warmer oceans and more severe disturbances.

“We are now talking about the restructuring of coral reef ecosystems into systems that can withstand a new climate of higher temperatures and more severe storms,” A/Prof. Ainsworth says.

While coral cover could return, the original reef ecosystem will not, she says. The mix of coral species, physical structure and ecological relationships are becoming entirely different.

Global figure masks local losses

The global 9.5% decline also conceals substantial differences between reefs and regions.

Some locations have experienced far greater losses because they face repeated marine heatwaves combined with local pressures such as poor water quality. Other reefs have so far been less exposed to extreme warming.

“Inshore coral reefs, for example, are affected by both severe stress events and land-based pollution,” A/Prof. Ainsworth says.

While Australia’s reefs remain in comparatively good condition, they have followed the broader global decline.

Average Australian hard coral cover fell from 30.2% during the 1980–2009 reference period to 26.8% between 2020 and 2024, representing a relative decline of 10.9%.

“Compared with places that have experienced much greater decline, 10% is not as bad,” A/Prof. Ainsworth says.

“But that’s not what we should be aiming for.”

From coral reefs to algal reefs

When corals die, the fish and other marine species that depend on coral for food and shelter can also begin to disappear. And when that happens, the empty space does not remain empty for long.

Another warning sign in the report is a 44% increase in average global macroalgae cover compared with the historical reference period.

Macroalgae occurs naturally on reefs, but a major increase can restrict coral recovery by taking over where young corals need to establish.

“Algae takes over the free spaces corals have to recruit and repopulate the reef,” A/Prof. Ainsworth says. “More algae means less space, which means less coral.

“The ecosystem fundamentally changes away from a coral reef and into an algal reef and a very different ecosystem. And so the species that rely on corals for habitat and food are then also lost from the reef.”

Researchers are searching for ‘bright spots’ – reefs or coral communities that may be adapting more successfully to repeated heat stress. But A/Prof. Ainsworth says it is too early to know whether some reefs are genuinely adapting better than others.

“We are only just over 10 years into an era of severe and recurrent disturbance events,” she says.

“Corals are long-lived organisms. We are only now seeing the beginning of those impacts, while more disturbances continue to arrive on the reefs.”

Exceptional stake, exceptional responsibility

“Australia has responsibility for 17% of the world’s reefs,” A/Prof. Ainsworth says. “Every reef that can be protected should be protected.”

The nation is home to at least 43,000 square kilometres of coral reef, equivalent to around two-thirds the area of Tasmania, which represents the largest extent attributed to any single country.

“We should be doing everything we can to ensure that these ecosystems have the best possible chance of restructuring into systems that continue to be of high natural value.”

The report’s modelling suggests coral cover will continue its downward trajectory if global bleaching events persist at their current frequency.

More ambitious reductions in greenhouse gas emissions offer a better outlook, particularly when combined with effective management of local pressures.

“Without question, we must slow the trajectory of ocean warming,” A/Prof. Ainsworth says.

“We cannot expect that thousands of species will simply adapt within the timeline of warming we have created – and deliver us ecosystems that we can continue to enjoy and value.”

What can we do?

While emissions reduction is essential, A/Prof. Ainsworth says governments and communities can immediately improve reefs’ chances by reducing pollution and maintaining high water-quality standards.

“Water quality will play a crucial role in how coral reefs restructure under the coming changes,” she says.

“By ensuring the highest standards for water quality, we remove additional stressors that could otherwise amplify the impacts of a changing climate – providing a clean environment that can support a diverse ecosystem.”

A/Prof. Ainsworth says the future of coral reefs might look different to the past – but we can have an impact on what that future looks like.

“While corals possess the biological capacity to recover, like any living organism they need the time and healthy conditions to do so.”

The Global Coral Reef Monitoring Network (GCRMN) is an operational network of the International Coral Reef Initiative (ICRI), supporting its efforts by working through a global collective to strengthen the provision of best available scientific information on, and communication of, the status and trends of coral reef ecosystems, for their conservation and management.

Expert Reaction

These comments have been collated by the Science Media Centre to provide a variety of expert perspectives on this issue. Feel free to use these quotes in your stories. Views expressed are the personal opinions of the experts named. They do not represent the views of the SMC or any other organisation unless specifically stated.

Dr Manuel Gonzalez Rivero is Research Team Leader, Reef Process Dynamics at the Australian Institute of Marine Science. He is lead author of the GCRMN Status of the World’s Coral Reefs: 2025 report, and global coordinator of the GCRMN

“This report provides the most comprehensive assessment to date of the status of the world’s coral reefs.

The strongest pathway to safeguard coral reefs is rapid emissions reductions, effective action on local pressures and sustained long-term monitoring so action is targeted where it matters most.”

Last updated:  31 Aug 2026 3:49pm
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Declared conflicts of interest Manuel is a co-author of the report. He is the Global Coordinator of the GCRMN. This body has received funding from the Bloomberg Ocean Fund to communicate the findings of the Status of the World’s Coral Reefs: 2025 report. Dr Rivero works for the Australian Institute of Marine Science, a publicly funded research organisation that receives funding from the Australian government, state government departments, foundations and private industry.

Dr Mike Emslie is leader of the Long Term Monitoring Program at the Australian Institute of Marine Science and GCRMN Australia co-lead author

“The GCRMN report is the most detailed assessment of the status of the world’s coral reefs to date. This report is the 7th iteration, with previous editions having been released roughly every five years. The latest iteration is made possible by drawing together over 21.1 million observations from 87,299 surveys, representing 36,886 sites across 124 countries, territories and economies and is a substantial expansion from previous versions.

What it shows is long-term decline of global coral cover of about 9.5% over 40 years. The dominant driver of coral loss across the globe was the four global mass coral bleaching events, which have been occurring with greater frequency since 2010, driving between 6 and 9% losses in global coral cover.

Australia’s reefs are not immune to these losses despite remaining in relatively good condition compared to other regions around the world, with a 10.9% loss across the forty years of the report. Reefs still retain the ability to recover when conditions allow, but the windows for recovery are becoming shorter due to the increasing frequency of disturbance events, particularly those driven by global warming.

To help coral reef systems survive climate change, we must reduce emissions while managing coastal development, pollution and fishing pressure, while also developing interventions that help coral reefs adapt to and recover from disturbances.”

Last updated:  31 Aug 2026 3:49pm
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Declared conflicts of interest Mike is a co-author of the report. He works for the Australian Institute of Marine Science (AIMS), a publicly funded research organisation that receives funding from the Australian government, state government departments, foundations and private industry.

Dr Emma Kennedy is a Research Scientist in Coral Reef Ecology at the Australian Institute of Marine Scinece (AIMS)

“Australian coral reefs are following a similar decline to the global trend with an almost 11% reduction in hard coral cover from before 2010 compared to the 2020s, although we've seen fluctuations within that period with decline and recovery rather than consistent decline.

Reef trajectories differ substantially among subregions: some have recovered strongly after disturbances, while others have experienced major recent declines.

So far, Australian coral reefs have largely demonstrated the capacity to recover from disturbances like climate-change driven coral bleaching, cyclones and crown-of-thorns starfish outbreaks if given enough time. But this capacity for recovery is unlikely to continue under a warming climate.

More frequent and widespread marine heatwaves leading to mass coral bleaching events are shortening the intervals between disturbances and reducing the time available for reefs to recover.

Expanding the spatial and ecological coverage of monitoring will improve our ability to understand Australia’s diverse reef systems and support effective stewardship as climate pressures intensify.”

Last updated:  31 Aug 2026 3:42pm
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Declared conflicts of interest Emma is a co-author of the report. She works for the Australian Institute of Marine Science (AIMS), a publicly funded research organisation that receives funding from the Australian government, state government departments, foundations and private industry.

Dr James Gilmour is Principal Research Scientist: Coral Reef Ecology at the Australian Institute of Marine Science, GCRMN Australia node coordinator and a report co-author

“The GCRMN is the definitive summary of the state of the world’s coral reefs leading into the 4th Global Coral Bleaching event.

The report does not fully capture the impact of the most recent mass bleaching event, which was the worst on record for Australian coral reefs.

However, the report demonstrates that local management actions on many Australian reefs aid coral recovery, with little evidence of a long-term shift to macro-algae or other organisms that can exclude corals.

Nonetheless, recovery relies on sufficient time between severe heatwaves, and that window is clearly decreasing. Local management alone cannot prevent the future decline of Australia’s coral reefs, with climate heating from global carbon emissions being the primary cause.”

Last updated:  31 Aug 2026 3:40pm
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Declared conflicts of interest James is a report co-author. He works for the Australian Institute of Marine Science, a publicly funded research organisation that receives funding from the Australian government, state government departments, foundations and private industry.

Dr Emma Camp is Reef Biogeochemistry Group Leader and Team Leader, Future Reefs Program at the University of Technology Sydney

"The global decline in coral cover found in the report is highly concerning, but not unexpected given the multitude of threats coral reefs face.

Importantly, however, the trajectory of coral reefs is not yet predetermined.

The report highlights that more optimistic futures remain possible if we can create conditions that give corals sufficient time and opportunity to recover between successive stress events."

Last updated:  31 Aug 2026 2:53pm
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Declared conflicts of interest None declared.

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Media Release The University of New South Wales, Web page
Research GCRMN, Web page
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Organisation/s: The University of New South Wales, Australian Institute of Marine Science (AIMS), The University of Western Australia, University of Tasmania, James Cook University, The Australian National University, The University of Queensland, CSIRO
Funder: The Global Coral Reef Monitoring Network (GCRMN)​
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