Mega ocean warming El Niรฑo events were key in driving the largest extinction of life on planet Earth some 252 million years ago, according to new research.

The study, published today in Science and co-led by the University of Bristol and China University of Geosciences (Wuhan), has shed new light on why the effects of rapid climate change in the Permian-Triassic warming were so devastating for all forms of life in the sea and on land.

Scientists have long linked this mass extinction to vast volcanic eruptions in what is now Siberia. The resulting carbon dioxide emissions rapidly accelerated climate warming, resulting in widespread stagnation and the collapse of marine and terrestrial ecosystems.



But what caused life on land, including plants and usually resilient insects, to suffer just as badly has remained a source of mystery.

Co-lead author Dr Alexander Farnsworth, Senior Research Associate at the University of Bristol, said: โ€œClimate warming alone cannot drive such devastating extinctions because, as we are seeing today, when the tropics become too hot, species migrate to the cooler, higher latitudes. Our research has revealed that increased greenhouse gases donโ€™t just make the majority of the planet warmer, they also increase weather and climate variability making it even more โ€˜wildโ€™ and difficult for life to survive.โ€

The Permian-Triassic catastrophe shows the problem of global warming is not just a matter of it becoming unbearably hot, but also a case of conditions swinging wildly over decades.


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โ€œMost life failed to adapt to these conditions, but thankfully a few things survived, without which we wouldnโ€™t be here today. It was nearly, but not quite, the end of the life on Earth,โ€ said co-lead author Professor Yadong Sun at China University of Geosciences, Wuhan.

The scale of Permian-Triassic warming was revealed by studying oxygen isotopes in the fossilised tooth material of tiny extinct swimming organisms called conodonts. By studying the temperature record of conodonts from around the world, the researchers were able to show a remarkable collapse of temperature gradients in the low and mid latitudes.

Dr Farnsworth, who used pioneering climate modelling to evaluate the findings, said: โ€œEssentially, it got too hot everywhere. The changes responsible for the climate patterns identified were profound because there were much more intense and prolonged El Niรฑo events than witnessed today. Species were simply not equipped to adapt or evolve quickly enough.โ€

In recent years El Niรฑo events have caused major changes in rainfall patterns and temperature. For example, the weather extremes that caused the June 2024 North American heatwave when temperatures were around 15ยฐC hotter than normal. 2023-2024 was also one of the hottest years on record globally due to a strong El Niรฑo in the Pacific, which was further exacerbated by increased human-induced CO2 driving catastrophic drought and fires around the world.

โ€œFortunately such events so far have only lasted one to two years at a time. During the Permian-Triassic crisis, El Niรฑo persisted for much longer resulting in a decade of widespread drought, followed by years of flooding. Basically, the climate was all over the place and that makes it very hard for any species to adapt,โ€ co-author Paul Wignall, Professor of Palaeoenvironments at the University of Leeds.

The results of the climate modelling also help explain the abundant charcoal found in rock layers of that age.

โ€œWildfires become very common if you have a drought-prone climate. Earth got stuck in a crisis state where the land was burning and the oceans stagnating. There was nowhere to hide,โ€ added co-author Professor David Bond, a palaeontologist at the University of Hull.

The researchers observed that throughout Earthโ€™s history there have been many volcanic events similar to those in Siberia, and many caused extinctions, but none led to a crisis of the scale of the Permian-Triassic event.

They found Permian-Triassic extinction was so different because these Mega-El Niรฑos created positive feedback on the climate which led to incredibly warm conditions starting in the tropics and then beyond, resulting in the dieback of vegetation. Plants are essential for removing CO2 from the atmosphere, as well as the foundation of the food web, and if they die so does one of the Earth’s mechanisms to stop CO2 building up in the atmosphere as a result of continued volcanism.

This also helps explain the conundrum regarding the Permian-Triassic mass extinction whereby the extinction on land occurred tens of thousands of years before extinction in the oceans.

โ€œWhilst the oceans were initially shielded from the temperature rises, the mega-El Ninoโ€™s caused temperatures on land to exceed most species thermal tolerances at rates so rapid that they could not adapt in time,โ€ explained Dr Sun.

โ€œOnly species that could migrate quickly could survive, and there werenโ€™t many plants or animals that could do that.โ€

Mass extinctions, although rare, are the heartbeat of the Earthโ€™s natural system resetting life and evolution along different paths.

โ€œThe Permo-Triassic mass extinction, although devastating, would ultimately see the rise of Dinosaurs becoming the dominant species thereafter as would the Cretaceous mass extinction lead to the rise of mammals, and humans,โ€ Dr Farnsworth concluded.

IMAGE CREDIT: University of Bristol and China University of Geosciences (Wuhan)

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