The end-Permian mass extinction was characterized by a 10-degree climate warming, with 75% of organisms going extinct on land and 90% in oceans. Machine learning analysis reveals that declining oxygen levels, rising water temperatures, and ocean acidification were the key factors in organism survival or extinction.
A new University of Michigan study found that higher levels of biodiversity reduce extinction risk in birds by providing a safe harbor for species at risk. The researchers used a comprehensive dataset covering over 99% of bird species and found diverse communities protect these species, allowing them to persist.
A new analysis has identified common demographic and life history traits among species at risk of extinction. The study found that these traits contribute to patterns of vulnerability, with some species exhibiting higher extinction risks due to factors like smaller population sizes and slower reproductive rates.
Researchers found that low volcanic temperatures caused high sulfur dioxide emissions, leading to short-term cooling and contributing to the fourth mass extinction. The study suggests that this cooling enabled small-bodied dinosaurs to grow and prosper, ultimately thriving during the Jurassic period.
The study found that black carbon decreased significantly in Beijing since the implementation of the Clean Air Action Plan, with a 71% reduction over nine years. However, this decrease was not accompanied by an equivalent decrease in aerosol extinction coefficient, leading to mixed effects on optical properties.
A study published in Scientific Reports uses fossilized mollusk shells to investigate ocean chemistry during the end-Permian mass extinction. The analysis found no signs of severe ocean acidification, contradicting previous theories.
A recent comprehensive assessment reveals drastically increased species extinctions and declining populations, indicating the onset of the Sixth Mass Extinction. The study emphasizes the urgent need for conservation efforts and a recognition of humanity's common responsibility to mitigate the crisis.
Researchers found that reducing conditions, including low oxygen and hydrogen sulfide levels, played a greater role in the Late Ordovician Mass Extinction. The study used geochemical proxies to examine ocean conditions, finding evidence of higher oxygen levels in some areas, which supported life.
A new study by Curtin University has identified the twin mechanisms responsible for the end-Triassic mass extinction event, including ocean acidification and rising hydrogen sulfide levels. This research sheds light on the causes of past marine extinctions and provides valuable insights into the history of our planet.
A new study provides a detailed timeline of mammal evolution, confirming that modern placental mammal groups postdate the K-Pg extinction. The researchers used a novel computational approach to analyse a large genomic dataset and answer a long-standing question about mammal origins.
Researchers analyzed brachiopod fossils from the Late Devonian mass extinction to understand why some species survived while others went extinct. Climate change was found to be a primary factor, with temperature fluctuations and geographic isolation hindering mobility.
Current climate models underestimate species extinction rates by neglecting the complexities of ecosystems. Researchers used piñon pine data to model how climate affects tree populations and distribution, finding indirect effects that cannot be captured by climate-only models.
Researchers found that intense volcanic activity led to a surge in phosphorus levels, driving ocean oxygen levels down and triggering a severe mass extinction. The study suggests that natural weathering of volcanic material may have been responsible for the sudden cooling events.
A team of scientists has identified a new force behind the past mass extinction event, finding that volcano eruptions produced a 'volcanic winter' that drastically lowered earth's temperatures. This change added to the environmental effects resulting from other phenomena at the time.
A study published in Science Advances reveals that felsic volcanism in South China drove the end-Permian mass extinction, with extreme elemental copper enrichment and light isotopic compositions indicating large-scale eruptions near the studied outcrops. This finding strengthens the case against the Siberian Traps as the sole trigger f...
New research reveals humans played a significant role in the extinction of woolly mammoths, contributing to population declines and range collapses. The study shows that human hunting, combined with climate change, led to the species' demise in Eurasia thousands of years earlier than previously thought.
Researchers from Syracuse University and UC Berkeley investigate the Late Ordovician mass extinction, finding that climate cooling combined with other factors likely led to the event. The study suggests that temperature change, rather than oxygen depletion, was the primary cause of the mass extinction.
After a mass extinction event 66 million years ago, early snakes evolved novel dietary adaptations and prey preferences, capitalizing on the ecological opportunity. This rapid diversification of snake diets was driven by the emergence of mammals and birds as prey species.
A study found that snakes rapidly diversified their diets following the K-Pg mass extinction event, incorporating birds, fish, and small mammals into their diet. This diversification was triggered by ecological opportunities presented by the extinction, with some lineages experiencing further bursts of adaptive evolution.
A new study suggests that ground-dwelling and semi-arboreal mammals were better able to survive the mass extinction event, while tree-dwelling mammals were more likely to perish. Early primates may have maintained their arboreal habits through forested refugia or behavioral flexibility.
Scientists at Stanford University have discovered a pattern in how life reemerges after mass extinctions. In the past half-billion years, smaller marine genera were substantially more likely to be wiped out during mass extinction events, but during recovery intervals, originators tended to be tiny compared to holdover species.
A Duke University-led study finds that if endangered primates disappear, up to 250 parasites could go extinct, including those with no other suitable hosts. This potential extinction cascade could have significant consequences for biodiversity and human health.
SourceDuke University·JournalPhilosophical Transactions of the Royal Society B Biological Sciences·TypeComputational simulation/modeling·DateSep 23, 2021
A study published in the journal Geology confirms that a giant meteorite impact caused the mass extinction of species in the late Cretaceous. The researchers analyzed sediments and rocks from the Zumaia cliffs, revealing three intense climatic warming events unrelated to Deccan volcanic activity.
A new study suggests that modern snakes originated from a few species that survived the Cretaceous-Paleogene mass extinction event, which wiped out dinosaurs and other species. Snakes began to diversify into new habitats and exploit new prey, leading to the emergence of diverse lineages such as vipers, cobras, and pythons.
Researchers have discovered a molecular biomarker for the end-Permian plant extinction in South China, revealing synchronous extinction among continental and marine organisms. A study in Namibia reveals a preserved fjord-network morphology, allowing reconstruction of paleo-ice thicknesses and glacial dynamics.
Researchers have discovered three new species of ancient mammals in North America, hinting at rapid evolution following the mass extinction of dinosaurs. The creatures, which include the 'Hobbit'-named Beornus honeyi, differ from earlier known mammals and suggest that mammals diversified more rapidly than previously thought.
Three new fossil mammal species, including Beornus honeyi, Miniconus jeanninae, and Conacodon hettingeri, have been discovered at an ancient riverbed site in southern Wyoming. The species lived after a mass extinction event and were ancestors of today's hoofed animals.
A recent study by Tel Aviv University and the Weizmann Institute found that humans are responsible for the extinction of about 10%-20% of all avian species over the past 20,000-50,000 years. The majority of extinct species were large, flightless, and lived on islands.
A study published in PLOS Biology found that shark diversity remained relatively constant during the mass extinction event at the end of the Cretaceous period. However, some groups of apex predators suffered selective extinctions, while others increased in diversity after the K-Pg boundary.
Researchers found a sudden increase in ocean oxygen levels at the start of the Permian period's largest extinction event, marking a geologically rapid shift. This rapid fluctuation had a more significant impact than gradual decreases, highlighting its importance for modern-day life adapted to high oxygen levels.
A biologist is studying anole lizard diversity in Caribbean islands to identify rare species at risk of extinction. The research will inform strategies to conserve vulnerable species by examining niche characteristics such as diet, habitat, and temperature interactions.
Researchers have successfully resurrected the extinct Gould's mouse, a significant finding given the high rate of native rodent extinction in Australia. The study revealed that the species' genetic diversity did not guarantee its survival, underscoring the rapid decline of populations in the face of invasive species, habitat destructio...
A study of extinct Australian rodents reveals that European colonization drastically impacted native species diversity. Genetic data shows that reduced genetic diversity did not guarantee protection from extinction in the face of rapid population decline.
A new study published in Nature Communications confirms that the end-Permian mass extinction was caused by nickel-rich aerosols from volcanic eruptions. The study uses nickel isotope analyses to demonstrate a direct link between global dispersion of Ni-rich aerosols, ocean chemistry changes and the mass extinction event.
Researchers found that larger amphibian females lay more eggs, reducing extinction risk, while large mammals bear fewer offspring per birth. This challenges the long-held theory that larger species are more at risk of extinction.
A new study provides evidence for a previously unknown mass ocean extinction event that nearly wiped out shark species 19 million years ago. The study found that sharks declined in abundance by over 90% and in morphological diversity by more than 70% during this period.
A massive die-off of sharks occurred 19 million years ago, with more than 70% of the world's sharks dying off - a phenomenon not seen since the Cretaceous-Paleogene mass extinction event 66 million years ago.
A new study reveals that human impact on freshwater ecosystems is causing unprecedented rates of species loss, threatening entire ecosystems. The predicted recovery time for biodiversity decline may be longer than 12 million years, as seen in previous mass extinction events.
Researchers have identified a specific brain region that facilitates recovery from long-term traumatic memories, known as the nucleus reuniens. By enhancing its activity, they found that long-lasting traumatic memories can be facilitated towards safety.
A new study reveals that the End-Permian extinction event, also known as the 'Great Dying', was caused by a rapid spike in global temperatures due to volcanic activity. The researchers found that the region experienced abrupt aridification and changed climate patterns, with high-southern latitudes serving as refugia for moisture-loving...
A new study suggests that it was not dinosaurs but other mammals that competed with modern mammals before and after the mass extinction of dinosaurs. The research identifies the evolutionary limits placed on different groups of mammals, revealing a more complex story of competition between distinct mammal groups.
Researchers found that plant-eaters diversified quickly after mass extinctions and evolved specialized features like powerful jaws to digest tough plants. This enabled them to thrive in environments with drying conditions and expanded groups of herbivores took over roles by pushing competitors aside.
A study reveals that Paleocene mammals had stockier builds and more mobile joints than expected, indicating they adapted quickly to survive and thrive. Their anatomy suggests a key role for ground-dwelling lifestyles in their success.
Early human arrival on islands may not have contributed to insular fauna extinction. However, anthropogenic activity increased during the Holocene Epoch, accelerating extinctions.
A study found that 70 of 134 ancient sea-dwelling invertebrates exhibited 'dead clades walking,' where groups survive an extinction event but never regain their diversity, challenging the sudden disappearance view of mass extinctions.
A study analyzing 588 fossil land vertebrate specimens from the Karoo Basin, South Africa, found high extinction rates initially co-occurred with low origination rates. The ancient mammal relative Lystrosaurus experienced population peaks both before and after the end-Permian extinction event.
Scientists have found that the Earth's largest mass extinction event took place on land, occurring over a period of millions of years. Researchers analyzed fossil data from four-legged animals in what is now South Africa and discovered that life on land underwent a longer period of extinctions compared to the oceans.
A new metric, STAR, measures the impact of human activities on biodiversity, revealing that conserving 9% of land could reduce global extinction risk by half. By abating threats in key areas, companies and countries can report reductions in species loss and contribute to the global biodiversity target.
The Pyrenean Ibex's decline was driven by a combination of hunting and infectious diseases, which further reduced its already low genetic diversity. The species' eventual extinction highlights the importance of historical biological collections for genetic analyses of extinct species.
Researchers found that climate change poses a significant extinction threat to Tidestrom's lupine, a plant with only seven known populations. A 1°C temperature increase is projected to reduce individual plants by 90%, with local extinction likely for one population.
Researchers analyze Deccan Traps CO2 budgets and find that volcanic carbon emissions alone couldn't cause global warming, but magmas releasing CO2 beneath the surface could explain a warming event. The study provides new insights into the role of volcanism in shaping Earth's climate.
The study reveals that despite local coral loss, global extinction risk is lower for most species due to broad geographic ranges and huge population sizes. The researchers estimate that only a few dozen of the 80 considered species are threatened with extinction.
A team of researchers, including Graduate Center professor Stephen Chester, analyzed fossils of Purgatorius, the oldest genus in a group of early-known primates. The discovery provides insight into how life on land recovered after the Cretaceous-Paleogene extinction event that wiped out dinosaurs.
Researchers have found asteroid dust inside a Chicxulub impact crater, confirming the link between asteroid impacts and dinosaur extinction. The discovery seals the deal, with elevated levels of iridium and other asteroid elements matching those in geologic layers worldwide.
The study documents the discovery of Purgatorius fossils, which are estimated to be 65.9 million years old, providing insight into primates' evolution and diversification after the Cretaceous-Paleogene extinction event. The findings suggest that primates likely emerged by the Late Cretaceous period and lived alongside large dinosaurs.
New research suggests climate change, not overhunting by humans, led to the extinction of mammoths and other megafauna in North America. The findings, based on a new statistical modelling approach, show that drastic temperature swings around 13,000 years ago initiated the decline and extinction of these massive creatures.
Three of five sawfish species are critically endangered due to easily caught rostra in fishing nets and valuable fins in the shark fin trade. Conservation efforts focus on eight countries where protections can save the species; adequate protections exist in Australia and the US for some remaining populations.
A new study reveals that specific enzymes outside medium spiny neurons contribute to addiction plasticity, driving drug-seeking and extinction behaviors. The discovery highlights the importance of extracellular matrix remodeling in addiction and suggests novel molecules as potential targets for treatment.
A new study led by Universität Bayreuth researchers found that future climate-related species extinction could be less severe than predictions based only on current global warming trends. The research team used palaeobiological and climate science models to investigate how long-term temperature trends and short-term changes affect spec...
A team of researchers studied over 3,500 leaf fossils from Patagonia, Argentina, and found a surprising 92% species-level extinction rate in the region. The study suggests that despite high extinction rates, South American plant families largely survived and grew more diverse during the Paleogene period.