A new UBC study analyzed 825 marine fish species and found that 499 are projected to face very high extinction risks due to overfishing and climate change. Effective fisheries management and low greenhouse gas emissions can reduce this risk by up to 63%, saving hundreds of fish stocks from becoming endangered.
A study found that the end-Cretaceous mass extinction event led to the shift in dominance from lamniform to carcharhiniform sharks. Carcharhiniforms, including Tiger and Hammerhead sharks, proliferated in the post-extinction world.
Researchers created a model to simulate biodiversity history in South America over thousands of years, closely matching observed patterns. The model's results suggest topography and climate play critical roles in species diversification and extinction.
Researchers at Clemson University found that salamanders can alter their behavior and physiology in response to environmental stressors, reducing extinction risk. This new understanding could provide a more accurate assessment of the impact of global warming on salamander populations.
Researchers discovered a brain circuit necessary for unlearning fear in rats. Dopamine activity is crucial for fear extinction, but its specific role varies depending on the brain region involved.
Researchers from Arizona State University study the Ediacaran-Cambrian transition and find a severe marine anoxic event coincided with the decline of early animals. The team integrated geochemical data and fossil records to precisely match evolutionary and environmental events, shedding light on this pivotal moment in Earth's history.
A study published in PNAS found that powerful volcanoes depleted oceans of oxygen millions of years ago, driving mass extinctions. The researchers reconstructed Early Jurassic ocean oxygen levels and linked the event to massive volcanic activity and carbon dioxide increases.
A new study reveals that the asteroid impact that wiped out dinosaurs also caused a mass extinction of forests, leading to the demise of tree-dwelling birds. The research team analyzed fossil records and pollen evidence to conclude that the temporary loss of forests after the impact made it impossible for arboreal birds to survive.
Researchers analyzed plant fossil record and evolutionary relationships to conclude that global forest collapse led to the survival of only a few ancestral bird lineages. These early survivors adapted to life on the ground, laying the foundation for the diverse range of modern bird species.
A team of researchers led by Maya Elrick found that a global marine anoxic event occurred during the Late Ordovician Mass Extinction, which lasted for at least 1 million years and coincided with the extinction of 85% of marine life. The study suggests that low oxygen concentrations in the ocean were a major driver of the mass extinction.
Researchers found that stress can render extinction learning context-independent, allowing patients to transfer knowledge from one situation to another. This could improve the efficacy of exposure therapies for anxiety disorders.
A study published in Geology suggests that major volcanism led to the late Devonian extinction event, marked by a sharp increase in mercury levels in rocks from Morocco, Germany, and northern Russia. The discovery provides new evidence for the role of volcanism in mass extinctions.
A new study links human activities to a massive extinction event that wiped out large mammals globally. The research suggests that size-biased extinctions started at least 125,000 years ago in Africa and spread to other continents as humans migrated, leaving only smaller mammals behind.
Researchers discovered that ocean anoxia, a decrease in dissolved oxygen, played a key role in the Permian-Triassic mass extinction. The team's new technique allowed them to analyze uranium isotopes in carbonates, providing insights into global anoxia and its link to climate change.
A team of scientists found that species with strong male sexual dimorphism are more vulnerable to extinction due to increased energy investment in reproduction. They analyzed thousands of ancient crustacean fossils, including ostracods with distinct sex-specific shapes preserved in the fossil record.
A new study warns of the high risk of extinction for rare coastal martens in Oregon and northern California within the next 30 years. The researchers estimated that only 87 adults remain in two subpopulations, with an extinction risk ranging from 32% to 99%. Habitat loss and human-caused deaths are major threats to their survival.
Researchers from FAU found warning signs of mass extinction existed 700,000 years before the event, including fossil records of dying species. They also note that current global warming, ocean acidification, and oxygen lack are evident in today's biodiversity crisis.
Researchers analyzed sedimentary rocks and found light lithium isotopes in South China's seawater, potentially linking terrestrial and marine ecological crises. The findings suggest a connection between the Siberian Traps' eruptions and the Permian-Triassic mass extinction event.
Researchers discovered six new species of pterosaurs with remarkable diversity in size and shape, contradicting previous studies that suggested a decline before the mass extinction. The fossils date to just over 66 million years ago, revealing that these flying reptiles dominated the skies until their extinction.
New research shows that biodiversity loss can lead to a domino effect of further extinctions, where the removal of one species creates a gap for other species to fill. This can result in simpler ecological communities at greater risk of extinction cascades with potential losses of many species.
Scientists propose a nuanced model for extinction that incorporates body size and metabolic scaling, revealing why animal species tend to evolve toward larger body sizes. The model predicts an energetically ideal mammal size 2.5 times that of an African elephant, making it more stable against extinction by starvation.
University of Oregon geologists discovered unusual seafloor structures indicating heightened worldwide magmatic activity 66 million years ago after the Chicxulub meteor struck. The research suggests seismic waves from the impact triggered accelerated volcanism globally, contributing to a mass extinction event.
Scientists found little evidence of negative impact from two major mass extinctions on ray-finned fishes, with no significant changes in body shape or jaw shape. The group's remarkable modern diversity is attributed to 400 million years of evolution.
Researchers from UC Davis predict certain traits, such as internal fertilization and long-distance mating signals, can help rare species persist during crises. These traits may provide advantages for chronically rare species when compared to more common species that are likely to face extinction during great extinction events.
Recent studies on passenger pigeon genomics reveal surprisingly low genetic diversity despite large populations. The study suggests that high adaptability allows faster evolution, but also drives a loss in genetic diversity, making the birds more vulnerable to extinction.
Research suggests that asteroid impacts on hydrocarbon-rich areas may have caused global climate changes, leading to mass extinctions. The Chicxulub impact, occurring 66 million years ago, is a rare case of this phenomenon.
The Norian Chinle Formation provides a snapshot of an ancient terrestrial ecosystem with plant and vertebrate remains. A new extinction event occurred between 213-217 million years ago, leading to a shift towards drier conditions.
A study published in Palaeontology found that the Late Triassic mass extinction did not fundamentally alter marine ecosystem function. Despite significant species loss, marine ecosystems continued to operate with reduced diversity among remaining species.
Researchers have found that climatic changes related to the Permian-Triassic extinction event occurred 1 million years earlier than previously thought. The discovery was made in the Karoo Basin in South Africa, where fossils revealed a 'faunal turnover' indicating early signs of the extinction event.
A recent study has found that tropical high-altitude beetles are at risk of extinction due to climate change. The research, conducted in the Brazilian Atlantic Rainforest, revealed that two plant-eating beetle groups - weevils and leaf beetles - are highly specialised to high altitudes and may disappear in a warmer world.
Two mass extinction events led to the survival of a low number of 'weedy' species that spread globally, affecting ecosystems and biogeography. The findings shed light on modern high extinction rates and potential consequences for current biodiversity loss.
A team of scientists discovered a global spike in nickel at the time of the Great Permian Extinction, suggesting massive Siberian volcanic eruptions caused significant environmental changes. The eruptions led to intense global warming and depleted oxygen in oceans, contributing to the extinction of over 90% of species.
A new study maps the mysterious loss of the Tasmanian tiger from mainland Australia, tracing its history over 30,000 years. Climate change and increased human activity are found to be key causes of extinction, with a large population of thylacines living in western regions until around 3000 years ago.
Asteroid impact led to rapid genetic evolution in surviving birds, potentially influencing modern bird diversity. Human activities may accelerate similar 'Lilliput Effect', impacting evolution across species.
A study by MIT professor Daniel Rothman suggests that a sixth mass extinction may occur if the world's oceans hold enough carbon to destabilize the system. By 2100, human activities are estimated to add about 310 gigatons of carbon to the oceans, potentially tipping the planet into unknown territory.
A global analysis of 27,000 vertebrate animal species found that those in the Goldilocks zone face a lower risk of extinction than larger or smaller species. The largest and smallest species are disproportionately threatened by human activities such as harvesting and habitat loss.
The study reveals an association between body size and extinction risk among vertebrate species. The results indicate that lightest vertebrates are most at risk of habitat degradation due to human activities, while the heaviest vertebrates face a higher risk of direct killing by humans.
A study documents the local extinction of the American pika from a 64-square-mile area in California's northern Sierra Nevada mountains due to climate change. The species is expected to decline drastically by 2050, with pikas disappearing from an area that stretches from near Tahoe City to Truckee.
A new study compares the recovery of land-dwelling vertebrates from different localities in southern Pangaea, finding stark differences in ecological diversity levels. The research suggests that carnivores and archosaurs were diverse and abundant in Zambia and Tanzania but relatively uncommon or absent in South Africa.
A Johns Hopkins paleontologist and her team report that human arrival and activity led to the extinction of native mammal species in the Caribbean. The study found that 60% of endemic mammals went extinct after humans arrived, with current conservation efforts focusing on protecting bats and insectivores.
Scientists estimate that a massive asteroid impact could have triggered 2 years of darkness on Earth, shutting down photosynthesis and drastically cooling the planet. The research found that soot in the atmosphere would have blocked sunlight, causing a steep decline in average temperatures.
A new study suggests that human settlement of Jamaica may have led to the extinction of the Xenothrix mcgregori monkey species. The research uses radiocarbon dating to estimate that the monkey died between 505 and 573 A.D., overlapping with non-European human arrival on the island.
The article explores de-extinction efforts, highlighting potential ecological benefits and challenges. Experts debate whether de-extinction initiatives aid or hinder conservation efforts, with concerns about habitat destruction and climate change.
A study by James Muirhead and colleagues suggests that the formation of intrusive igneous rock sills triggered the End-Permian Mass Extinction. The team found that extreme heat from sill emplacement exposed sediments to contact metamorphism, liberating massive greenhouse gas volumes that drove extinction.
A recent study found that the scent of a praying mantis can cause fruit flies to spend less time eating, more time being vigilant, and produce fewer offspring, leading to increased extinction risk. The study sheds light on the Allee effect, a long-standing biological conundrum related to population size and extinction.
Researchers have found and dated artifacts in northern Australia indicating human arrival around 65,000 years ago. This new date calls into question the argument that humans caused the extinction of unique megafauna, suggesting a coexistence view of early humans and wildlife.
A new global analysis shows that species most at risk live in areas just beginning to see the impacts of human activities. Intact forest landscapes deserve higher priority for conservation dollars than heavily impacted areas, according to researchers.
Researchers found that environmental disturbances can cause sudden population collapses, making extinction easier even for large populations. This has implications for predicting and controlling viral epidemics.
A new study finds over 30% of vertebrate species are declining in population size and range, with tropical regions hit hardest. The research suggests that the disappearance of species tells only part of the story of human impact on Earth's animals.
Researchers measured habitat fragmentation for over 4,000 species of land-dwelling mammals and found that species with more fragmentation are at greater risk of extinction. The study has implications for global mammal conservation, suggesting urgent action is needed to protect remnant habitats and restore connectivity.
A new study reveals that most frog species descended from just three lineages that survived the mass extinction event, with rapid radiation occurring due to available environmental niches. The loss of dinosaurs led to the rise of trees and flowering plants, which in turn favored the evolution of frogs.
A new study has found that the mass extinction event that wiped out dinosaurs simultaneously led to the evolution of three major lineages of modern frogs, which make up about 88% of living species. This finding suggests that the survivors filled up new ecological niches after the extinction event, resulting in the rapid diversification...
A new study reveals that a mass extinction 66 million years ago sparked an explosion of new frog species on different continents. The research, compiled by scientists from the University of Texas at Austin and other institutions, provides the most accurate frog family tree to date.
Despite massive climate change and volcanic eruptions, larger fish were no more likely to go extinct than small fish during the Permian-Triassic mass extinction. The study used a detailed analysis of fossil records to conclude that body size played no role in determining which species survived or went extinct.
Researchers are surveying vultures in Ethiopia to estimate populations and distributions, track movements, and evaluate human repercussions of vulture declines. The Bab-el-Mandeb Strait is a critical site for conservation efforts due to its large concentration of migrating birds from Eurasia and Africa.
A recent study reveals that a third of marine megafauna disappeared around three to two million years ago, leading to a significant reduction in species diversity. The loss of functional entities resulted in an erosion of ecological functions, with 17% of total diversity disappearing and 21% changing.
Researchers found clear links between volcanic activity and the end-Triassic mass extinction. The study revealed repeated large emissions of carbon dioxide from volcanoes, which led to a profound impact on the global climate.
Researchers dated flood basalts to confirm magmatic activity coincided with mass extinction, linking CO2 release and climate change to species disappearance.
Researchers from McGill University and the University of Minnesota warn that humans are driving the sixth mass extinction, threatening biodiversity. However, they offer specific strategies to turn this tide, suggesting investments in conservation could provide economic benefits.
A new study found that species from groups with high ongoing diversification are at greater risk of extinction than slowly diversifying lineages. Saving just 20 species could safeguard an estimated 1.4 billion years of evolutionary history for fast-speciating amphibian groups.