Researchers found the fossil record of the earliest North American coral species that reappeared after a mass extinction event, providing insights into survival and recovery. The study reveals that corals took over 20 million years to recover from the event, which was likely caused by massive global climate change.
A new study documents rare early Jurassic corals from New York Canyon in west-central Nevada, shedding light on coral recovery after the end-Triassic mass extinction event. The findings provide valuable information on biotic responses during this critical period.
New study on Karoo Basin finds no support for climate aridification, floral collapse, and tetrapod turnover as part of the extinction event. Multidisciplinary data indicate that terrestrial response occurred earlier than previously thought.
A new study found that species extinction can lead to secondary extinctions of parasites, compromising ecosystem stability and biodiversity. Researchers identified key host species that contribute to the overall network structure of fish communities and are essential for maintaining a healthy ecosystem.
The world's first known mass extinction, which occurred around 540 million years ago, is now believed to have been caused by the emergence of complex animals capable of altering their environments. These 'ecosystem engineers' changed the planet in ways that made it difficult for earlier multicellular organisms like Ediacarans to survive.
Researchers found malformed fossil plankton with high concentrations of toxic metals, linked to ocean anoxia and potential extinction causes. The study suggests that metal poisoning may have contributed to some world's largest extinction events.
A recent study models the impact of climate change on marine biodiversity, predicting that warming oceans will lead to significant changes in species distribution. The researchers found that some species will expand into new regions, while others with restricted ranges are likely to face extinction.
Scientists have identified a new species of pre-mammal, Ichibengops, which lived around 255 million years ago. The species features a unique groove above its teeth, potentially for transmitting venom.
Scientists confirm human activity, not climate change, as main driver of megafauna extinction over the last 80,000 years. The study's findings shed light on a long-standing debate and suggest that early humans were responsible for the demise of iconic species such as the woolly mammoth and sabretooth tiger.
A team of computer scientists found that mass extinctions can speed up evolution in robots, leading to more efficient and creative problem-solving. The study, published in PLOS ONE, used simulations to demonstrate how extinction events promote the emergence of novel features and abilities.
A new study by an international team of scientists found that competition from cats drove the extinction of many ancient dog species. The researchers analyzed over 2000 fossils and discovered that felids had a deadly impact on the diversity of the dog family, contributing to the demise of up to 40 species.
A new study by UK scientists found that geographically widespread animals are not immune to extinction during global mass extinction events. In contrast, they discovered that widely distributed animals are just as likely to suffer extinction as those with smaller geographic ranges.
A recent study found that Hawaii has lost a significant portion of its unique and diverse invertebrate species, with only 15 out of 325 recognized Amastridae species still alive. Globally, the team estimated that up to 14% of Earth's animal species may have been lost due to human activities.
A new study using ancient DNA and paleoclimate data found that rapid warming events played a greater role in the extinction of megafauna than human activity. The researchers analyzed DNA records over 50,000 years and compared them to climate event records from Greenland ice cores.
A team of researchers has discovered that abrupt warming events played a key role in the mass extinction of megafauna during the last ice age. The study found that rapid warming, not sudden cold snaps, was the cause of extinctions among species such as mammoths and giant sloths.
Researchers find that presenting a new outcome instead of omitting an expected threat can lead to more effective fear extinction in both rats and humans. The study's findings have implications for the treatment of anxiety disorders, including posttraumatic stress disorder and phobias.
Scientists discover that mass extinction event triggered by asteroid strike led to the rise of ray-finned fishes as the ocean's most diverse and dominant vertebrates. The abundance of ray-finned fish teeth began to explode after the extinction event, becoming eight times more abundant in 24 million years.
The study reveals that Darwin's finches have reached an equilibrium due to increased diversity, with no room for new species unless one existing species becomes extinct. Other species like mockingbirds are still diversifying and evolving more slowly.
A new study confirms that humans are causing a rapid pace of species loss, with extinction rates up to 100 times faster than normal, threatening ecosystem services and human survival. The researchers warn that inaction will lead to irreversible damage, but call for urgent conservation efforts to avoid a sixth mass extinction event.
A survey reveals that UK hospital post mortems are disappearing, with only half of one percent carried out in 2013. This decline has significant implications for quality assurance, public health, and the teaching of medical students.
A new study from the University of East Anglia suggests that critically endangered species should be left to breed in the wild, rather than in captivity. The research challenges the assumption that captive breeding is always a good idea when a species is close to extinction in the wild.
A new study led by University of Southampton researchers suggests that ocean acidification may not have caused the mass extinction of ammonites and other planktonic calcifiers. The research found that the asteroid impact was the primary cause of the extinctions, but not due to ocean acidification levels being too weak.
A study using fossils to predict extinction risk identifies vulnerable ocean ecosystems and species, providing a baseline for conservation efforts. The analysis finds that animals with small geographic ranges and certain groups are more prone to extinction, highlighting the need for targeted conservation and management.
The Capitanian extinction, dated to 262 million years ago, is now recognized as a major extinction event globally, with severe losses in brachiopods at high latitudes and widespread loss of carbonates across the Boreal Realm. This new evidence supports its status as a true mass extinction, updating the 'Big 5' list to the 'Big 6'.
The study suggests that highly acidic oceans caused the extinction event, which lasted around 10,000 years. The research provides new insights into the threat posed by modern-day ocean acidification.
Research found oxygen-depleted conditions and hydrogen sulfide poisoning in the Panthalassic Ocean during the end-Triassic mass extinction. The study provides direct evidence of anoxic and euxinic conditions affecting food chains, highlighting the potential consequences of rising CO2 levels on marine ecosystems.
Researchers found that beetles have among the lowest family-level extinction rates due to their ability to adapt to changing environments. The study suggests that beetle diversity may be due to an historically low extinction rate rather than a high rate of new species emerging.
A new study identifies 15 animal species at the highest risk of extinction due to low conservation opportunities. Researchers estimate that conserving these species would require a significant investment of $1.3 billion annually.
A team of Brazilian scientists calls for urgent public and private collaboration on fisheries management to protect the nation's aquatic fauna. The scientists emphasize the importance of annual research-based updates to lists of threatened species and a permanent stock evaluation system to reduce extinction risk.
A new study found that hormone-disrupting chemicals, such as clotrimazole, can skew sex-ratios in zebrafish towards males, increasing the risk of extinction for endangered species. Climate change amplifies these effects, particularly in warmer water temperatures.
A unique combination of ecological, environmental, and behavioral factors led to the abundant production and preservation of Early Triassic swim tracks. Delayed ecologic recovery, depositional environments, and tetrapod swimming behavior contributed to their formation.
Research suggests that Earth's movement through dark matter may perturb comets' orbits, leading to heat in the Earth's core, which could trigger events like volcanic eruptions and changes in sea level. This phenomenon may hold the answer to understanding large-scale extinction events.
A new study suggests that understanding species extinction can help drive cancer cells to annihilation. The authors identify two critical factors governing species resistance to extinction: evolveability and robustness to perturbations. These characteristics may have important correlates among some types of cancer cells.
A new study reveals that plants have been highly resilient to mass extinction events, with negative rates of diversification never sustained for long periods. Plant groups such as flowering plants (angiosperms) experienced a rapid increase in diversity shortly after the Cretaceous-Paleogene asteroid impact.
Researchers studied sediment rocks in Italian Dolomites and found high acidity levels, similar to vinegar or lemon juice, indicating repeated acid rain events. These acidic conditions led to a decline in plant life, causing a collapse in the food chain and contributing to the mass extinction of end-Permian life on land.
A new study by the University of Sheffield has found that 20-25% of well-known sea species are threatened with extinction. The research highlights the need for more comprehensive assessments of marine species, which currently have been completed for only three percent of cases.
New research confirms that massive volcanic eruptions 66 million years ago spewed climate-altering gases into the atmosphere before and during the K-Pg extinction event, which claimed non-avian dinosaurs. The Deccan Traps' eruptions are now considered a key factor in the extinction event.
A DNA study from Duke University sheds light on the extinction of giant lemurs, finding that their smaller population sizes made them more susceptible to extinction. The research suggests that lessons learned from ancient DNA can be useful in protecting remaining species.
Scientists sequenced the genomes of 48 bird species to reveal a new family tree for birds and understand their rapid evolution after the mass extinction. The study resolves fundamental questions about bird diversity and adaptations.
A recent study sequencing the genomes of 45 avian species has provided the most reliable tree of life for birds, shedding light on their rapid emergence from a mass extinction event. The findings reveal that modern birds diverged rapidly and their sex chromosomes have evolved differently than those in humans.
A large international group of scientists has published the results of a first-ever look at the genome of dozens of common birds, revealing how modern birds evolved after the mass extinction that wiped out dinosaurs. The research also provides insight into how songbirds learn to sing and brain connection with human speech.
A recent survey in Honduras found that residents prefer to hunt and consume female Valle de Aguán spiny-tailed iguanas carrying eggs. This unsustainable practice is threatening the species' extinction. The study recommends educating residents on sustainable harvesting methods to mitigate the impact.
A mass extinction event played a crucial role in the dominance of ray-finned fish today. Bony fish diversified heavily after the Permian-Triassic boundary extinction event.
Leading coral reef scientists argue that a shift away from extinction threat is needed to protect marine ecosystems. Researchers found no relationship between species abundance and geographic range, highlighting the weaknesses in current approaches to assessing extinction risk.
Researchers found that oxytocin facilitates extinction of conditioned fear in humans by reducing activity in the amygdala and increasing stimulation in fear-inhibiting regions. This basic research could lead to new treatments for anxiety disorders.
A new study reveals that canine distemper virus (CDV) poses a significant risk to tiger populations, particularly in smaller groups. Modeling shows that CDV infection can increase the 50-year extinction probability of tigers by up to 55.8 percent.
A study identified 181 California dams that may need increased water flows to protect native fish, with the top priority dams including Trinity Dam and New Melones Dam. The new tool provides a scientific basis for dam operators to prioritize management and reduce the risk of extinction for many native species.
Researchers presented findings on North America's future fire threats and the role of humans in megafauna disappearance. Paleontological data is being used to inform studies of modern ecological processes and communities.
New research suggests that Chicxulub's impact was not the sole cause of the end-Cretaceous mass extinction. Volcanism, climate changes, and other factors also played significant roles in four out of five major mass extinctions in Earth history.
Researchers compiled two new datasets on insect evolution, finding that families of insects with metamorphosis diversify more quickly than others. The findings suggest that these insects are responsible for a higher rate of diversification and a greater turnover of species.
A study of fossilized leaves reveals that the meteorite impact that ended the dinosaurs' reign favored fast-growing, deciduous plants. This shift from slow-growing evergreens to fast-growing species indicates that the extinction was not random, but rather a response to the major disturbance caused by the impact.
A conservation biologist's study provides crucial guidance for rescuing the critically endangered pupfish by establishing a captive breeding program. The research found that transferring pupfish eggs to a facility in the fall and limiting adult migrations are critical for reducing impact on the wild population.
A new study estimates the pre-human extinction rate to be 0.1 extinctions per million species per year, 10 times lower than previously thought. This means the current rate is 100 times worse, with extinctions occurring 1,000 times more frequently than in the past.
Scientists have found abundant nanodiamonds distributed across three continents, providing conclusive evidence of a 13,000-year-old cosmic impact. The discovery supports a hypothesis linking the impact to the mass extinction of megafauna in North America.
A new review in Science cautions that the loss and decline of animals are contributing to what appears to be the early days of the planet's sixth mass biological extinction event. Human activity and habitat loss are driving the die-off, with large animals facing the highest rate of decline.
Researchers predict ranavirus as a potential new culprit in amphibian extinctions, especially in isolated wood frog populations. The study suggests that frequent exposure to the virus can lead to extinction within five years.
Researchers at Emory University discovered that individuals diagnosed with PTSD treated with ARBs or ACE inhibitors exhibited fewer PTSD-like symptoms. The study found that the medication losartan enhanced fear memory extinction, a process disrupted in individuals with PTSD.
A Curtin University researcher has discovered that volcanic eruptions in Australia 510 million years ago led to the first known mass extinction of complex life. The study found a correlation between large volcanic province eruptions and climate shifts, resulting in mass extinctions over the last 550 million years.
A new study reveals that human activity is driving extinction rates 1,000 times higher than the natural rate, emphasizing the need for better conservation strategies. New technologies are helping scientists collect and share information on species distribution, habitat destruction, and land-use change.
A new study led by Duke University finds that emerging technologies can efficiently identify species at greatest risk and take steps to protect them. Online databases, smartphone apps, and crowd-sourcing are making it easier to collect data on species.