The team discovered a tiny, wormlike creature named Ikaria wariootia, the earliest bilaterian ancestor of modern animals, including humans. The creature lived over 555 million years ago and had a distinct head and tail, with rudimentary sensory organs.
Research reveals that animals like goats, termites, and elephants can suppress fires by altering plant consumption and habitat structure. Grazing animals can increase wildfire severity if not managed strategically, while insects stimulate plant defenses against flames.
A new study in PLOS Biology identifies a regulator of jellyfish egg release, shedding light on the evolution of complex hormonal control in animals. The discovery sheds insight into how oocytes transform into eggs and may hold clues for understanding the link between sexual reproduction and nutrition in animals.
Scientists have found that gene loss played a crucial role in the evolution of animals, particularly in deuterostomes and ecdysozoans. The study revealed unprecedented levels of gene loss in these lineages, contradicting the assumption that evolution leads to increased complexity.
The study found that human disturbance increased the proportion of trees with seeds dispersed by animals, leading to a shift towards small-seeded species. These changes could have long-term implications for carbon storage and drought sensitivity in tropical forests.
A pilot study by the University of South Australia has successfully recorded heart and breathing signals from nine species of Adelaide Zoo's animals using high-resolution digital cameras. The technique allows for remote monitoring of wild animals, potentially leading to earlier detection of illness and reduced vet visits.
A new study from NIH scientists found that remdesivir successfully prevented MERS-CoV disease in rhesus macaques and improved their condition when given after infection. The results support additional clinical trials of remdesivir for MERS-CoV and COVID-19.
A team of researchers has made a significant discovery about the neural mechanisms of consciousness. By stimulating the central lateral thalamus in macaques under anesthesia, they were able to wake the animals and elicit normal waking behaviors. This breakthrough sheds light on the specific area of the brain responsible for consciousness.
A study by Trinity College Dublin reveals that zoos with diverse animal collections, especially mammals, and large animals like elephants and tigers, attract more visitors. Higher attendance leads to increased conservation contributions in the wild.
A new study found that protecting large animals and plants can reduce wild animal biomass by 44% and soil fertility by 92%, highlighting their fundamental role in ecosystem integrity. Larger organisms transport nutrients, promoting productivity and ecological services.
A study published in PLOS ONE describes five trackways containing 25 footprints from three types of animals: small synapsids, large dinosaurs, and quadrupedal dinosaurs. The fossils suggest that a variety of animals survived the intense environmental stress caused by volcanic activity.
Fossil record will be unique in Earth's history with many complete hominid skeletons, as human activities alter burial practices and increase animal density. The Anthropocene era will leave an unmistakable signal for paleontologists 100,000 years from now.
The Quantitative Colour Pattern Analysis (QCPA) framework uses digital image processing techniques to analyze complex visual information in animals. This enables researchers to understand how animals see the world, including color patterns and behavior, which drives their behavior.
A new study reveals that animal-like embryos existed 609 million years ago, long before the emergence of definitive animals. The research found that Caveasphaera fossils displayed stages of development similar to those seen in living animals, including humans.
Researchers discovered fossils of Caveasphaera, 609 million-year-old single-celled relatives of animals, revealing evidence that animal-like embryonic development evolved before complex animals appeared in the fossil record.
Researchers from Yale School of Forestry & Environmental Studies propose a new framework for understanding same-sex behavior in animals, arguing that these behaviors are not costly but rather neutral and advantageous. They suggest that these tendencies likely evolved in the earliest forms of sexual behavior and may be more common than ...
Research on zoo animals reveals a bias towards 'popular' mammal species, such as chimpanzees, with globally more fish and birds in zoos. The study suggests that zoos offer unique opportunities to study underrepresented species, contributing valuable insights into animal health, conservation, and welfare.
A new deep learning toolkit, DeepPoseKit, has been developed to measure animal body posture with high speed and accuracy. The tool can be applied to study wild animals in challenging field settings and provides an accessible system for non-experts to apply machine learning to their behavioral research.
Researchers at Tohoku University have discovered the cellular mechanisms behind jellyfish's remarkable ability to regenerate body parts. The study found that free-swimming adult jellyfish possess actively proliferating cells controlling body-size, tentacle shape, and regeneration.
Researchers discover that the physical structure of animal groups, not individual animals, plays a crucial role in processing information and responding to environmental changes. By changing the group's structure, individuals can amplify risk signals and respond effectively to threats, highlighting the importance of social connectivity.
Researchers mapped global trends in antimicrobial resistance rates among food animals in low- and middle-income countries between 2000 and 2018. The study found that antibiotic-resistant bacteria are on the rise, with high rates of resistance identified in antibiotics commonly used in food production.
Boston University School of Medicine researchers have developed a new protocol to produce large quantities of AAVs, which can deliver specific genes into humans and animals. The advanced technique bypasses developmental effects, saving time and reducing the number of animals used in research.
A study on Soay sheep reveals that their immune responses to parasitic worms decline through adulthood, leading to increased mortality rates. The findings provide the first evidence linking declining immune function and survival in wild animals, highlighting a critical issue for human health as well.
A study by Vincent Richards and colleagues found that antibiotic-resistant genes are being transmitted from humans into animal species, including livestock, companion animals, and wildlife. This reverse zoonosis is facilitated by high bacterial genome plasticity, allowing bacteria to adapt quickly to environmental changes.
Researchers from the GLOBE Institute found that massive fluctuations in ocean oxygen levels during the Cambrian explosion were influenced by animal behavior. The discovery suggests that animals may have controlled their own development through adjustments to oxygen levels, shedding light on Earth's 'heartbeat' and its impact on life.
A team of scientists has discovered fossils of an ancient animal species, Yilingia spiciformis, which date back approximately 550 million years. The fossilized remains and trails left by the creature provide conclusive evidence of segmented and mobile animals evolving during this time period.
Researchers found that memory plays a crucial role in guiding mule deer migrations, with past migration routes and seasonal ranges having a significant influence on their choice of path. This cognitive map helps animals navigate tens to hundreds of miles between seasonal ranges.
A study published in Evolution Letters reveals that many carnivorous species share a common ancestor dating back 800 million years, while herbivory is more recent. The research suggests that animals tend to adopt the same dietary category as their closely related species, implying that switching diets may not be easy.
Researchers found that invasive plants have a negative impact on native animals, reducing their abundance and altering ecosystem functions. In contrast, exotic animals are unaffected by invasive plants.
The project aims to determine the forces that dictate underwater walking, shedding light on the colonization of land by animals. By studying Spanish ribbed newts, researchers hope to gain insight into the biomechanics of animal movement.
Researchers at the University of Alaska Fairbanks will study the metabolic changes in hibernating animals to develop new treatments for human health problems. The five-year grant will support research into hibernation-inspired therapies for conditions like muscle loss, obesity and cardiovascular diseases.
Researchers analyzed blood samples from 21 animals to identify biomarkers for diseases like lung tumors and Alzheimer's. These biomarkers are evolutionarily conserved, meaning they occur in humans and other species with similar function.
A legal framework is needed to address human-induced land use change and its impact on disease risk. Patricia Farnese proposes adaptive models and guidelines for land-use planning that consider the intersection of human activities and natural landscapes.
Small mammals use roadside vegetation foraging in Canada, contrary to assumptions that wildlife passages are only for crossing. The study suggests maintaining habitat between highways could attract animals to roads, increasing the risk of collisions.
Research found that brain activity in pairs of mice synchronizes during social behavior, with individual cells responding to self and social partner behaviors. The level of synchronization predicted the amount of interaction between the animals.
A team of researchers at the University of Queensland has challenged the long-held theory that multi-celled animals evolved from a single-celled ancestor resembling a modern sponge cell. Using new technology, they found that the first multicellular animals were more like a collection of convertible cells, contradicting years of tradition.
A new study found that blind adults develop rich insights into animal appearance by inferring from biological classifications and linguistic communication. Blind participants organized animals similarly to sighted ones in shape and texture groups, but disagreed on color groups.
A large-scale study has investigated the composition of microorganisms in the digestive tract of animals, revealing evolutionary relationships between host species and their gut microbiomes. The study found that closely related species share similar microbial communities, while diet also plays a significant role in shaping the gut micr...
Researchers have identified a new strain of canine distemper virus in wild animals in New Hampshire and Vermont, which is highly contagious to domesticated dogs. The virus has been found in eight infected mammals, including gray foxes, raccoons, and skunks, and is significantly distinct from vaccine strains.
Researchers discovered a gene that enables bacteria to resist linezolid in cats and dogs at a UK animal hospital, suggesting potential transmission between animals and humans.
A new study reveals that petting zoos can harbor highly virulent, drug-resistant bacteria that can be transmitted to visitors, mostly children. The study found that animals in petting zoos are a potential source of shedding these pathogens, which can cause serious illnesses.
Researchers studied 250 mammals in zoos to investigate the connection between digestive systems and resting postures. They found that body size plays a significant role in determining the animals' resting posture, with larger animals more likely to lie on their sides and smaller ones on their chests.
A team of researchers detected the Zika virus in feces of nonhuman primates in South America, revealing potential reservoirs. The study used a novel method to collect and test fecal samples, overcoming previous limitations in testing for the virus in other bodily fluids.
A study by Cardiff University reveals that people and animals traveled extensive distances to participate in prehistoric feasting rituals near Stonehenge. The research found that pigs were sourced from locations as far away as Scotland and North East England.
Researchers analyzed stable isotopes in Louisiana roadkill to understand ancient wetland ecosystems. They found that the method was effective but not always precise, as modern animals have diverse diets that don't segregate neatly into boxes.
The study highlights the importance of riverside corridors in helping animals navigate a changing climate, with the Northwest's mountainous regions emerging as critical habitats. Riparian areas along rivers and streams will become vital 'superhighways' for wildlife seeking refuge from warmer or drier conditions.
Researchers introduce a new approach to analyzing genome content in animals, resolving long-standing debates about the origin and development of tissues and organ systems. The method yields consistent results with classical views of animal phylogeny, shedding light on early evolutionary history.
Researchers studied Syrian hamster brain changes during hibernation and found that phosphorylated tau, a protein implicated in AD, is rapidly reversed upon waking. Hibernating animals show high levels of long-chain ceramides, which may help protect neurons from oxidative damage.
Researchers found 254 species in Basel gardens, including rare and threatened species. Structural diversity is key to increasing species diversity in these ecosystems.
Analysis of prehistoric dog skulls and comparisons with modern animals have uncovered the hunting methods used by the world's first dogs, 40 million years ago. The study found that these early canines pounced on prey in a similar way to modern species like foxes and coyotes.
A study comparing 100 venomous snake species found that venoms evolved to be more potent against closely related prey animals. The amount of venom also depends on size and environment, with terrestrial species having the most venom.
A recent study sequenced the genome of the Hawaiian bobtail squid, revealing unique evolutionary footprints in symbiotic organs that house beneficial bacteria. The research provides clues about how these partnerships are maintained and lays the groundwork for furthering knowledge of human microbiome relationships.
A new study reveals that animal movements can trigger direct or indirect feedback effects altering landscapes' capacity to absorb or release carbon. This integration of animal ecology and remote sensing can improve predictions and management of carbon cycling across ecosystems.
A new study from the University of Washington and Stanford University reveals that global warming was the primary cause of the Permian mass extinction, which wiped out 80% of oxygen in the oceans. The research predicts that high-latitude species were nearly completely wiped out due to their high oxygen demands.
A study by researchers from Bigelow Laboratory for Ocean Sciences found that mussels readily take in microplastic fibers but quickly flush most of them out. This suggests that marine animals may play a role in mitigating the impact of microplastics on ecosystems.
A recent study published in PLOS Biology reveals that human environmental effects are favoring the same species everywhere, while unique species are disappearing. The researchers found that species occupying large areas tend to increase in places where humans use the land, while those species that occupy small areas are lost.
Researchers have found that great apes and ravens develop planning capacities through associative learning, rather than human-like mental simulations. The new model shows how animals can learn to make decisions that lack immediate benefits but lead to meaningful outcomes in the future.
Research from the University of Pittsburgh suggests that Klotho protein can rejuvenate muscle healing in old mice. By raising Klotho levels or mitigating its deficiency, researchers were able to restore functional levels of muscle regeneration in aged skeletal muscle.
Researchers design robotic system inspired by jumping copepods and frogs, revealing the importance of body size and entrained water mass in achieving maximum jumping heights. The robot's limitations highlight the challenges of entering or exiting air-water interfaces.
Scientists studied animals' sniffing behavior to design a better electronic nose that can detect different odors. The sensor uses airflow control and customized pumps to mimic animal sniffing patterns, promising applications in food safety, national security, and more.