A study found that thyroid hormones hindered the ability of early mammals to regenerate their heart tissue, leading to modern humans' susceptibility to irreparable damage. The researchers discovered a connection between these hormones and the transition from ectothermic to endothermic animals.
A new study reveals that a diet rich in birds is the key factor driving influenza A virus exposure in wild African mammals. Herbivores showed low prevalence and diversity, while carnivores had the highest diversity and prevalence.
Researchers have uncovered three new species and subspecies of ancient mammals that once roamed the Cayman Islands. These mammals, including large rodents and a shrew-like creature, are believed to have gone extinct due to human arrival and introduced species.
Researchers found that rats without a Y chromosome develop as males due to the expression of different zinc finger protein genes. These genes compensate for the absence of SRY and stimulate male sexual differentiation.
A new study reveals that polar marine predators have a metabolic advantage in cold temperatures, allowing them to thrive with greater species richness at the poles than in the tropics. This challenges the typical latitudinal gradient of increasing diversity towards the equator.
A study by Radboud University ecologist Luca Santini found that mammals living in urban environments produce more young, which is likely due to high mortality rates. Different groups of mammals use various strategies to adapt, such as producing larger litters, having brains and bodies better suited for their environment.
A recent study by Medical University of Vienna professor Leopold Eckhart reveals the key molecular and evolutionary origins of mammalian adaptations in skin proteins. The research found that fully aquatic mammals require only one set of epidermal keratins, suggesting a unique evolutionary path.
Research finds early human ancestors played no role in driving megaherbivore diversity, instead blaming environmental change and CO2 decline. The decline of these large mammals began 4.6 million years ago, before the emergence of tool-bearing hominin species.
Harvard researchers create highly-detailed musculoskeletal model of an echidna forelimb to gain insight into its biomechanics and optimize limb leverage for certain movements. The study also reveals the importance of muscle configuration in supporting limb rotation, a key feature of the echidna's sprawling gait.
A new study reveals that mammals cannot evolve fast enough to escape the current extinction crisis, threatening the loss of unique ecological functions and evolutionary history. Conservation efforts must be improved to prevent further extinctions, with some species facing high risks of disappearing within 50 years.
Researchers found a species of blind cavefish lacking an ancient DNA repair system, previously known only in placental mammals. The discovery supports the 'nocturnal bottleneck' theory, suggesting ancestors of modern mammals lived in darkness before dinosaurs.
A large-scale study using camera trap images from hundreds of citizen scientists reveals that suburban areas have a higher variety of mammal species than expected. The researchers found that some mammals, such as coyotes and bobcats, are adapting to urban environments, while others, like bears, are still found in nearby exurban areas.
A new study led by Harvard University researchers finds that mammal spines have gained new regions during evolution, which enabled them to adapt to different environments. The research challenges the long-held idea that mammal-specific characteristics emerged from a single ancestral blueprint.
Researchers analyzed fossilized backbones and reconstructions to better understand the evolution of mammals' distinct spinal regions. The study found that forelimb reorganization played a crucial role in driving regionalization across the spine, leading to the varied forms of modern mammals.
Researchers found that mammal backbones gained distinct regions during evolution, enabling adaptation to various lifestyles such as running, flying, and digging. The study analyzed fossil records and living animals' vertebrae, challenging the notion of specialization in early land animals.
Scientists discovered that mammals' flexible shoulders played a crucial role in the evolution of their complex backbones. The study found that changes in shoulder structure occurred around 270 million years ago, leading to the development of different spine regions and ultimately contributing to mammal diversification.
A new study reveals that getting smaller was crucial for mammalian evolution, reducing jaw stresses while maintaining feeding power. The research used CT scans and computer simulations to analyze fossil skulls and lower jaws, providing a new explanation for the mammalian jaw's unique structure.
Researchers created ClaaTU, a new algorithm that groups gut microbes based on their ancestry and distribution across mammals, identifying conserved clades potentially playing roles in evolution. Western lifestyles may be linked to reduced gut microbiome diversity.
Researchers found that migratory ungulates develop and persist migration behaviors through social learning of local knowledge. Reintroduced populations showed better green-surfing ability over time, demonstrating the importance of cultural transmission in these nomadic mammals.
A newly discovered mammal fossil contains fossils of 38 babies, providing insight into the evolution of mammals' reproductive strategies. The discovery suggests that a key development in mammalian evolution was trading brood power for brain power.
A genome-wide scan reveals the shared loss of Paraoxonase 1 (PON1) gene function across marine mammal lineages, leaving them vulnerable to neurotoxic chemicals. This loss may be related to PON1's role in fatty acid oxidation and poses a significant health risk for marine mammals living near agricultural runoff.
Researchers found that marine mammals lost the functional Paraoxonase 1 (PON1) gene, which protects land-dwelling mammals from pesticides. This loss may have allowed marine mammals to adapt to a marine environment, but also makes them vulnerable to organophosphate poisoning.
Researchers created a comprehensive family tree and atlas of mammals, connecting nearly 6,000 living and recently extinct species. The database includes human-induced regional range losses and provides new baselines for restoration, changing scientists' beliefs about what is 'natural' or not.
Researchers have found that widespread transfer of genes between species has radically changed the genomes of today's mammals. L1 and BovB jumping genes were transferred between 759 species across various domains of life, including plants, animals, fungi, reptiles, and insects.
Research shows bears disperse seeds through their scat, benefiting small mammals like mice and voles. These animals feed on the seeds, sometimes further dispersing them, creating a network of seed-filled hoards.
Researchers discovered that Anaplasma bacteria alter the microbiota of mouse and shrew spleens, changing bacterial compositions. The study highlights wild animals as potential reservoirs for tick-borne diseases with public health importance.
A recent study published in the Proceedings of the National Academy of Sciences found that narwhals, beluga, and bowhead whales are most vulnerable to vessel traffic in the Arctic. The researchers identified two 'pinch points' where ships and animals are most likely to intersect, including the Bering Strait and Lancaster Sound.
The study uses DNA sequence data to analyze the evolution of testes in mammals, finding that African species lack the testicular descent process due to non-functional genes. This suggests that the testicular descent process was ancestral and lost in these species.
The study analyzed 71 placental mammalian species and found that the genes RXFP2 and INSL3 were either lost or nonfunctional in four Afrotherian species, indicating a more recent origin of testicular retention. This suggests that molecular vestiges can be used to reconstruct evolutionary changes in body parts.
Researchers have discovered ancient Moroccan dental remains that shed light on the history of long-lost African fauna, including embrithopods. The fossilized teeth belong to two new species in the genus Stylolophus and provide evidence for the early evolution of these mammals.
A new study challenges the long-held assumption that plant-eating mammals' diets can be determined by analyzing carbon isotopes in fossil teeth. The researchers found that the value of these isotope analyses changes with body size, leading to a more accurate understanding of extinct species and ecosystems.
Researchers at Case Western Reserve University and other universities have discovered two new species of extinct hoofed mammals known as litopterns from a site in Bolivia. The animals, dating back to the late Miocene epoch, provide insights into South America's rich diversity of living mammals.
A new study reveals human activity is driving mammals to adopt nightlife, changing behavior and physiology; high levels of disturbance lead to increased nocturnal activity by a factor of 1.36.
A new study finds that human disturbance is causing mammals to become more nocturnal, with animals increasing their nighttime activity by up to 68% in response. The shift is consistent across species and types of human disturbance, suggesting a widespread impact on wildlife behavior.
Researchers discovered that pilot whales and Risso's dolphins can recognize the alarming calls of killer whales, leading to evasive actions such as fleeing. The team found unique features in the distressing calls that are not present in other whale species or human screams, suggesting a warning system for potential victims.
A comprehensive survey of mammalian microbiomes found humans to have a significantly lower diversity of skin microorganisms compared to other mammals. This difference may be attributed to modern hygiene practices, habitat, and co-evolution between host and skin microbial communities.
The discovery of two new species of saber-toothed predators in Russia sheds light on the early evolution of mammals and a significant shift in predator roles after the mid-Permian extinction. The findings, published in PeerJ, reveal that a global turnover in predators occurred after this mass extinction event.
A new study exposes the widespread practice of killing aquatic mammals like dolphins, sea lions, and otters for use as bait in global fisheries. The review highlights that more than 40 species have been utilized as bait since 1970, with over 80% deliberately killed for at least one fishery.
A nearly 130-million-year-old fossilized skull found in Utah is evidence that the super-continental split occurred more recently than previously thought. The study suggests that early mammal relatives migrated across several continents during the Early Cretaceous period, occupying various niches similar to modern mammals.
Scientists analyzed 107 mammal genomes to find genes that allowed early ancestors to digest insects. They discovered nearly all mammals have remnants of these genes, suggesting a shared insectivorous diet with our distant ancestors.
A team of scientists found four separate species of mice evolved from one common ancestor on Mindoro Island, which is the smallest known island to support this type of evolution. The discovery provides valuable insights into how mammals can diversify in small areas and has implications for conservation planning.
The discovery of Palawanosorex muscorum, a unique mammal species found in the Philippines' Mt. Mantalingahan, sheds light on the country's rich biodiversity and the importance of protecting its 'sky islands'. The species' habitat is crucial for regulating water flow, which has significant implications for the local economy and population.
Researchers used functional MRI to study Nile crocodiles and found that complex stimuli like classical music trigger activation patterns in the brain. This suggests that fundamental neuronal processing mechanisms of sensory stimuli formed at an early evolutionary stage.
A new study reveals that marine mammals' unusual lung architecture allows them to avoid the bends by creating a ventilation-perfusion mismatch. This adaptation helps to minimize nitrogen uptake and reduce the risk of decompression sickness. However, excessive stress caused by human-made sound can disrupt this system.
Researchers at the National Institute of Genetics have elucidated a neuronal population essential for fear conditioning in zebrafish, revealing a functional equivalent of the amygdala in mammals. This discovery has significant implications for understanding fundamental neural circuits and their evolution.
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.
A new study by Felisa A. Smith et al. found a substantial bias in mammal extinction during human dispersal periods, with species that went extinct being two to three times bigger than surviving mammals. This trend is evident globally and reflects hominin-mammal interactions.
A study of aquatic mammal body size evolution found that environments constrain body size more than terrestrial habitats do. The analysis suggested that thermoregulation and metabolism force aquatic mammals to grow larger than their terrestrial counterparts.
Aquatic mammals are bounded by need to retain heat and difficulties gathering food, limiting their size. The study found that smaller ancestors like dog relatives increased in size more than larger ancestors like hippos to reach an optimal weight of around 1,000 pounds.
Stanford researchers found that aquatic mammal size is bounded by the need to retain heat and difficulties getting enough food. The group analyzed body masses for over 3,800 species and found a convergent evolution toward around 1,000 pounds.
Scientists developed a first laboratory test to pick up traces of manatee's genetic material in waterways. The innovative environmental DNA test can reveal whether one or more of the elusive marine mammals has been in the area within the past month.
New research reveals that fish was a dominant source of protein in the Stone Age diet, with 50-60% of protein intake coming from marine sources. The study uses stable isotopes to analyze human bones and finds that fishing was surprisingly common, even in areas where land mammals were scarce.
The Hispaniolan solenodon's genome sequence reveals it survived the dinosaurs and provides crucial insights for conservation. The data supports subspecies split within the population, requiring independent breeding strategies to ensure their survival.
A new UC Santa Barbara-led study found that ending overfishing can promote population recoveries for many endangered species caught incidentally as bycatch. In about half the cases, overexploiting these mammals, turtles and birds occurs because we're also overexploiting the target species.
Researchers discovered new functional regions in the human genome that are shared with most other mammals, providing clues to disease prevention and mutation resistance. The study used seven unusual species, including elephants and bats, to reveal new candidate elements for shaping clinically-relevant traits.
A new study reveals that primitive air-breathing fish, such as the South American lungfish, exhibit similar mechanisms controlling the heart as mammals. These mechanisms include a periodic breathing pattern and respiratory sinus arrhythmia (RSA), which enables the fish to maximize oxygen uptake during air-breathing bouts.
Researchers from Far Eastern Federal University found that pesticides are accumulated in the fat tissue of seabirds and marine mammals. The study, published in Marine Pollution Bulletin, showed high levels of organochlorine pesticides in these organisms, particularly in those with higher fat content.
A new study confirms the value of iDNA methods in biodiversity surveys, identifying certain ground birds and bats for the first time. Leeches can be used to survey more rapidly and confidently identify small mammal species, making them an extremely useful tool for conservation purposes.
Researchers have discovered that narwhals congregate near glacier fjords with specific physical properties, suggesting a preference for freshwater environments. The study aims to better understand the impact of climate change on these elusive marine mammals.
The study provides a comprehensive dataset of mammalian traits in the Atlantic Forest, expanding possibilities for zoological and ecological research. The data aims to draw attention to the region's importance and encourage conservation efforts, highlighting the crucial role small mammals play in the ecosystem.