A study led by Göttingen University found that a group of algae, Coleochaetophyceae, gained complex body structures around 65 million years ago. The team analyzed genetic evolution and fossil evidence, revealing that plant-like complexity is an ancient potential that emerged multiple times.
Genomic analysis reveals amblyopsid species lost vision between 2.25 and 11.3 million years ago, allowing researchers to estimate minimum age of caves. The study provides a unique method for dating underground ecosystems and may hold implications for human eye diseases.
A new study found that mammals independently evolved specialized adaptations for exclusively feeding on ants and termites at least 12 times since the Cenozoic era began. This dietary strategy, called myrmecophagy, emerged following the K-Pg extinction and set the stage for ant and termite colonies to rapidly expand worldwide.
New research from the University of Chicago reveals that dentine, the inner layer of teeth, first evolved as sensory tissue in ancient fish. Fossil studies confirm that early vertebrates used sensory organs in their armor to sense conditions in the water, similar to modern arthropods.
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New research reveals that bird species with hard-to-get tree cavities have evolved heightened aggression in females. The study found a set of genes consistently altered in the brains of these birds, mirroring molecular similarity across lineages.
Scientists at Cornell University and Washington University found that selective breeding of domesticated cat and dog breeds has led to remarkable similarities in skull shape, including brachycephalic breeds. This phenomenon, known as convergence, has occurred within each species and between them, with flat faces and tilted muzzles.
Researchers found that female cavity-nesting birds are more aggressive than their non-cavity-nesting counterparts, with beaks and claws being key defense mechanisms. The team also discovered that aggression is not linked to family or testosterone levels, but rather to specific genes that may be expressed in subtle ways.
Researchers discover that oxygen-starved cancer cells use the same gene as high-altitude populations, such as Tibetans and Sherpas, to adapt to hypoxia. This convergence in genetic adaptation could lead to new therapeutic targets for cancer treatment.
Two studies led by Dr. García-Moreno reveal birds' unique brain evolution, showing convergent evolution of neural circuits without homologous ancestors. Birds retained inhibitory neurons for hundreds of millions of years, while excitatory neurons evolved in new ways, highlighting the evolutionary flexibility of brain development.
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Researchers mapped yerba mate's genome, discovering an ancestor that duplicated its genome 50 million years ago. This event led to the evolution of caffeine biosynthesis in yerba mate and coffee through convergent pathways. The study provides opportunities for creating plant varieties with new characteristics.
Three Texas A&M biologists have received NIH Maximizing Investigators’ Research Awards to support their research on type IV pili, darter fish social behaviors and bacteriophages. Drs Koch, Moran and Ramsey will explore bacterial behavior, genetic mechanisms and neural basis of paternal care in fish.
Researchers propose a new model for understanding how new genes can originate through the recycling and innovation of ancestral genes. A study on antifreeze proteins in fish reveals that similar proteins evolved independently from different genetic sources, demonstrating convergent evolution and protein sequence convergence.
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A new study reveals that a group of highly divergent mammals, including Afrotheria and distantly related, ecologically very similar mammals, independently evolved similar inner ear shapes. This suggests that neutral (non-adaptive) evolution may be more important in shaping inner ear morphology than previously thought.
A study found that island-dwelling animals have slower metabolisms and produce offspring later, making them more susceptible to extinction. This adaptation helps them thrive in pristine environments but also makes them vulnerable to human activities.
Researchers have identified a shared genetic mechanism driving the emergence of similar traits in distantly related plants with prickles. The study reveals that mutations in a specific gene can lead to prickle loss in various species, including crops like eggplants and rice.
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Researchers have discovered a novel type of wood that is highly efficient at carbon storage, thanks to its unique macrofibril structure. This discovery may lead to the development of new plantation forests capable of capturing large quantities of carbon dioxide.
A study led by the University of Liège has investigated the evolution of sabre-toothed tigers' elongated upper canine teeth. The research revealed a continuum of cranial morphology between present-day small cats and extinct sabre-toothed species, indicating that evolutionary patterns are more complex than previously thought.
A team of researchers has identified a key gene, Emx2, that helps explain the evolution of gliding in marsupials. The study found that accelerated evolution near this gene and its associated enhancers drives the development of patagium, the thin skin membrane allowing gliding.
A new analysis of the sunflower family tree shows that flower symmetry evolved multiple times independently among its members. The research, led by Penn State biologist Hong Ma, used low-coverage genome sequences to increase the number of species available for comparison and resolved more of the finer branches of the family tree.
Female Diadem butterflies have evolved colours and patterns that closely match those of toxic African Queens, making them appear toxic to predators. This convergent evolution allows the Diadems to avoid being eaten by birds and other predators.
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Scientists have discovered a new species of aetosaur, a heavily armored cousin of modern crocodiles, with an intact armor suit. The suit, called a carapace, is about 70% complete and has unique features that distinguish it from other aetosaurs.
Female whales of certain species experience menopause, living up to 40 years longer than their peers by prioritizing family care over breeding. This unique trait allows them to support their offspring and grandchildren without overlap with their daughters' reproductive cycles.
Researchers studied dipsadine snake skulls to understand how species adapt to their habitats and food sources. The study found strong correlations between skull shape and ecology, indicating that habitat use and diet preferences drive cranial evolution in these snakes.
A new study reveals a network of genes that evolve differently in long-lived and short-lived bivalves, associated with longevity in other animals. This shared molecular framework suggests a common genetic basis for extended longevity across diverse animal lineages.
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A team of scientists and philosophers identifies a new law of nature that governs the evolution of complex systems, including plants, animals, stars, and minerals. The law states that complex systems evolve to states of greater patterning, diversity, and complexity, regardless of whether they are living or nonliving.
A study reveals that specific bacteria drive the evolution of antimicrobial peptides in Drosophila, providing insights into how host immune systems adapt to new ecological niches. The findings also suggest a new model for AMP-microbiome evolution.
Researchers have finally solved the mystery of the pygmy right whale's evolutionary history, revealing it as a distinct lineage not related to right whales. The study, published in Marine Mammal Science, used genome sequencing and morphology to confirm the whale's unique characteristics.
The new CALANGO software helps untangle genetic factors associated with shared characteristics, such as antibacterial resistance and agricultural improvements. It enables scientists to explore vast amounts of genomic data across thousands of organisms.
Two new species of poisonous birds have been discovered in New Guinea's rainforest, containing a neurotoxin similar to that found in South American poison dart frogs. Genetic changes in these bird species allow them to tolerate and store the toxin in their feathers, potentially serving as a defensive mechanism.
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Researchers at Okayama University discovered genes and proteins responsible for the rapid contraction of axopodia in Heliozoa, a group of eukaryotes. The study identified key players in microtubule disruption, including katanin p60, kinesin, and calcium signaling proteins.
Scientists have developed a novel metric to analyze the rate of convergent evolution in protein-coding DNA sequences. This approach can reveal which genetic changes are associated with phenotypic traits, shedding light on how species diversify over time.
A new genus of scorpionflies has been discovered in Nepal, characterized by a spindly and extremely elongated abdomen. The males have long grasping pincers for mating, while the females lack these distinctive features, making classification more challenging.
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A study found that Eurasian jays with greater self-control can pass a version of the 'marshmallow test' and score higher on intelligence tests. The researchers believe that this self-control may have evolved as a result of the birds' need to delay gratification in order to plan for future meals.
The new species, Meraxes gigas, has disproportional short arms like T. rex and evolved independently to have such characteristics. The team proposes that the short arms may have supported reproductive behavior or helped with movement, offering a unique survival advantage.
A new study by the University of Colorado Anschutz Medical Campus explores the effects of multiple mutations in SARS-CoV-2 variants. The findings suggest that certain mutations work together to improve virus fitness, making it challenging for antibody treatments to neutralize new variants.
New research challenges centuries-old scholarship on animal classification by morphology, instead favoring molecular data for a better fit with geographical distribution. Convergent evolution is found to be widespread and often misleading, with famous examples such as flight in birds, bats, and insects
Jellyfish have evolved separate and independently complex eyes many times over millions of years, making them an ideal model to understand genetic expression. By analyzing multiple species and genes, researchers aim to uncover similarities and differences in evolutionary patterns.
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Researchers detect four cryptic variants of SARS-CoV-2 in NYC wastewater samples, suggesting possible animal origins. The variants' mutations could help identify the next variant of concern for COVID-19.
A study led by SIB Swiss Institute of Bioinformatics reveals a strong convergence in global gene expression levels of venom glands across diverse animals. The research found that different species, including fish, scorpions, and mammals, use similar molecular mechanisms to produce toxins.
Researchers compared 156 species' skulls to understand diet's impact on skull shape. Despite similar diets, distantly related animals retain unique ancestral shapes, with some developing unique adaptations.
Researchers demonstrate that defensive selection pressures can influence venom composition in snakes, resulting in enhanced pain-causing ability of the venoms. This is an exemplary case of convergent evolution in the natural world.
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Researchers observed ravens exhibiting negative emotional contagion when watching demonstrator ravens with induced negative emotional states. The results suggest convergent emotional evolution in birds and mammals.
A study found that three-spined stickleback fish evolved the same genetic changes in their color-vision gene to adapt to dark and clear water environments. The research demonstrated convergent evolution across vastly different time scales, showing that mechanisms underlying adaptive evolution are predictable.
Researchers used comparative genomics to study the giant panda and red panda, revealing 70 adaptively convergent genes involved in limb development, digestion, and pseudogenization. These findings provide insights into the genetic mechanisms underlying phenotype convergence in these species.
A study by Australian National University has found that pythons and boas, two snake families, evolved independently to share similar traits due to living in the same habitat. This demonstrates the power of natural selection and adaptation in reptiles.
A new species of dinosaur, Chilesaurus diegosuarezi, has been discovered in Chile with a mix of characteristics from different groups of dinosaurs. The plant-eating theropod has a small skull and feet similar to long-necked dinosaurs, challenging previous understanding of evolutionary divergence.
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A new study finds that adipose fins have evolved repeatedly and independently in multiple species of teleost fish, representing a unique example of convergent evolution. The research provides a new model for exploring the evolution of vertebrate appendages and challenges traditional views on how new fins and limbs develop.
A cross-linguistic study found that words signaling problems with understanding, such as 'Huh?', have similar form and function in languages worldwide. This discovery sheds light on the evolution of human communication and the role of universal linguistic devices.
A team of international researchers led by UC Irvine's Robert Reed has identified a single gene called optix responsible for red wing color patterns in various passion vine butterfly species. This breakthrough discovery sheds light on how mimicry and convergent evolution occur at a genetic level.
Convergent evolution of lignin synthesis in lycophytes reveals a novel pathway to engineer biomass composition. This discovery provides potential tools for improving digestibility and properties of biofuels, such as cellulosic ethanol.
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Research reveals that birds, like humans, use language to settle disputes over resources. The study found that territorial songs of two antbird species were extremely similar, while non-territorial signals like calls and plumage diverged.
Hawaiian songbird species were previously mistakenly grouped with Australian honeyeaters, but Smithsonian scientists have found they represent a new family—Mohoidae—using ancient DNA analysis. The study reveals these birds diverged from their closest living ancestor 14-17 million years ago and are specialized nectar-feeders.
Researchers developed a robust time estimation method, resolving discrepancies between paleontological and molecular studies on placental mammal evolution. The revised estimate places the root of placental mammals at 84 million years ago, aligning with fossil records and traditional morphological views.
A study by Washington University in St. Louis reveals that similar lizard communities have evolved independently on different islands in the Caribbean, converging on island habitats. The research found identical habitat specialists on each island, suggesting a unique response to environmental pressures.
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