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Unlocking the kaleidoscope of big cat eyes: The surprising evolution of felid eye color diversity

Researchers discovered that a 30-million-year-old feline ancestor had both brown and gray-eyed individuals, paving the way for modern felid iris color diversity. The study found a correlation between yellow eyes and round pupils, as well as an ancestral population with brown eyes only before gaining gray-eyed individuals.

Eyes for Love: Searching for light and a mate in the deep, dark sea, male dragonfishes grow larger eyes than the females they seek

Researchers at Boston College found male dragonfish have evolved larger eyes to detect females who produce less light, closing a bioluminescent detection gap. This is the second known case of sexually dimorphic eye-size in fishes and highlights the unique adaptations of deep-sea species.

SourceBoston College·JournalBiology Letters·TypeObservational study·DateJul 23, 2024

UMA scientists find a natural quicksand trap dated to more than one million years ago in the ‘elephant graveyard’ of Orce

Scientists at the University of Malaga have uncovered a natural quicksand trap in the 'elephant graveyard' of Orce, dated to over 1.4 million years ago. The discovery provides insights into human presence in Western Europe and competition with large carrion hyenas for meat resources.

SourceUniversity of Malaga·JournalJournal of Iberian Geology·TypeExperimental study·DateJul 11, 2024

Do genes-in-pieces code for proteins that fold in pieces?

Researchers found a correlation between protein folding and evolution in certain globular protein families, with most conserved exons corresponding to better foldons. However, the general trend did not hold for all protein families, suggesting other biological factors may influence protein folding and evolution.

SourceRice University·JournalProceedings of the National Academy of Sciences·DateJul 3, 2024

The evolution of firefly lights

A genomic analysis overturned the leading hypothesis on firefly light origin, revealing that lucibufagins, a toxic compound, evolved after bioluminescence development. Fireflies' ancestors diversified during a period of rising atmospheric oxygen levels, suggesting a similar path to glowing millipedes.

SourcePNAS Nexus·JournalPNAS Nexus·DateJun 25, 2024

An unlikely hero in evolution: worms

Researchers used pyrite to study the relationship between sediment mixing and oxygen levels in ancient oceans. They found that small amounts of sediment mixing can expose buried minerals to enough oxygen to start oxygen buildup. This challenges conventional wisdom about the role of oxygen in oxygen accumulation.

SourceJohns Hopkins University·JournalGeochimica et Cosmochimica Acta·DateJun 1, 2024

Scientists generate the first complete chromosome sequences from non-human primates

The study reveals remarkable variation between primate Y chromosomes, showing rapid evolution and previously unstudied regions. The researchers found that over 90% of ape X chromosome sequences aligned to the human X chromosome, while only 14-27% of ape Y chromosome sequences aligned to the human Y chromosome.

SourceNIH/National Human Genome Research Institute·JournalNature·TypeData/statistical analysis·DateMay 29, 2024

Evolutionary history shapes variation of wood density

A comprehensive global dataset shows that phylogeny plays a crucial role in shaping wood density patterns. Wood density varies significantly among different biomes and climatic zones, with higher values found in drier regions. Phylogenetic signal explains 84.3% of total variation, while environmental factors account for only 2.7%.

SourceKeAi Communications Co., Ltd.·JournalPlant Diversity·TypeMeta-analysis·DateMay 11, 2024

Genomes of “star algae” shed light on origin of plants

Researchers have generated complete genome data for four filamentous 'star algae' species, revealing overabundances of signalling genes and environmental response factors that underpin molecular mechanisms shaping plant bodies. The findings provide insights into the origins of land plants and their ability to adapt to environments.

SourceUniversity of Göttingen·JournalNature Genetics·TypeExperimental study·DateMay 3, 2024

Bioluminescence first evolved in animals at least 540 million years ago

A recent study by the Smithsonian has pushed back the earliest dated origin of bioluminescence in animals by nearly 300 million years, dating it to around 540 million years ago in marine invertebrates called octocorals. The ability to produce light is involved in various behaviors such as camouflage, courtship, and hunting.

SourceSmithsonian·JournalProceedings of the Royal Society B Biological Sciences·TypeComputational simulation/modeling·DateApr 23, 2024

Bonobos aren’t as peace-loving as we thought

A new Harvard study reveals that male bonobos engage in more acts of aggression than chimpanzees, contrary to their peaceful reputation. The researchers found that bonobos exhibit less sexual coercion and violence towards females, but more frequent 'squabbling' among males.

SourceHarvard University·JournalCurrent Biology·TypeObservational study·DateApr 22, 2024

In the evolution of walking, the hip bone connected to the rib bones

A new reconstruction of the 375-million-year-old fossil fish Tiktaalik reveals that its ribs likely attached to its pelvis, enabling support of the body and potentially leading to the evolution of walking. This discovery provides insights into the major evolutionary transition from fish to four-limbed vertebrates.

SourcePenn State·JournalProceedings of the National Academy of Sciences·DateApr 5, 2024

Dinosaur study challenges Bergmann’s rule

A new study by University of Alaska Fairbanks researchers challenges the long-held scientific principle that animals in high-latitude climates are larger than their relatives in warmer climates. The study found that Bergmann's rule applies only to a subset of homeothermic animals and ignores other climatic variables.

SourceUniversity of Alaska Fairbanks·JournalNature Communications·DateApr 5, 2024

We’ve had bird evolution all wrong

A frozen chunk of a bird's genome has rewritten the understanding of the bird family tree, revealing that most birds were misclassified due to suppressed recombination. Scientists discovered that one section of the genome behaved unusually, leading to incorrect groupings and a more complex tree.

SourceUniversity of Florida·JournalProceedings of the National Academy of Sciences·TypeData/statistical analysis·DateApr 1, 2024

Did the first cells evolve in soda lakes?

Researchers found that spontaneous RNA extension occurred at rates comparable to laboratory conditions in lake water with low Mg2+ concentrations. Fatty acids formed membranes in dilute water, which persisted even when surrounded by concentrated lake water.

SourcePNAS Nexus·JournalPNAS Nexus·DateMar 19, 2024

Convergent evolution of algal CO2-fixing organelles

Researchers identified pyrenoid-associated proteins in a marine chlorarachniophyte alga, suggesting independent evolution of CO2-fixing organelles in each algal group. These findings have implications for genetic engineering to increase photosynthetic performance and improve crop productivity.

SourceUniversity of Tsukuba·JournalProceedings of the National Academy of Sciences·DateFeb 29, 2024

The race between innovation and obsolescence

Researchers introduce a mathematical model that connects innovation and obsolescence to unify insights across economics, biology, and science. The model reveals three possible scenarios: an ever-expanding scenario, Schumpeterian dystopia, and creation and destruction.

SourceComplexity Science Hub·JournalProceedings of the National Academy of Sciences·TypeComputational simulation/modeling·DateFeb 2, 2024

Homo sapiens already reached northwest Europe more than 45,000 years ago

Researchers discovered human fossils and artifacts at Ilsenhöhle in Ranis, Germany, indicating that Homo sapiens arrived in cold northern latitudes before Neanderthals disappeared in southwest Europe. The analysis of ancient DNA and zooarchaeological findings suggests that humans consumed a diverse range of animals during their stay.

Scientists at EMBL Heidelberg discover how ancient ‘relaxant-inflammatory’ molecules get sponges (and blood vessels) moving

Sponges exhibit coordinated movements despite lacking muscles or neurons, attributed to relaxation of stress fibres triggered by an evolutionarily ancient inflammation-like mechanism. This process also regulates human blood vessel contraction, influencing blood pressure.

SourceEuropean Molecular Biology Laboratory·JournalCurrent Biology·TypeExperimental study·DateJan 25, 2024

Even the oldest eukaryote fossils show dazzling diversity and complexity

Researchers discovered diverse microfossils of ancient eukaryotes, including 10 previously undescribed species, that exhibit complex characteristics like cell walls made of bound fibers and tiny trapdoors. These findings suggest that early eukaryotes were already diverse and advanced, with some evidence pointing to an aerobic metabolism.

SourceUniversity of California - Santa Barbara·JournalPapers in Palaeontology·DateJan 11, 2024

Ancestors of primates lived in pairs

A study published in PNAS found that 70 million years ago, primates' ancestors mostly lived in pairs, with only 15% opting for solitary lifestyles. This flexible pair-living ancestor likely offered benefits such as easier reproduction and thermoregulation.

SourceCNRS·JournalProceedings of the National Academy of Sciences·DateJan 5, 2024

Early primates likely lived in pairs

A recent study suggests that many nocturnal Strepsirrhines live in pairs of males and females, challenging the long-held assumption that these primates are solitary. Researchers found that pair-living was the most common social organization among ancestors 70 million years ago.

SourceUniversity of Zurich·JournalProceedings of the National Academy of Sciences·TypeMeta-analysis·DateJan 3, 2024

New research shows “Juvenile T. rex” fossils are a distinct species of small tyrannosaur

Researchers have found evidence that Nanotyrannus lancensis is a separate species from Tyrannosaurus rex, with narrower jaws, longer legs, and bigger arms. The new analysis suggests these animals were nearly full-grown when they died, with estimates suggesting they reached 900-1500 kilograms and five metres in size.

SourceUniversity of Bath·JournalFossil Studies·TypeExperimental study·DateJan 2, 2024

Evolution might stop humans from solving climate change, says new study

A new study by University of Maine researchers reveals that human evolution's core processes might prevent humans from resolving global environmental problems like climate change. The study found that cultural adaptation to the environment, which has driven human evolution, accelerates due to a positive feedback process, making it chal...

SourceUniversity of Maine·JournalPhilosophical Transactions of the Royal Society B Biological Sciences·DateJan 2, 2024

The evolutionary timeline of diminished boric acid and urea transportation in aquaporin 10

Researchers analyzed Aqp10s in eight bony vertebrate species to understand the evolutionary timeline of diminished boric acid and urea transportation. The study found that Aqp10.2 in ray-finned fishes restricts urea and boric acid passage, suggesting a loss of solute transport through evolution.

SourceTokyo Institute of Technology·JournalGenome Biology and Evolution·TypeExperimental study·DateDec 20, 2023

Molecular fossils shed light on ancient life

Researchers have discovered lipid fossils in ancient rocks, providing clues about the evolution of life. The findings suggest that a shift in animal feeding strategies occurred around 1.6 billion years ago, with some species abandoning phytosterol production as they obtained this nutrient from algae.

SourceUniversity of California - Davis·JournalNature Communications·TypeExperimental study·DateDec 7, 2023