Scientists used chemical clues in microscopic fossils to find evidence that ocean acidification caused one of the largest extinction events in planktic foraminifera history. The study suggests that volcanic eruptions and rising CO2 levels led to a decrease in shell-building ability, ultimately contributing to the extinction.
SourceNorthwestern University·JournalScience·DateJul 30, 2026
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Asteroid impact created a massive dust cloud that trapped heat, causing widespread wildfires and spontaneous combustion. The cloud led to population collapse and atmospheric contamination, ultimately killing most dinosaurs and other species.
SourcePurdue University·JournalJournal of Geophysical Research Biogeosciences·DateJul 28, 2026
A new order of marine sponges, Vilesida, has been discovered, producing unique sterols that support the hypothesis that animals evolved 100 million years earlier than previously thought. These compounds may also be used in the development of new antimicrobial and anticarcinogenic drugs.
SourceUppsala University·JournalZoological Journal of the Linnean Society·TypeObservational study·DateDec 2, 2025
A newly discovered carnivorous lizard, Tainrakuasuchus bellator, lived 240 million years ago and resembled a dinosaur due to its armour-plated body. The species was among the top predators of its time in Brazil during the Triassic Period.
SourceTaylor & Francis Group·JournalJournal of Systematic Palaeontology·TypeObservational study·DateNov 12, 2025
Fossilized dinosaur teeth contain oxygen isotopes that indicate high carbon dioxide levels in the atmosphere during the Mesozoic Era, which was four to three times higher than today. This data suggests dynamic climates with double primary plant production, contributing to their extinction.
SourceJohannes Gutenberg Universitaet Mainz·JournalProceedings of the National Academy of Sciences·DateAug 5, 2025
Recent advances in molecular clock models and paleontological discoveries suggest many bird lineages originated during Late Cretaceous period. This early diversification coincided with the Cretaceous Angiosperm Terrestrial Revolution, a pivotal phase of terrestrial ecosystem restructuring.
SourceScience China Press·JournalNational Science Review·DateJul 10, 2025
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A group of elasmosaur fossils has been formally identified as belonging to a new genus, Traskasaura sandrae. This ancient marine reptile, measuring 12 meters long and having heavy, sharp teeth, likely hunted prey from above using its strong swimming capabilities.
SourceTaylor & Francis Group·JournalJournal of Systematic Palaeontology·DateMay 23, 2025
A team of researchers from Lund University analyzed the soft tissue from a 183-million-year-old Jurassic plesiosaur, discovering a mix of smooth and scaly skin. The findings suggest that the long-necked marine reptile used its smooth skin to swim efficiently and its scales for navigating rough seabeds.
SourceLund University·JournalCurrent Biology·DateFeb 7, 2025
Paleontologists discovered a tiny fossil mammal that thrived in Arctic conditions 73 million years ago. The 'ice mouse', weighing only 11 grams, likely weathered four months of winter darkness and freezing temperatures.
SourceUniversity of Colorado at Boulder·JournalJournal of Systematic Palaeontology·DateAug 10, 2023
A team of scientists found evidence that 37 ichthyosaurs died in the same location, suggesting they were migrating to give birth over hundreds of thousands of years. Geochemical tests revealed no signs of environmental disturbance or mass stranding events, pointing to a more plausible explanation for their demise.
SourceSmithsonian·JournalCurrent Biology·TypeObservational study·DateDec 19, 2022
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A massive volcanic eruption at the end of the Triassic period caused a global cooling effect, leading to the mass extinction. The event paved the way for the rise of dinosaurs as their natural predators went extinct.
SourceCactus Communications·JournalEarth and Planetary Science Letters·TypeExperimental study·DateMar 23, 2022
Researchers from Vrije Universiteit Brussel used new techniques to determine the age of limestone layers and fossils in Maastricht quarries, dating back to the last dinosaur age. The study found that the shallow sea was rich in oxygen, suitable for sustaining a diverse ecosystem.
SourceVrije Universiteit Brussel·JournalNewsletters on Stratigraphy·DateMar 16, 2022
Sauropod dinosaurs were restricted to warmer, drier habitats than other dinosaur types, which could thrive in Earth's polar regions. The researchers found that sauropods' range was more limited during colder periods, suggesting a unique physiology closer to being 'cold-blooded'.
SourceUniversity College London·JournalCurrent Biology·TypeComputational simulation/modeling·DateDec 17, 2021
A groundbreaking analysis of the fossilized remains of Effigia, a 205-million-year-old herbivore, has cast doubt on the prevailing notion that it fed by pecking at plant material. Instead, researchers suggest that its unique beak and jaw structure would have allowed it to nibble at soft, vulnerable tissues like young shoots or ferns.
SourceUniversity of Birmingham·JournalThe Anatomical Record·TypeExperimental study·DateNov 29, 2021
Researchers uncover fossil remains of Issi saaneq, a long-necked herbivore that lived on Greenland during the Late Triassic Period. The discovery sheds light on the evolutionary pathways and timeline of sauropods, iconic land animals that existed for nearly 150 million years.
SourceMartin-Luther-Universität Halle-Wittenberg·JournalDiversity·TypeImaging analysis·DateNov 8, 2021
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A study published in Scientific Reports found fossilized remains of sauropodomorphs, including eggs and skeletal remains, that suggest the earliest evidence of herd living in dinosaurs. The fossils, dated to approximately 193 million years old, show age-specific clusters of individuals, indicating possible herding behavior.
SourceScientific Reports·JournalScientific Reports·DateOct 21, 2021
Researchers report that ant-plant interactions began in the Mesozoic era, with ants shifting from predation to herbivory. The study suggests that plant diversification was facilitated by ant interactions but not vice versa.
SourceProceedings of the National Academy of Sciences·JournalProceedings of the National Academy of Sciences·DateNov 12, 2018
Research team led by Mark Springer has traced solenodon origins to the Mesozoic era, 76 million years ago. The findings suggest that these shrew-like creatures branched off from insect-eating relatives and have remained biologically unchanged over millions of years.
SourceUniversity of California - Riverside·JournalNature·DateJun 22, 2004