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New study sheds light on the evolution of animals

A new study published in Trends in Ecology & Evolution suggests that animals first evolved around 574 million years ago. The researchers used advanced analytical techniques to investigate preservation conditions in Cambrian and Neoproterozoic rocks, finding that certain clays were essential for capturing early animal fossils.

SourceUniversity of Oxford·JournalTrends in Ecology & Evolution·DateJun 27, 2023

New dinosaur species from Utah lived at a time of major transition

A new species of dinosaur, Iani smithi, has been discovered in Utah's Cedar Mountain Formation, providing insights into how dinosaurs weathered ecological change during the mid-Cretaceous period. The discovery suggests that several major groups of dinosaurs survived into the early Late Cretaceous despite the changes.

SourcePLOS·JournalPLOS ONE·TypeObservational study·DateJun 7, 2023

Scientists discover ‘lost world’ of our early ancestors in billion-year-old rocks

Researchers have discovered a new record of protosteroids in Earth's Middle Ages, extending the current molecular record of eukaryotes to 1600 million years ago. This finding provides a rare glimpse into the conditions surrounding the evolution of complex life and may shed light on the competitive demise of ancient eukaryote groups.

Fossil of mosasaur with bizarre “screwdriver teeth” found in Morocco

A new species of mosasaur, Stelladens mysteriosus, has been discovered in Morocco with star-shaped 'screwdriver teeth'. The unique arrangement suggests a specialised feeding strategy or diet, but the exact prey remains unclear. This find adds to evidence that mosasaurs were evolving rapidly before their extinction 66 million years ago.

SourceUniversity of Bath·JournalFossil Studies·TypeObservational study·DateMay 17, 2023

A new understanding of human origins in Africa

A recent study published in Nature challenges traditional views on human origins in Africa, proposing that modern humans emerged from the interaction of multiple populations across the continent. By analyzing genomic data from diverse African groups, researchers found evidence of gene flow and mixing over hundreds of thousands of years.

SourceMcGill University·JournalNature·TypeComputational simulation/modeling·DateMay 17, 2023

Fossils reveal the long-term relationship between feathered dinosaurs and feather-feeding beetles

The study found fossils of beetle larvae in intimate contact with dinosaur feathers, suggesting a symbiotic relationship where the beetles fed on the feathers. The discovery provides insight into coevolution between vertebrates and arthropods over 500 million years, revealing rare evidence of their interaction.

SourceUniversity of Oxford·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateApr 17, 2023

Ancient fossils shed new light on evolution of sea worm

Fossils of a type of sea worm, Iotuba chengjiangensis, have provided new insights into the evolution of annelid worms. The discovery suggests that these worms diversified into different lineages around 515 million years ago, during the Cambrian explosion.

SourceDurham University·JournalProceedings of the Royal Society B Biological Sciences·TypeObservational study·DateJan 31, 2023

New ancient ‘marine crocodile’ discovered on UK’s Jurassic Coast – and it’s one of the oldest specimens of its type ever found

A new study has uncovered a nearly complete specimen of the ancient 'marine crocodile', Turnersuchus hingleyae, from the Early Jurassic period in Dorset, UK. The find provides crucial insights into thalattosuchian evolution and origin, suggesting that these creatures likely emerged around 15 million years earlier than previously thought.

SourceTaylor & Francis Group·JournalJournal of Vertebrate Paleontology·TypeObservational study·DateJan 30, 2023

3D imaging of shark embryos reveals evolution of pelvic fins

Researchers used CT scanning and 3D modelling to study the growth of pelvic fins in fish embryos, shedding light on their evolution. The study found that the mechanism responsible for changes in the pelvic fin skeleton over millions of years involves changes in fin radials' fusion during early development.

SourceCurtin University·JournalJournal of Developmental Biology·TypeImaging analysis·DateDec 13, 2022

Study of fossil katydids provides new insights on evolution of Mesozoic soundscape

A recent study on fossil katydids from the Mesozoic Era provides novel insights into the evolution of acoustic organs and behavior. The research team discovered exceptionally preserved Mesozoic katydids with the earliest known insect ears, extending the age range of modern-type auditory tympana by 100 million years.

SourceChinese Academy of Sciences Headquarters·JournalProceedings of the National Academy of Sciences·DateDec 12, 2022

Ray-finned fish survived mass extinction event

A new study suggests that ray-finned fish diversified earlier than previously thought, accumulating small changes before the Carboniferous period. The fossil specimen Palaeoneiros clackorum shows features typical of younger species, indicating a more complex picture of species diversification.

SourceUniversity of Birmingham·JournalNature Ecology & Evolution·TypeExperimental study·DateNov 17, 2022

Triassic specimen found to be early relative of pterosaurs a century after its discovery

A new study identifies Scleromochlus taylori as an early relative of pterosaurs, shedding light on the evolution of flying reptiles. The discovery uses CT scans to provide detailed reconstructions of the fossil, confirming its link to lagerpetids and supporting the hypothesis that flying reptiles evolved from small, bipedal ancestors.

SourceUniversity of Birmingham·JournalNature·TypeExperimental study·DateOct 5, 2022

Paleontologists at the University of Malaga reveal new data on the evolution of the hominid cranium

Paleontologists at the University of Malaga have found that humans uniquely combine increased brain size with a juvenile cranial shape. The analysis of four new hominid fossils and modern great ape samples shows changes in cranial development, including a negative growth of the neurocranium and a positive growth of the splanchnocranium.

SourceUniversity of Malaga·JournalPeerJ·TypeExperimental study·DateSep 15, 2022

Pioneering study shows climate played crucial role in changing location of ancient coral reefs

A pioneering study shows that climate change was the primary driver of the location of ancient coral reefs, which once extended far beyond the tropics. The researchers used habitat modeling and reconstructions of past climates to predict the distribution of suitable environments for coral reefs over the last 250 million years.

SourceUniversity of Bristol·JournalNature Communications·DateJun 14, 2022

New research questions hypotheses about climate-controlled ecosystem change during the origin of dinosaurs in Argentina

A new study in Frontiers in Earth Science questions the link between climate change and ecosystem diversity during the origin of dinosaurs in Argentina. The researchers found that variations in species abundance cannot be explained by climatic changes, instead attributing it to preservation and sampling biases.

SourceUniversity of Utah·JournalFrontiers in Earth Science·TypeObservational study·DateJun 13, 2022

First animals developed complex ecosystems before the Cambrian explosion

The study reveals that early animal communities exhibited complex ecological structures more than 550 million years ago, setting the stage for the Cambrian explosion. The analysis of metacommunity structure suggests competitive exclusion as the cause of the diversity drop in the late Ediacaran period.

SourcePLOS·JournalPLOS Biology·TypeObservational study·DateMay 17, 2022

Clasper appendages discovered in mid-Cambrian trilobite show horseshoe crab-like mating behavior

Researchers discovered fossilized trilobite appendages exhibiting characteristics similar to those found in male horseshoe crabs. These findings suggest a unique mating strategy, where males use the appendages to grasp females during reproduction, providing insight into the reproductive behavior of ancient complex animals.

Origin of complex cells started without oxygen

Eukaryotes emerged in an anoxic environment in the ocean, and their mitochondria-bearing cells likely resulted from a merger between archaea and bacteria. This finding contradicts the long-held view that oxygenation of Earth's surface environment led to eukaryogenesis.

SourceUniversity of Exeter·JournalNature Ecology & Evolution·TypeLiterature review·DateApr 27, 2022

Study: Climatic variability might not drive evolutionary change as much as previously thought

A recent study combining climate data with fossil records of large mammals in Africa found that times of erratic climate change do not lead to major evolutionary changes. The research, published in the Proceedings of the National Academy of Sciences, suggests that environmental variability and species turnover may not be closely related.

SourceUniversity of Arizona·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateApr 11, 2022

Dense bones allowed Spinosaurus to hunt underwater

Researchers found that Spinosaurus and its close relative Baryonyx had dense bones that would have allowed them to submerge underwater to hunt. In contrast, Suchomimus had lighter bones that made swimming difficult, leading the team to conclude that these dinosaurs likely waded instead.

SourceField Museum·JournalNature·DateMar 23, 2022

Study reconsiders early evolution of sea urchins

A genome-scale analysis of echinoids reveals modern species emerged 300 million years ago, survived mass extinction, and diversified rapidly. The findings also suggest sand dollars and sea biscuits originated earlier than thought, with possible fossil record gaps.

SourceeLife·JournaleLife·DateMar 22, 2022