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Savory or sweet? How a new understanding of taste receptors might tickle your taste buds

Researchers from The University of Osaka have discovered the first structure of a pufferfish umami taste receptor, which can detect a surprisingly wide range of amino acids, including both L- and D-amino acids. This breakthrough could lead to new taste experiences for humans and improve the development of umami flavors.

SourceThe University of Osaka·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateSep 15, 2026

Uniting sequence and structure to map the protein universe

A new protein language model, CLSS, brings together sequence and structure information to produce cohesive maps of protein relationships. The model successfully integrated sequence and structure data, reproducing expert-curated classifications and demonstrating strong performance in classification tests.

SourceInstitute of Science Tokyo·JournalProceedings of the National Academy of Sciences·TypeData/statistical analysis·DateSep 11, 2026

Caddisfly silk gene evolves quickly without losing adhesive power

Scientists have identified the genetics of caddisflies' evolutionary superpower, which involves a gene that produces a main protein in silk. The study found remarkable heterogeneity in those genes among individuals from two nearby wild populations, highlighting how nature modifies this bioadhesive material while preserving its performa...

SourceUniversity of Utah·JournalMolecular Biology and Evolution·TypeData/statistical analysis·DateJul 8, 2026

Decoding intercontinental disjunction: Phylogenomic study unravels evolutionary history of hylodesmum

A comprehensive study using integrated genomic approach resolves Hylodesmum's taxonomic uncertainties and EA-ENA disjunct distribution. The study confirms Verdesmum as nested within Hylodesmum and reveals a complex bidirectional dispersal pattern likely facilitated by mammal-mediated epizoochory.

SourceSouth China Botanical Garden, Chinese Academy of Sciences·JournalBiological Diversity·TypeExperimental study·DateMar 17, 2026

Natural selection operates on multiple levels, comprehensive review of scientific studies shows

A comprehensive review of 280 scientific studies reveals that natural selection can occur on multiple levels of biological organization, including individual and group benefits. This finding challenges the traditional view of natural selection and highlights its complexity in various ecosystems.

SourceBinghamton University·JournalFrontiers in Ecology and Evolution·TypeMeta-analysis·DateFeb 18, 2026

From ancient fins to human hands

Research team led by biologist Joost Woltering discovers how ancient genes from fish midline fins were 'redeployed' to establish the dorsal-ventral axis in human limbs, allowing for complex limb differentiation and adaptation for life on land.

SourceUniversity of Konstanz·JournalMolecular Biology and Evolution·DateFeb 9, 2026

Study maps the climate-related evolution of modern kangaroos and wallabies

A QUT-led study has found how increasing aridity and habitat variation led to the diversification of modern kangaroos and wallabies. The research reveals that these iconic Australian marsupials evolved in two major bursts over the past nine million years, with their expansion coinciding with the emergence of grasslands.

SourceQueensland University of Technology·JournalMolecular Phylogenetics and Evolution·TypeMeta-analysis·DateJan 28, 2026

Aquaporin gene duplication followed by mutation in European eels restores broad solute permeability

Researchers at Institute of Science Tokyo found that European eels have restored aquaporin proteins with broad solute permeability through a recent gene duplication event. The study revealed that the genes Aqp10.2b2 and b3 acquired functional diversification, enabling them to transport urea and boric acid similar to Aqp10.1.

SourceInstitute of Science Tokyo·JournalGenome Biology and Evolution·TypeExperimental study·DateNov 13, 2025

Stowers scientists identify the fusion point of Robertsonian chromosomes, hinting at how chromosomes evolve

Researchers at Stowers Institute for Medical Research have identified the precise location where human chromosomes break and recombine to form Robertsonian chromosomes. The study reveals that repetitive DNA sequences play a central role in genome organization and evolution, explaining how these rearrangements form and remain stable.

SourceStowers Institute for Medical Research·JournalNature·TypeExperimental study·DateSep 24, 2025

Researchers reveal potential molecular link between air pollutants and increased risk of Lewy body dementia

Researchers at Johns Hopkins Medicine reveal a potential molecular link between air pollutants and an increased risk of developing Lewy body dementia. Exposure to fine particulate air pollution (PM2.5) triggered the formation of abnormal alpha-synuclein clumps in mice, similar to those found in human patients with Lewy body dementia.

SourceJohns Hopkins Medicine·JournalScience·DateSep 4, 2025

How proteins bind to RNA: the dual mechanism of zinc fingers and disordered regions

Researchers discovered that disordered regions enhance specific RNA interactions in FUS protein-RNA complexes, revealing a breakthrough strategy for nucleic acid binding. The study suggests that intrinsically disordered regions actively contribute to the RNA-binding mechanism.

SourceInstitute of Science Tokyo·JournalJournal of Chemical Information and Modeling·TypeComputational simulation/modeling·DateAug 28, 2025

How plants rot: New method decodes hidden decomposers of wood and leaves

A new bioinformatics-based method, fDOG, has been developed to search for genes with certain functions, including those involved in plant cell wall degradation. The study reveals a detailed global map of enzymes capable of degrading plant cell walls, with surprising discoveries among fungi and animals.

SourceGoethe University Frankfurt·JournalMolecular Biology and Evolution·TypeData/statistical analysis·DateAug 28, 2025

Tissue forces help shape developing organs

Researchers at Syracuse University found that slow-moving tissues generate mechanical forces that help sculpt developing organs, such as the zebrafish's body symmetry. This discovery could lead to a better understanding of organ formation and inform treatments for birth defects and other conditions.

SourceSyracuse University·JournalProceedings of the National Academy of Sciences·DateAug 21, 2025

How calcium may have unlocked the origins of life’s molecular asymmetry

A new study by researchers at the Institute of Science Tokyo hints that calcium ions played a crucial role in shaping life's earliest molecular structures. The team discovered that calcium dramatically alters how tartaric acid molecules link together, favoring homochiral polymers and potentially influencing the emergence of life.

SourceInstitute of Science Tokyo·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateMar 27, 2025

How life's building blocks took shape on early Earth: the limits of membraneless polyester protocell formation

A recent study found that polyester microdroplets can form in salt-rich environments, at low alpha-hydroxy acid concentrations, and in small reaction volumes. This expands on previous research and suggests that polyester protocells were likely more common on early Earth than previously thought.

SourceInstitute of Science Tokyo·JournalACS Bio & Med Chem Au·TypeExperimental study·DateFeb 6, 2025

Tracking the atomistic structural transformations in chemical evolution via machine-learned infrared spectroscopy

The study utilizes infrared spectroscopy and a machine-learned protocol to map spectroscopic fingerprints to atomistic structures. The authors demonstrate the accuracy of their network in predicting local atomistic structures and energetic variations, enabling the tracking of dynamic C–C coupling on Cu surfaces.

SourceScience China Press·JournalNational Science Review·DateJan 16, 2025

Tinkering with the “clockwork” mechanisms of life

Researchers at Université de Montréal successfully recreated two distinct mechanisms that can program the activation and deactivation rates of nanomachines in living organisms across multiple timescales. This breakthrough suggests how engineers can exploit natural processes to improve nanomedicine and other technologies.

SourceUniversity of Montreal·JournalJournal of the American Chemical Society·DateDec 19, 2024

James Webb space telescope offers best glimpse ever into the icy planetesimals of the early solar system

Researchers at the University of Central Florida used the James Webb Space Telescope to analyze trans-Neptunian objects, revealing a clearer picture of how the outer solar system formed and evolved. The study found three distinct compositional groups among TNOs, shaped by ice retention lines that existed in the era when the solar syste...

SourceUniversity of Central Florida·JournalNature Astronomy·TypeObservational study·DateDec 19, 2024

The origin of stem cells

Researchers identified critical proteins involved in animal stem cell regulation, including SOX and POU transcription factors, which existed in single-celled organisms over 700 million years ago. These ancient proteins retained functional properties that enabled them to induce stem cell reprogramming in mouse cells.

SourceMax-Planck-Gesellschaft·JournalNature Communications·DateNov 21, 2024

Catching prey with grappling hooks and cannons

Researchers at ETH Zurich have discovered a new predatory bacterium, Aureispira, that uses grappling hooks and cannons to capture prey. The bacterium's molecular structures resemble those of pirate tools, allowing it to entangle and kill its victims quickly.

SourceETH Zurich·JournalScience·DateOct 17, 2024

Killing giant ragweed just got harder for some Wisconsin farmers

Research from the University of Wisconsin-Madison and the University of Illinois Urbana-Champaign reveals that some giant ragweed populations in Wisconsin have evolved resistance to critical post-emergence herbicides. This development limits chemical options for non-GMO soybean growers, potentially forcing them to switch to GMO soybean...

Hidden mechanisms behind hermaphroditic plant self-incompatibility revealed

A new study presents an evolutionary-biophysical model that sheds light on the evolution of collaborative non-self recognition self-incompatibility in plants. The model introduces promiscuous molecular interactions, enhancing our understanding of genetic diversity and evolution in hermaphroditic plants.

SourceThe Hebrew University of Jerusalem·JournalNature Communications·TypeComputational simulation/modeling·DateJun 18, 2024

Determining sex in ants

A noncoding gene has been identified as the deciding factor in determining sex in Argentine ants, with a specific genomic region being crucial to this process. The gene does not encode a protein but rather produces an RNA that influences sex determination.

SourceJohannes Gutenberg Universitaet Mainz·JournalScience Advances·DateJun 6, 2024

A new ‘rule of biology’ may have come to light, expanding insight into evolution and aging

Molecular biologist John Tower proposes a new 'rule of biology,' selectively advantageous instability (SAI), which suggests that some volatility in biological components provides an advantage to cells. SAI plays a key role in evolution, allowing for genetic diversity and adaptability, and may also contribute to aging.

SourceUniversity of Southern California·JournalFrontiers in Aging·TypeLiterature review·DateMay 16, 2024

Evolutionary algorithm generates tailored “molecular fingerprints”

A team at the University of Münster developed an improved method for explaining machine predictions of chemical reactions, using mechanisms such as reproduction, mutation and selection. The algorithm creates customised molecular fingerprints that predict chemical reactions with surprising accuracy, suitable for predicting quantum chemi...

SourceUniversity of Münster·JournalChem·TypeComputational simulation/modeling·DateMay 8, 2024

Fruit fly pest meets its evolutionary match in parasitic wasp

A parasitic wasp has evolved to perfectly target a common fruit fly pest, demonstrating key principles of ecologically driven evolution. The Trichopria drosophilae wasp overcomes the pest's defenses by producing venom and specialized cells that speed up digestion and increase nutrition for its young.

SourceeLife·JournaleLife·DateApr 23, 2024

Unlocking the ‘chain of worms’

A team of scientists has created a single-cell atlas for the highly regenerative worm Pristina leidyi, revealing new insights into its regenerative abilities. The study characterizes all major annelid cell types and provides molecular signatures that could inform stem cell technologies and regenerative medicine.

SourceWashington University in St. Louis·JournalNature Communications·TypeExperimental study·DateApr 15, 2024

Microalgae with unusual cell biology

Researchers studied Prorocentrum cordatum to understand its molecular processes, revealing a unique photosynthetic machinery that may help it adapt to changing light conditions. The findings could lead to improved understanding of harmful algal blooms and their role in climate change.

SourceUniversity of Oldenburg·JournalPLANT PHYSIOLOGY·TypeImaging analysis·DateMar 5, 2024

Orchestrating plant organ symmetry in style

A recent study published in Nature Plants reveals that O-glycosylation of the transcription factor SPATULA promotes Arabidopsis style development. The experimental study sheds new light on the mechanisms underlying plant organ symmetry.

SourceJohn Innes Centre·JournalNature Plants·TypeExperimental study·DateJan 26, 2024

The venom preceded the stinger: Genomic studies shed light on the origins of bee venom

Researchers examined venom genes in bees and other hymenopteran taxa using comparative genomics. They found that 12 'families' of peptides and proteins were present in all analyzed hymenopterans, indicating a common ancestor possessed these genes. This suggests that Hymenoptera insects are venomous as an entire group.

SourceGoethe University Frankfurt·JournalBMC Biology·TypeExperimental study·DateNov 29, 2023