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The broader a fungus’s diet, the better it kills insects and helps plants

Researchers found that a fungus's metabolic breadth, or range of nutrients it can use, links its ability to kill insects, partner with plants, and thrive in different ecological roles. Strains capable of using a wider range of nutrients were faster and deadlier at killing insects and more effective at colonizing plant roots.

SourceUniversity of Maryland·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateJul 2, 2026

How cities are changing social behavior in urban animals

A comprehensive review by Bielefeld University researchers reveals that urbanisation significantly impacts animal social behaviour, including changes in communication, aggression and group stability. The study found that 92% of reviewed papers report a significant effect of urbanization on social behavior.

SourceBielefeld University·JournalBiological Reviews·TypeMeta-analysis·DateJan 20, 2026

Science solves South Australia’s koala dilemma

A study led by Dr. Frédérik Saltré suggests that sterilizing 22% of adult females annually could stabilize the population at an estimated cost of $34 million over 25 years. This approach prioritizes both animal welfare and ecosystem health, offering a humane solution to the unsustainable koala numbers.

SourceUniversity of Technology Sydney·JournalEcology and Evolution·TypeComputational simulation/modeling·DateJan 19, 2026

Big brains and big ranges might not save birds from climate change

A new study found that some bird species with large geographic ranges and big brains are actually more susceptible to climate change than previously thought. Researchers analyzed data from citizen scientists and found that birds adapted to narrow climate niches, such as the Arctic, are at higher risk from climate change.

SourceUniversity of Texas at Austin·JournalNature Communications·TypeData/statistical analysis·DateApr 22, 2025

Evolutionary paths vastly differ for birds, bats

Researchers found that bats' forelimbs and hindlimbs evolved together due to correlated bone shapes, unlike birds. This suggests that bats may struggle to adapt to new environments. In contrast, bird species show little correlation between wing and leg shapes, enabling them to occupy a wider range of ecological niches.

SourceCornell University·JournalNature Ecology & Evolution·DateNov 1, 2024

Nonnative plants are a major force behind global insect invasions, new study finds

A recent study by American Institute of Biological Sciences reveals that nonnative plant species are a major force behind the growing number of insect invasions worldwide. The research challenges traditional assumptions and highlights the importance of controlling the spread of nonnative plants in mitigating biological invasions.

SourceAmerican Institute of Biological Sciences·JournalBioScience·TypeLiterature review·DateOct 18, 2024

Pit-building venom mixers

Researchers found that antlions have a highly effective and complex venom system, producing multiple venom proteins and digestive enzymes to overpower large and defensive prey. Unlike previously thought bacteria-assisted venom production, antlions are free of bacterial symbiotic partners.

SourceMax Planck Institute for Chemical Ecology·JournalCommunications Biology·TypeExperimental study·DateAug 13, 2024

Study examines tree adaptability to climate change

A recent study found that tree species can sustain life in temperatures higher or lower than where they are currently growing. The research revealed that trees have overlapping potential niches that extend beyond their realized niches, allowing them to expand their ranges. This new understanding challenges current methods for predictin...

SourceUniversity of Wyoming·JournalScience·TypeMeta-analysis·DateJul 9, 2024

Interspecies competition led to even more forms of ancient human – defying evolutionary trends in vertebrates

A new study reveals that competition between species played a major role in the rise and fall of hominins. The research found that the Homo lineage experienced an unprecedented number of new species emerging, contradicting traditional views on evolutionary patterns. Technology, such as stone tools and fire, may have driven this process.

SourceUniversity of Cambridge·JournalNature Ecology & Evolution·DateApr 17, 2024

New research exposes humans’ early ecological versatility

A recent study by University of Helsinki researchers found that early humans occupied diverse environments beyond savannah-grasslands when dispersing out of Africa. This challenges the previous assumption that humans required specific habitats and suggests they were more ecologically versatile than thought.

SourceUniversity of Helsinki·JournalEvolutionary Anthropology Issues News and Reviews·TypeLiterature review·DateNov 9, 2023

The first map of the Microverse

A German-Dutch research team has created the first map of the Microverse, redefining microbial niches. Generalists, which can cope with a wide range of conditions, dominate most habitats, while specialists have more specific environments and smaller genomes.

SourceFriedrich-Schiller-Universitaet Jena·JournalNature Ecology & Evolution·TypeData/statistical analysis·DateApr 4, 2023

Seabirds in the eye of the storm

Researchers found that seabird species have unique wind tolerance strategies, with some flying fast to counteract wind drift. Albatrosses can fly in most storm conditions, while tropical species use special avoidance tactics.

SourceMax-Planck-Gesellschaft·JournalCurrent Biology·TypeMeta-analysis·DateMar 1, 2023

Forests benefit from tree species variety and genetic diversity

Forests with multiple tree species have been shown to be more productive, as different species fill distinct niches and compete less. Additionally, genetic diversity within each tree species also promotes forest productivity by increasing resource use efficiency and reducing damage from herbivores and fungi.

SourceeLife·JournaleLife·DateNov 29, 2022

A Tale of Terroir: Porcini mushrooms have evolved with a preference to local adaptation

A study reveals that porcini mushrooms have evolved in different ways across the globe, with local ecological factors playing a stronger role in maintaining genetic distinctiveness than genetic flow. The findings challenge traditional notions of species development and suggest multiple evolutionary strategies for this organism.

SourceUniversity of Utah·JournalNew Phytologist·TypeExperimental study·DateNov 17, 2022

What sea cucumbers can teach us about self-defense

Researchers have discovered how sea cucumbers produce defensive chemicals using genome mining techniques. The animals' unique ability to biosynthesize toxins has been found to be linked to the diversion of a sterol-producing enzyme, resulting in the production of valuable medicinal compounds.

SourceJohn Innes Centre·JournalNature Chemical Biology·TypeExperimental study·DateJun 27, 2022

Reference genomes provide first insights into genetic roots of mustelid physiological and behavioural diversity

A study comparing whole genomes of several mustelids, including the tayra and wolverine, identifies multiple sources of genomic variation contributing to species-specific traits. The research sheds light on how these adaptations evolved in response to different ecological challenges.

Islands are cauldrons of evolution

Research by Washington University in St. Louis explores the collision of island and mainland adaptive radiations in neotropical anoles, finding that island species can diversify greatly on the mainland. Contrary to traditional thinking, islands are not evolutionary dead ends but rather cauldrons of innovation and diversification.

SourceWashington University in St. Louis·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateOct 12, 2021