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DNA samples from foraging honeybees, bees in the hive, and their honey are complementary in understanding honeybee ecology, revealing their microbial and plant interactions over time

Researchers analyzed DNA samples from foraging honeybees, hive workers, and their honey to understand plant-microbe interactions in honeybee ecology. The study found that these complementary sources provide distinct insights into the complex relationships between plants, microbes, and honeybees.

SourcePLOS·JournalPLOS One·DateJul 8, 2026

How do thirsty plants hold out during drought?

Salk Institute scientists created a high-resolution atlas showing how droughts affect plant cells. They identified a gene, Ferric Reduction Oxidase 6 (FRO6), that could be targeted to create more resilient crops. FRO6 expression in mesophyll cells partially maintained leaf growth under drought stress.

SourceSalk Institute·JournalNature Plants·DateMar 19, 2026

Snapdragon secrets

Researchers collect snapdragon flowers and leaves to study their genetic diversity, revealing how color genes keep two varieties distinct. In hybrid zones, magenta and yellow snapdragons blend, but bees prefer one over the other, reducing fitness and offspring.

SourceInstitute of Science and Technology Austria·JournalMolecular Ecology·TypeData/statistical analysis·DateSep 22, 2025

For bees, diet isn’t one-size-fits-all

A long-term field study found that wild bumble bees strategically target flowers to balance their diet, adjusting their consumption of protein, fat, and carbs based on tongue length and seasonal flower availability. This nuanced approach allows them to thrive together and maintain strong colonies.

SourceNorthwestern University·JournalProceedings of the Royal Society B Biological Sciences·DateAug 26, 2025

Scientists use fossils to assess the health of Florida’s largest remaining seagrass bed. Surprisingly, it’s doing well!

A new study published in Marine Ecology Progress Series reveals that seagrass ecosystems along Florida's Nature Coast have remained relatively healthy over the last several thousand years. The research, conducted by conservation paleobiologists, used fossilized mollusk shells to infer ecosystem health and found that these communities a...

SourceFlorida Museum of Natural History·JournalMarine Ecology Progress Series·DateMay 15, 2025

Nothin’ but pawpaws in the pawpaw patch

New research from Washington University in St. Louis found that pawpaw patches reduce herbaceous plant species diversity and total understory community size, creating a habitat where the rules of competition are more random. The presence of pawpaws also makes it challenging for land managers to encourage the growth of understory species.

SourceWashington University in St. Louis·JournalEcosphere·DateJan 9, 2025

What makes some plant groups so successful?

Researchers at Trinity College Dublin discovered that over 10,000 species have been described in just 83 big genera since 2000, with roughly one in four flowering plant species belonging to these groups. Understanding the success of these large genera may help predict their response to climate change and inform conservation efforts.

SourceTrinity College Dublin·JournalProceedings of the Royal Society B Biological Sciences·DateMay 29, 2024

Illuminating Darwin's 'abominable mystery'— Vast DNA tree of life for plants revealed

A recent study published in Nature reveals a vast DNA tree of life for flowering plants, providing insights into their evolutionary history. The analysis of over 9,500 plant species reveals the rapid development of diversity in ancient times, with key findings supporting the plastid-based phylogenetic classification of angiosperms.

SourceChinese Academy of Sciences Headquarters·JournalNature·TypeMeta-analysis·DateApr 26, 2024

Global team of researchers, including three New York botanical garden scientists, publish ground-breaking study of plant evolution with many potential uses, from plant conservation to the discovery of new medicines

A global team of researchers, led by the Royal Botanic Gardens, Kew, sequenced DNA from over 9,500 species, creating a detailed tree of life for flowering plants. The study sheds light on plant evolution, conservation strategies and sustainable agriculture applications.

SourceThe New York Botanical Garden·JournalNature·TypeData/statistical analysis·DateApr 24, 2024

Foul fumes pose pollinator problems

A University of Washington team discovered that nitrate radicals in the air degrade scent chemicals released by wildflowers, making them undetectable to nighttime pollinators. The researchers found that pollution likely has worldwide impacts on pollination, with areas including western North America and Europe most affected.

SourceUniversity of Washington·JournalScience·TypeExperimental study·DateFeb 8, 2024

Understanding jasmonic acid: A switch that activates autophagy in Arabidopsis petals

A team of researchers from Nara Institute of Science and Technology discovered a phytohormone-mediated switch controlling autophagy, leading to terminal cell differentiation for petal abscission. They found that jasmonic acid promotes petal abscission by activating autophagy at the base of petals.

SourceNara Institute of Science and Technology·JournalNature Communications·TypeExperimental study·DateFeb 7, 2024

An elegant new orchid hiding in plain sight

A new Japanese 'ladies tresses' orchid, Spiranthes hachijoensis, has been found in private gardens and on balconies. The discovery suggests that other new species may be hidden in common environments, eliminating the need for remote tropical rainforest expeditions.

SourceKobe University·JournalJournal of Plant Research·TypeCase study·DateMar 17, 2023

Orchid helps insect get a grip

The white egret orchid's unique petal shape supports the hawkmoth pollinator, leading to higher healthy seed production. The research found that intact plants produced more seeds than those with the fringed petal removed.

SourceKobe University·JournalEcology·TypeExperimental study·DateJul 28, 2022