Pesticide sulfoxaflor alters bumblebee gene activity

A study from Georgia Tech shows that the pesticide sulfoxaflor changes gene expression in bumblebees, particularly in reproductive tissues. The findings raise concerns about impacts on bee populations that support one-third of global food production.

Researchers at the Georgia Institute of Technology exposed worker bumblebees to low doses of sulfoxaflor, a pesticide introduced in 2013 for crops such as soybeans and corn. The team analyzed RNA from flash-frozen tissues and found the largest gene activity changes in ovarian tissue.

These molecular shifts could reduce offspring numbers and contribute to population declines, according to the study funded by the U.S. Department of Agriculture. The results appear in the journal Ecotoxicology and Environmental Safety.

"What makes this study exciting is that it connects molecular changes in gene expression to real-world consequences for individual bees and their colonies," said Michael Goodisman, a professor in the School of Biological Sciences.

Sarah Orr, who led the research, noted the need to balance pest control with protection for pollinators. "We need many bees for successful pollination," she said. "If they're not producing enough offspring, pollination will decline."

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Realistic depiction of pesticide spraying in rural Peru, with heatmap showing elevated cancer risk in high-exposure Indigenous communities.
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Study maps pesticide mixtures in Peru and finds higher cancer risk in high-exposure areas

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A study published in *Nature Health* reports a statistical link between environmental exposure to mixtures of agricultural pesticides and higher cancer risk in Peru. Using modeled pesticide dispersion from 2014 to 2019 and cancer registry data from 2007 to 2020 covering more than 150,000 cases, researchers found that people living in high-exposure areas faced, on average, about a 150% higher likelihood of cancer, with Indigenous and rural farming communities among those most exposed.

A new study shows bumblebees collect far higher levels of toxic heavy metals than honeybees, even when foraging in the same areas. Researchers from the University of Cambridge warn that this exposure could harm bee health and colony success.

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In the night from Monday to Tuesday, senators adopted by 183 votes to 129 a measure allowing the controlled reintroduction of acetamiprid and flupyradifurone into the emergency agriculture bill.

Researchers have developed a targeted treatment using the chemical bistrifluron to control drywood termite infestations. The approach interferes with the insects' molting process and achieved high mortality rates in laboratory tests.

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Project Apis m. has launched the Bee Health Regulatory Consortium to speed up approval of new products for beekeepers. The group aims to cut costs and shorten the years-long regulatory process for tools targeting threats like Varroa mites. Initial progress includes expedited reviews for two products in California.

Researchers have discovered that distantly related butterflies and moths have used the same two genes, ivory and optix, for more than 120 million years to create similar warning colors on their wings. This finding suggests evolution can follow predictable genetic pathways rather than being entirely random. The study focused on species from South American rainforests.

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Youths aged 17 to 25 gathered outside Borlänge to create better conditions for threatened wild bees. The effort took place in 30-degree heat at Trumslagargropen near Rommehedslägret.

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