Two new insecticides offer distinct modes of action to improve codling moth control while helping growers manage insecticide ...
Researchers in a New York cabbage patch are planning the first release on American soil of insects genetically engineered to die before they can reproduce. It's a pesticide-free attempt to control ...
Team Country Living likes a good catch-up, but few things have animated the office quite as much recently as the subject of moths – aka pesky wardrobe wreckers. From mysterious holes appearing in ...
NBC Select independently determines what we cover and recommend. When you click on or buy through our links, we earn a commission. Learn more. For many, spring means warm weather, longer sunlight ...
Add Yahoo as a preferred source to see more of our stories on Google. A clothes moth infestation spells real trouble for your closet. Before you know it, all your favorite sweaters and expensive silk ...
New biological insecticides have emerged in recent years which make use of so-called "entomopathogenic" viruses that are harmful to insects, in particular the baculovirus. To identify the virus in ...
A single "sexy" gene could help us combat one of the world's most destructive fruit pests. By deleting the gene that lets female moths produce their mating scent, colleagues and I created an "unsexy" ...
A new fungal pathogen is killing gypsy moth caterpillars and crowding out communities of pathogens and parasites that previously destroyed these moth pests. The findings by Cornell researchers point ...
Scientists have released a "self-limiting," genetically engineered moth in hopes of curbing crop damage. The diamondback moth (Plutella xylostella) can absolutely wreck brassicas—a plant genus that ...
Nature gets a little out of control sometimes, and despite our best chemical efforts to level the playing field, we simply can't win. That's the case with the gypsy moth. This destructive insect pest ...
An invasive South American moth that was once released as a biological control agent in the Caribbean is now spreading across ...
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