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When each species faced experimental constraints on free expression of their mate preferences, individuals found ways around the predicament that could improve the chances that offspring could survive and perhaps even flourish.
MISSION Photo IllustrationBlack flies are a nuisance in the U.S. and they cause river blindness in Africa. To search for the best control method, University of Georgia researchers maintain the only research colony of black flies. Black fly larva are shown in a laboratory tank designed to replicate a river habitat.
 
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Reproducing black flies helps research effort

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Department of Entomology
College of Agricultural and Environmental Sciences

When it comes to black flies, most people would prefer them destroyed. In the U.S., their bites cause pain and welts. In Africa, they can cause blindness. But to help find ways to control the tiny pests, University of Georgia scientists maintain the world’s only research colony.

Often described as gnats, black flies are small, dark, stout flies about half the size of mosquitoes. Like gnats, they swarm around people’s faces and eyes. The big difference is that their bites hurt.

“We’re spoiled in the South as our species doesn’t usually bite,” said Elmer Gray, a medical and veterinary entomologist with the UGA College of Agricultural and Environmental Sciences. “In Canada and northern states like Maine and Massachusetts, they bite and leave a bloody welt.”

In Africa, black flies carry a nematode that can move to the cornea of a bite victim and cause what is called river blindness. It affects 30 million people in Central and South Africa each year, Gray said.

To fight the fly, a bio-control agent called Bti, or Bacillus thuringiensis var. israelensis, was developed. "It's not a chemical pesticide,” he said, “so it doesn't pollute streams or damage water quality.”

Bti is a strain of a soil-dwelling bacterium that occurs naturally. It is considered safe to people and wildlife. The World Health Organization has approved it for drinking water treatment in some countries, he said.

With funding from Valent Biosciences, Gray and a team of 10 UGA students and technicians work every day, year-round to maintain the colony’s 2.7 million black flies. Keeping a healthy colony alive and thriving is an essential component of testing the Bti effectiveness in controlling the pest, he said.

The researchers house the fly colony in Athens, Ga., in lobster tanks and modified salt water aquariums, a system developed at Cornell University to replicate a river habitat.

The fly colony is fed soybean meal and rabbit chow. “Our flies are larger than the flies found naturally in streams because they’re fed well,” Gray said.

Every Tuesday, the team harvests 18-day-old larvae to use to test Bti formulations. “Only 10 percent are used for research purposes,” he said, “but we have to keep a large population to ensure a healthy colony.”

Knowing how much Bti to apply to black fly populations will enable groups like the WHO to control the flies instead of treating people for the problems they cause, he said.

“Bti can be applied on a large scale using helicopters,” Gray said. “It typically costs about $25-27 a gallon in liquid form.”

The UGA researchers are also working on Bti quality. “The particles have to be the right size and must be stable and disperse in water to be effective,” Gray said.

Flies from the UGA colony are being used by other UGA researchers and in research programs at Kansas State University, University of Alabama, Clemson University and Brock University in Canada.

“We share samples with anyone we can help,” Gray said.


Maximizing Research Opportunities

Critical to the success of the research program at UGA is the construction of badly needed facilities in this area of institutional strength. The $40 million Paul D. Coverdell Center for Biomedical Health Sciences, which was completed in 2005, includes two floors of biomedical research laboratories, a state-of-the-art bioimaging research center, a 20,000-square-foot rodent-barrier facility and program offices for BHSI and the College of Public Health. Also, the College of Veterinary Medicine opened the Animal Health Research Center in 2006. AHRC houses scientists who study infectious diseases and toxicity problems that affect human and animal populations. Additionally, the College of Pharmacy’s capital campaign has raised $7 million of the $10 million it committed to build new facilities that will “bridge UGA and Medical College of Georgia,” while the state has promised to fund $36.5 million of the project. The new 140,000-square-foot Complex Carbohydrate Research Center was dedicated in February 2004, and its 900 MHz NMR spectrometer became operational in January 2005.


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