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Texas A&M AgriLife will receive part of $105 million in research funding announced by the U.S. Department of Agriculture, USDA, to bolster the nation’s defenses against New World screwworm, NWS.

Stay informed and prepared for New World screwworm

Explore fact sheets, reporting protocols and prevention tips from Texas A&M AgriLife experts.

USDA launched the NWS Grand Challenge in January, calling for innovators from federal and non-federal entities to help prevent the spread of NWS by developing high-impact projects to enhance detection, control, and eradication readiness. On June 17, it announced funding for 40 breakthrough research projects.

Texas A&M AgriLife was selected to lead seven proposals and contribute to seven additional projects from the 226 applications. Projects were selected based on their innovative approaches, scientific gold standards and their potential to make a significant impact on the prevention and response to NWS.

In addition to the 40 projects announced, Texas A&M AgriLife Research is already conducting a separate USDA-funded Grand Challenge project assessing the feasibility, efficacy and operational readiness of electron beam, eBeam, technology as a non-radioactive alternative to cobalt-60 gamma irradiation for sterilizing NWS pupae in sterile insect technique programs. 

“These projects reflect the strength of our Texas A&M AgriLife teams and their commitment to protecting animal health and supporting Texans,” said Jeffrey W. Savell, Ph.D., vice chancellor and dean for Agriculture and Life Sciences.

“By uniting innovation with purpose, we’re building the tools that protect livestock, safeguard our food systems and strengthen the resilience of every community that depends on them,” said G. Cliff Lamb, director of AgriLife Research. “This work reflects our commitment to science that serves, providing solutions that defend animal health today while preparing Texas and the nation for the challenges ahead.”

a New World screwworm larva on a maroon background
Texas A&M AgriLife will work on 14 research projects as a part of the U.S. Department of Agriculture’s New World Screwworm Grand Challenge Project. (Michael Miller/Texas A&M AgriLife)

Grand Challenge focus areas

The Grand Challenge focuses on four core priorities:

  • Enhance sterile NWS fly production to improve program efficiency and capacity. 
  • Develop novel NWS traps and lures to modernize detection and early warning systems. 
  • Advance NWS therapeutics and treatments to reduce animal health impacts and strengthen response capability. 
  • Develop tools that bolster preparedness and response, including repellents, ecological modeling, wildlife surveillance, or other innovative approaches.

Texas A&M AgriLife projects funded

Projects that enhance sterile NWS fly production announced in Texas A&M University’s College of Agriculture and Life Sciences, College of Engineering and College of Veterinary Medicine and Biomedical Sciences are.

Sterile fly production

  • Keyan Zhu-Salzman, Ph.D., AgriLife Research entomologist and professor in the Department of Entomology — Maximizing sterile insect technique efficacy via optimizing electron beam irradiation conditions for screwworm control. AgriLife Research leads this project.

Therapeutics and treatments

Preparedness and response tools

  • Phillip Kaufman, Ph.D., department head, Department of Entomology — Investigating plant and vertebrate encounters in addition to potential biological controls of New World screwworm. Department of Entomology leads this project.
  • Sapna Dass, Ph.D., AgriLife Research microbial ecology scientist and assistant professor, Department of Animal Science — Sentinel surveillance and rapid molecular confirmation for New World Screwworm across livestock. AgriLife Research leads this project.
  • Sushil Paudyal, associate professor of dairy science, Department of Animal Science — Early wound detection using AI-enabled, multimodal New World screwworm surveillance on beef and dairy operations. AgriLife Research leads this project.
  • Dzmitry Kurouski, Ph.D., Texas A&M AgriLife Institute for Advancing Health through Agriculture member and associate professor, Department of Biochemistry and Biophysics — Non-invasive and non-destructive sensing of screwworm larvae and larval sex determination. Texas A&M AgriLife leads this project.

Additional projects Texas A&M AgriLife will collaborate on

  • Gabriel Hamer, AgriLife Research entomologist and professor, Department of Entomology — Something old and something new: chemical ecology and management of the New World screwworm. BanfieldBio Inc. will lead this project.
  • Aaron Tarone, Ph.D., AgriLife Research scientist and professor, Department of Entomology — Enhancing lure specificity and attractiveness for new world screwworm surveillance using microbially-produced volatiles. Colorado State University is the lead on this project.
  • Zach Adelman, Ph.D., professor, Department of Entomology — A multi-modal photonic platform for radiation-free sterile insect technique, automated trap detection, and rapid forward deployment enabled by robotic microinjection. Hive Biosystems Inc. is leading the project.
  • Raul Medina, Ph.D., professor, Department of Entomology — Next-generation male-only screwworm strains for enhanced sterile insect technique programs. North Carolina State University will lead this project.
  • Jamie Foster, Ph.D., AgriLife Research forage agronomist and professor, Department of Soil and Crop Sciences, Beeville — An integrated framework for next-gen NWS surveillance: utilizing smart trap technology, targeted lures and public reporting networks. The University of Texas at Arlington is leading the project.
  • Suresh Pillai, Ph.D., AgriLife Research scientist, professor, Department of Food Science and Technology, IHA member and head of the National Center for Electron Beam Research — Electron beam-enabled area-wide management using sterile insect technique. Wasik Associates LLC will lead the project.
  • Mustafa Akbulut, Ph.D., an associate professor, Artie McFerrin Department of Chemical Engineering — Botanical-synthetic synergy for New World screwworm control: novel foam, spray, and immersion wash larvicide formulations for dose-sparing efficacy and residue minimization. Texas A&M Engineering Experiment Station will lead this project.

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