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Farm & Ranch

New World Screwworm Update

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Barry Whitworth, DVM, MPH
Senior Extension Specialist

Department of Animal & Food Sciences

Freguson College of Agriculture

Oklahoma State University

On May 11, 2025, United States Secretary of Agriculture Brooke L. Rollins suspended importation of live cattle, horse, and bison through United States (US) ports of entry along the southern border due to the continued and rapid northward spread of New World Screwworm (NWS) in Mexico. The border had been reopened in February after being closed in November 2024 following the discovery of NWS in southern Mexico. The finding of NWS in Mexico should not be a surprise since Central America has been dealing with a large increase in cases.

According to the United States Department Agriculture (USDA), NWS was eradicated from the US in 1966. Although a few cases were found until 1982. The last officially diagnosed case of NWS in Oklahoma occurred in 1976. Since 1982, only sporadic cases of NWS have been diagnosed, but these were from animals or people that were infested in another country and then entered the US.

During 2016-2017, there was a small outbreak of NWS in the Florida Keys. The first confirmed case was found in a Key deer. The USDA confirmed 136 wildlife and 9 domestic cases of NWS. With the exception of one case, all the cases were detected in the Florida Keys. The one exception was a dog in Homestead, Florida. This was the first case reported on the mainland in many years. The outbreak was contained by March 2017. 

NWS were eradicated from the US by using the Sterile Insect Technique. The program began in the 1950s. The program released male screwworm flies that were sterile. Since female flies usually only mate once, females that mated with the sterile males produced non-viable eggs. After several years, the population was eliminated.   

Currently, the USDA maintains the COPEG facility in Panama. This facility produces sterile male NWS flies that were previously released along the border of Panama and Colombia. This was done to prevent the migration of NWS from South America. On February 26, 2025, the United States Department of Agriculture’s Animal and Plant Health Inspection Service (APHIS) announced that the strategy was changing. The sterile male NWS flies will be released in certain areas in Mexico to push the pest back south. In addition to these changes, Secretary Rollins announced the USDA is investing $21 million in renovating an existing fruit fly production facility in Metapa, Mexico, to further the long-term goal of eradicating this insect. Also, the STOP Screwworm Act has been introduced in Congress which would build a domestic sterile fly facility in the US.

NWS adult flies are slightly larger than the common housefly. They have orange eyes and a blue green body which has 3 stripes down the back. The females typically mate once and lay their eggs along the edges of an open wound or in the mucous membranes (mouth, nose, ears) of an animal. When the eggs hatch, the larvae burrow into the host flesh and feed on living tissue and fluids. Wounds attract more flies which compounds the problem. Once the larvae mature, they drop to the ground, burrow into the soil, and begin the pupal stage. In a few days, the adult flies emerge to repeat the life cycle.

Animals that are infested with NWS will have a wound that has a foul-smelling odor and oozes a blood-tinged fluid. The wound will enlarge and deepen if left untreated. Occasionally, a wound will appear not to enlarge, but on closer examination the wound will have many tracts under the skin.  As the lesions get worse, the animal will refuse to eat and separate from the herd. If treatment is not provided, the animal will die from tissue damage, toxemia, and/or from secondary bacterial infections.  

The first step in treating NWS infections is to remove the larvae. Once the larvae are removed, the wound should be cleaned and any necrotic tissue removed. Next, an insecticide should be applied to the wound. Antibiotics may be necessary to treat secondary bacterial infections.

Before the eradication of NWS from the US, livestock producers spent a great deal of time trying to prevent NWS infestations. Navels of newborns required insecticidal treatment. If producers failed to do this, many of these babies would die due to infections. Procedures such as tail docking, castration, dehorning, or branding had to be done at certain times of the year when NWS were not a problem. 

The message that Dr. Rod Hall, State Veterinarian of Oklahoma, would like livestock producers to remember is:

  • Currently, the USDA has not found a case of screwworm in the US.
  • Livestock producers should develop a basic understanding of the parasite.
  • The possibility exists that Oklahoma might find a case this summer.
  • Even if a case is discovered, Oklahoma beef, pork, and poultry continue to be safe for human consumption.
  • Information about collecting and submitting samples on potential cases is being developed and will be announced soon.
  • If cases are found in Oklahoma, Oklahoma Department of Agriculture, Food, and Forestry will be advising on the best treatment options.

If producers would like more information about New World Screwworms, they should contact their local veterinarian or their local Oklahoma State University County Extension Agriculture Educator.  Additional information about NWS, may be found at the USDA New World Screwworm web site at https://www.aphis.usda.gov/livestock-poultry-disease/cattle/ticks/screwworm.

References

United State Department of Agriculture (2025, May 28). New World Screwworm. https://www.aphis.usda.gov/livestock-poultry-disease/cattle/ticks/screwworm

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Farm & Ranch

Is the Pond Safe for Livestock?

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By OKFR Staff

Livestock One of the most serious late- summer concerns is a bloom of cyanobacteria, commonly called blue-green algae. These organisms are naturally present in many bodies of water, and most do not produce dangerous toxins. The risk increases when certain toxin-producing species multiply rapidly under favorable

During the hottest part of summer, a farm pond can look like a welcome source of water. Cattle may be standing belly- deep along the bank, and the pond may still hold enough water to appear dependable. However, appearance alone does not reveal whether that water is safe.

Hot weather, limited rainfall and falling pond levels can create water-quality problems. As water evaporates, salts, minerals, nutrients and other substances may become more concentrated. Warm, still water can also encourage the growth of blue-green algae, some forms of which can produce toxins capable of killing livestock.

Water is sometimes treated as an afterthought compared to grass, hay and supplemental feed. In reality, livestock need a dependable supply of clean water to maintain feed intake, regulate body temperature and support production. Poor-quality water may reduce consumption and performance even when it does not cause an obvious case of poisoning.

A pond that has watered cattle for years should not automatically be considered safe under every set of conditions. Producers should pay particular attention during drought, extreme heat or any period when the water level drops significantly.

Watch the Water and the conditions.

According to Oklahoma State University Extension, toxic blue- green algal blooms typically develop in standing water following periods of hot, dry and calm weather. Nutrients such as nitrogen and phosphorus can contribute to excessive growth. Those nutrients may enter a pond through manure, fertilizer runoff, soil erosion and decaying vegetation.

A suspicious bloom may make the water appear bright green, blue-green, pea-soup green or even brownish. Scum, foam or mats may collect along the shoreline, particularly where the wind pushes floating material into one area. Some blooms resemble spilled paint.

Not every green pond is poisonous. Common aquatic plants and harmless forms of algae can also change the color or surface of the water. Unfortunately, it is usually impossible to determine whether a bloom is toxic simply by looking at it. A pond can contain toxin-producing cyanobacteria without displaying every commonly described warning sign.

Blue-green algae can produce toxins that affect the nervous system or liver. Depending on the toxin and the amount consumed, affected animals may develop weakness, staggering, difficulty breathing, tremors, convulsions, diarrhea or collapse. In severe cases, animals may be found dead near the water before the owner realizes anything is wrong. Treatment is often unsuccessful, making prevention especially important.

Any suspected poisoning should be treated as an emergency. Remove the herd from the water source without driving or unnecessarily stressing animals that may already be affected. Provide another clean water supply and contact a veterinarian immediately. The local county Extension office can also help determine where and how to submit an appropriate water sample.

Blue-green algae is not the only potential problem. Pond water may contain elevated levels of dissolved salts, sulfates, nitrates, bacteria or other contaminants. Runoff can carry manure, fertilizer, pesticides and organic matter into the pond. Low water levels can make some of these problems more pronounced because the remaining water becomes increasingly concentrated.

Water with excessive dissolved solids may taste bitter or salty, reducing the amount animals consume. Depending on the substances involved and their concentrations, poor- quality water may contribute to diarrhea, reduced feed intake, poor weight gain or other health concerns. Young animals and livestock that are not accustomed to the water may be more vulnerable.

Producers should also watch the cattle themselves. Are they reluctant to drink? Are they crowding around a different water source? Has feed intake or weight gain declined without an obvious explanation? Are several animals experiencing digestive problems? Changes involving multiple animals can provide an early clue that feed or water should be investigated.

OSU Extension recommends collecting a representative sample and submitting it for a livestock water test when a water supply is suspected of harming animal health or performance. A standard livestock water test may evaluate several characteristics, but blue-green algae concerns can require different sampling and testing procedures. Producers should contact the laboratory or county Extension office before collecting the sample so it is taken from the correct location, placed in the proper container and handled appropriately.

They Develop Good pond management cannot eliminate every water- quality problem, but it can lower the risk. One of the most effective steps is limiting the amount of manure, soil and nutrients that enter the water.

Allowing cattle unrestricted access to an entire pond can result in damaged banks, muddy water and large amounts of manure being deposited in or near the water. Hoof traffic removes vegetation and contributes to erosion. Sediment fills the pond over time, while manure supplies nutrients that may encourage excessive algae growth.

Where practical, fencing livestock away from most of the pond and providing a limited-access watering point can improve conditions. Another option is piping water to a trough located below the dam or elsewhere in the pasture. OSU notes that reducing cattle excrement in the pond can decrease conditions favoring toxic algae and improve water palatability.

A vegetated buffer around the pond can also slow runoff and help trap soil and nutrients before they reach the water. Fertilizer and manure should be applied carefully in the water

shed, particularly before heavy rainfall. Producers should avoid allowing large amounts of hay, feed or organic debris to accumulate at the water’s edge.

Alternative watering systems require maintenance, too. Troughs should be checked for algae, manure, drowned animals and other contamination. Wildlife escape ramps should be installed in tanks so birds and small animals can climb out rather than drowning and contaminating the water.

Owners should be cautious about treating a pond on their own. Copper sulfate and other algaecides are sometimes used for algae control, but improper treatment can create additional problems. Killing a large quantity of algae or aquatic vegetation at one time can reduce dissolved oxygen as the material decomposes, potentially leading to a fish kill. Treatment may also release toxins from affected cyanobacteria into the water. Any chemical application should be based on proper identification and professional recommendations rather than guesswork.

Livestock should always have access to enough water for the weather, their size and their stage of production. Demand increases sharply during hot weather, and a pond that barely meets the herd’s needs in spring may not be sufficient in August. Check the source regularly rather than waiting for cattle to gather around a muddy shoreline.

Looks can be deceiving when it comes to ponds. Crystal-clear water isn’t always safe, and a green pond doesn’t necessarily mean toxic algae.

That’s why regular observation, testing and proactive prevention are essential for maintaining pond.

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Farm & Ranch

Theileria orientalis in Oklahoma

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By Barry Whitworth, DVM

Over the past few years, Theileria orientalis has been detected in cattle in Oklahoma. Early cases were primarily diagnosed in adult cattle. However, more recent cases in Oklahoma have been identified in stocker cattle. All cattle producers should be familiar with the clinical signs of this disease and observe their cattle daily for any signs of trouble.

In the United States, the first case of theileriosis was identified in Virginia in August 2017. These cattle exhibited clinical signs of weakness and anemia. An initial diagnosis of anaplasmosis was made. Blood samples from the animals were tested for Anaplasma, Babesia, and Leptospira. Test results were negative for all three; however, a blood protozoan was detected. This organism was identified as T. orientalis genotype Ikeda. Since this initial herd outbreak, the organism has been detected in several states.

Cattle infected with and showing illness from T. orientalis genotype Ikeda may exhibit clinical signs such as fever, weakness, anorexia, and exercise intolerance. If forced to move, affected cattle may stagger and gasp for air. If stressed excessively, they may collapse and die. Upon examination, the gums, eyes, or vaginal mucosa may appear pale (white) or yellow in color. Reproductive losses, including stillbirths and late-term abortions, may occur, along with a reduction in milk production.

Clinical signs reported in adult cattle in Oklahoma include anemia, sudden death, weight loss, abortion, failure to thrive, and failure to calve. In stocker cattle, weight loss, anemia, poor performance, and sudden death have been reported.

Because Anaplasma marginale and T. orientalis genotype Ikeda produce similar clinical signs, distinguishing between the two can be challenging.

One notable difference is that clinical signs are more commonly observed in young cattle infected with T. orientalis, whereas this is less common in cattle infected with A. marginale. Additionally, cattle with anaplasmosis often display aggression, whereas those with T. orientalis genotype Ikeda typically do not. A laboratory test is required to definitively differentiate between the two diseases.

Haemaphysalis longicornis has been identified as a possible vector of T. orientalis genotype Ikeda. In 2017, the United States Department of Agriculture’s (USDA) National Veterinary Services Laboratories (NSVL) confirmed the presence of H. longicornis, commonly referred to as the Asian longhorned tick (ALT) or bush tick. In efforts to determine how the tick arrived in the United States, USDA officials discovered it had been present in West Virginia as early as 2010. The tick has now been confirmed in at least 26 states, including Oklahoma. There is also some evidence suggesting additional insect vectors may transmit T. orientalis genotype Ikeda. Needle transfer is another possible route of transmission.

The ALT has been identified in Craig and Mayes counties in Oklahoma. This tick thrives in areas with high humidity, such as wooded regions, brush, or tall grass. Ticks are often found where large numbers of wildlife congregate, such as along deer trails. Producers seeking more information about the ALT can visit the USDA website at: https://www.aphis.usda. gov/livestock-poultry-disease/ cattle/ticks/asian-longhorned.

In other countries, treatments have been developed for T. orientalis. Unfortunately, no approved treatments are currently available in the United States, and no vaccines exist for this disease. The best defense is prevention: purchasing cattle free of the organism, avoiding blood transfer between animals, and implementing effective tick control measures. Producers should purchase cattle from reputable sources. Instruments should be cleaned between animals during procedures such as castration or dehorning, and needles should always be changed between animals. External parasites must be controlled using appropriate insecticide treatments. In addition to insecticides, pasture management strategies—such as rotation to avoid wooded or brushy areas where ticks thrive—are important. Patch burning may also help reduce tick populations.

Theileria orientalis remains a concern for some cow/calf and stocker producers in Oklahoma. Producers seeking more information about T. orientalis genotype Ikeda should contact their local veterinarian or Oklahoma State University County Extension Agriculture educator.

References Hammer, J. F., Emery, D., Bogema, D. R., & Jenkins, C. (2015). Detection of Theileria orientalis genotypes in Haemaphysalis longicornis Ticks from Southern Australia. Parasites & vectors, 8, 229.

Oakes, V. J., Yabsley, M. J., Schwartz, D., LeRoith, T., Bissett, C., Broaddus, C., Schlater, J. L., Todd, S. M., Boes, K. M., Brookhart, M., & Lahmers, K. K. (2019). Theileria orientalis Ikeda Genotype in Cattle, Virginia, USA. Emerging infectious diseases, 25(9), 1653–1659.

Spickler, Anna Rovid. (2019). Theileriosis. Retrieved from http://www.iastate.edu/DiseaseUbfi/factsheets.php.

Watts, J. G., Playford, M. C., Hickey, K.L. (2016). Theileria orientalis: A Review, New

Zealand Veterinary Journal, 64:1, 3-9.

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Farm & Ranch

When an Old Threat Returns

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By Ann Asher

Then there are the diseases and pests that younger generations have only read about.

For decades, New World screwworm belonged in that second category. Older ranchers remembered the days when a simple branding wound or a newborn calf’s navel had to be watched closely because it could attract one of the livestock industry’s most destructive pests. Veterinarians still taught students how to recognize it, but for many producers, screwworm was something that had been conquered long before they ever worked their first set of cattle.

This summer, that changed. On June 3, 2026, the U.S. Department of Agriculture confirmed New World screwworm in a calf in South Texas, marking the parasite’s return to the United States after decades of successful eradication. While Oklahoma has not reported any confirmed cases, the discovery has ranchers across the Southern Plains paying close attention. The concern isn’t just where screwworm is today, but where it could be tomorrow.

Unlike the common maggots that feed on dead tissue, New World screwworm larvae feed on living flesh. Adult female flies are drawn to fresh wounds and natural body openings, laying hundreds of eggs at a time. Within hours, the larvae hatch and begin burrowing into healthy tissue, enlarging the wound as they feed. Left untreated, an infestation can become life-threatening.

There are some livestock problems that today’s ranchers know by heart. Pinkeye. Foot rot. Horn flies. Internal parasites. Most producers have dealt with them at one time or another.

The list of potential hosts is long. Cattle, horses, sheep, goats, pigs, dogs, wildlife and, in rare cases, people can all become infested. Even relatively small injuries—a wire cut, a tick bite, a branding wound, a castration site, a dehorning wound or a newborn calf’s healing navel—can provide an opportunity for the fly.

Fortunately, today’s producers have one advantage their grandparents often did not: they know what they’re looking for.

A wound that continues to grow instead of heal should never be ignored. Bloody or watery discharge, a strong foul odor, swelling, pain, visible larvae and unusual behavior such as excessive licking, head shaking or isolation from the herd all warrant a closer look. While these signs can indicate several different conditions, they should also prompt producers to consider the possibility of screwworm and contact their veterinarian immediately.

The return of screwworm has also reminded many people of one of agriculture’s greatest success stories.

During the mid-1900s, New World screwworm cost American livestock producers millions of dollars each year. Rather than relying solely on insecticides, scientists developed what became known as the Sterile Insect Technique. Millions of sterile male flies were raised and released into affected areas. Female screwworm flies mate only once during their lifetime. When they mated with sterile males, no offspring were produced. As generation after generation failed to reproduce, screwworm populations steadily declined until the pest was eliminated from the United States and later pushed farther south through Mexico and much of Central America.

That same strategy is once again leading the response.

Federal and state animal health officials have increased surveillance in affected areas, established movement controls where necessary and resumed sterile fly releases to prevent the pest from becoming established. Veterinarians, livestock markets and producers are all part of the early detection system, with every suspicious case helping officials determine where additional monitoring may be needed.

For Oklahoma producers, the message is one of awareness rather than alarm.

As of this writing, no cases have been confirmed in Oklahoma. Even so, Oklahoma shares a long border with Texas, and livestock routinely move throughout the region for sales, breeding, shows and grazing. That makes vigilance especially important during fly season.

Routine herd checks have always been one of the best management tools available, and they are even more valuable now. Fresh wounds should be treated promptly and monitored until they heal. Newly branded or processed cattle deserve extra attention, as do newborn calves, horses with injuries, sheep after shearing and any animal recovering from surgery or trauma. Wildlife can also serve as hosts, making complete prevention impossible, but early detection can make all the difference.

If producers suspect screwworm, they should avoid simply treating the wound and moving on. Instead, they should contact their veterinarian or the Oklahoma Department of Agriculture, Food and Forestry so the case can be evaluated and, if necessary, samples collected. Rapid reporting is one of the most effective tools available for limiting the spread of the pest.

Perhaps the most encouraging part of this story is that agriculture has faced this challenge before—and won.

The same science that eliminated New World screwworm from the United States decades ago is once again being deployed. Researchers understand the insect’s life cycle. Veterinarians know what to look for. Producers are better connected than ever through Extension services and state animal health agencies.

Screwworm may have returned to the United States, but so have the tools that defeated it the first time.

For Oklahoma livestock producers, the best response is also the simplest: keep an eye on your animals, don’t ignore wounds that aren’t healing, and report anything that doesn’t look right. When it comes to screwworm, finding one case early is far better than finding many too late.

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