Farm & Ranch
New World Screwworm Update
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
Farm & Ranch
Acorn Toxicity
Barry Whitworth, DVM
Area Food/Animal Quality and Health
Specialist for Eastern Oklahoma
With the prolonged drought, most pastures in Oklahoma are in poor condition. With the lack of available forage, animals may go in search of alternative foods. If oak trees are in the pastures, acorns may be a favorite meal for some livestock this fall. This may result in oak poisoning.
Oak (Quercus species) leaves, twigs, buds, and acorns may be toxic to some animals when consumed. Obviously, acorns can be a problem in the fall and green acorns can be more toxic than mature acorns. When acorns form only a small portion of the diet, there are usually no signs of problems. However, consumption of large quantities may result in toxicity. Tannins in the acorns cause the toxicity. The most common tissue damaged by the tannins are the digestive tract and kidneys. Cattle and sheep appear to be more susceptible to toxicity than goats. Other animals such as horses, rabbits, and chickens have succumbed to the toxicity of oak poisoning as well. Interestingly, some individual animals are more tolerable of the toxins and show no ill effects when consuming acorns.
Clinical signs of oak toxicity usually appear a few days after consumption of acorns. Initially, the animals are weak, listless, emaciated, and anorexic. This is followed by ventral edema (swelling of lower parts of the body such as legs, chest, ventral abdomen), urinating large amounts of urine, abdominal pain, and constipation. The animal may pass hard mucus covered fecal material which may change to black tarry or bloody feces as the disease progresses. If the animal is not treated, kidney failure is likely.
A tentative diagnosis of acorn poisoning may be based on clinical signs and access to acorns. Blood tests that indicate kidney disease is another clue to the condition. A necroscopy with examination of tissues for characteristic lesions of the disease is the standard to confirm a diagnosis of oak toxicity.
Treatment of oak toxicity starts with removing the animals from the area where the acorns are located. Those animals displaying signs of the disease should be given fluids to correct dehydration and electrolyte imbalances. Mineral oil and/or activated charcoal may be given to reduce toxin absorption. If animals survive the initial toxicity, they may recover, but it may take several weeks for kidney function to return to normal.
As always, prevention is better than treatment. Producers should be very careful allowing livestock to graze in areas where acorns are present. Livestock should be fed plenty of hay and feed this fall to avoid over consumption of acorns. For those producers who cannot avoid grazing areas with large numbers of oak trees, feeding a grain mixture with 10% to 20% of calcium hydroxide has been successful in preventing problems with acorn poisoning.
Two thousand twenty-two has not been the best year for livestock producers. The drought has produced poor pasture conditions as well as very little hay. On top of those problems, feed costs continue to increase. The last problem a producer needs is a large number of sick cows. For those that graze an area with a large number of oak trees, prevention may be worth the cost this year. At the very least keep a close watch of your animals this fall. Producers wanting more information about oak toxicity, should consult with their local veterinarian or visit with their Oklahoma State University Cooperative Extension County Agriculture Educator.
Farm & Ranch
Fescue Foot
Barry Whitworth, DVM | Area Food/Animal Quality and Health Specialist for Eastern Oklahoma
*Article originally printed in the October 2022 issue of Oklahoma Farm & Ranch.
Since most of Oklahoma experienced drought conditions and with fall fast approaching, producers with fescue pastures should closely observe their livestock for any signs of fescue toxicity. According to Mike Trammel, Pottawatomie County Ag Educator and Muti-County Agronomist, fescue toxins (ergot alkaloids) tend to increase in Kentucky-31 tall fescue pastures in the fall. Some reports indicate more problems with fescue toxins following a summer drought and limited fall rains. All of this may put Oklahoma cattle at a greater risk of fescue toxicity.
One issue that cattle experience with fescue toxins is fescue foot. Fescue foot is thought to be caused by ergot alkaloids such as ergovaline. These alkaloids are produced by endophyte fungus (Epichloë coenophiala) which is in tall fescue. Ergovaline has been proven to be a vasoconstrictor which might be responsible for fescue foot and heat intolerance also known as summer slump in cattle. Other issues that may be seen with the ergot fescue toxins are reduced milk production and reproductive issues.
Clinical signs of fescue foot appear within a few days of cattle being turned on to tall fescue pastures or it may take weeks if toxins in the pasture are low. Producers will initially observe cattle with arched back, rough hair coats, and sore feet. These symptoms are more noticeable early in the morning and with cold weather. This is followed by reddening and swelling in the area between the dewclaws and hooves. The lameness usually becomes more severe with time. If no action is taken, gangrene will result in loss of tissues distal to the coronary band and declaws. If the weather remains mild, other signs such as increase respiration rate, increase heart rate, and higher body temperature are more common.
Other causes of lameness in cattle must be differentiated from fescue foot. One simple method that will help differentiate fescue foot from footrot is to check the temperature of the foot. If the foot is cold, this is an indication that the problem is more likely fescue foot.
Since there is not a specific treatment for fescue foot, the condition must be managed. Cattle need to be observed daily for any signs of lameness or stiffness during the first few weeks on fescue pastures. This should be done early in the morning before cattle walk off the stiffness. Producers should pay close attention during cold weather, especially when rain, snow, or ice are present. Any animal showing clinical signs of fescue foot should be removed from the pasture and placed in a clean environment. The animal should be fed a ration with no fescue toxins.
The best but most costly solution to reduce fescue toxicity is to renovate old pastures with new endophyte friendly varieties. If this option is not possible, producers might try interseeding fescue pastures with clovers or other grasses. This should dilute fescue toxins. Nitrogen fertilization may increase ergot alkaloids, so producers should avoid fertilizing fescue pastures with high amounts of nitrogen. Researchers have demonstrated that feeding a supplement while grazing fescue pastures reduces clinical symptoms. Some studies indicate a difference in susceptibility to fescue toxicity in some cattle. Selecting cattle based on genetic tolerance of fescue toxins is an option. (For more information go to www.agbotanica.com/t-snip.aspx)
With large areas in Oklahoma covered with Kentucky-31 fescue pastures, fescue foot as well as other fescue toxicities are not going away any time soon. Livestock producers will need to watch their livestock closely for any signs of fescue toxicity and manage their pastures to keep toxins as low as possible. If producers would like more information on fescue foot, they should consult their veterinarian and/or visit their local Oklahoma State University Cooperative County Extension Agriculture Educator.
Farm & Ranch
External Parasites in Backyard Poultry
By Barry Whitworth, DVM, MPH | Senior Extension Specialist Department of Animal & Food Sciences | Ferguson College of Agriculture | Oklahoma State University
According to the 11th edition of Poultry Diseases, external parasites of poultry are arthropods that live on or in the skin and feathers. Essentially, parasites are freeloaders that live at the expense of the host. Backyard birds are infested with a variety of pests. Ticks, fleas, mites, and lice are some of the most common external parasites found in chickens, turkeys, and ducks. Several of these parasites are bloodsuckers. If not controlled, they can cause weight loss, decreased egg production, unthriftiness, and death in severe cases.
According to a study conducted by Dr. Amy Murillo and associates in California, the most common external parasites in backyard flocks were lice, fleas, and mites. Lice were the most frequently observed parasites, with the chicken body louse (Menacanthus stramineus) found on half of the premises inspected. The fluff louse (Goniocotes gallinae) was found in 35% of operations. The wing louse (Lipeurus caponis) and sticktight flea (Echidnophaga gallinacea) were present in 20% of flocks. Northern fowl mites (Ornithonyssus sylviarum), which are the most common mites found in commercial poultry operations, were detected in only 15% of flocks. However, the survey was conducted in the summer, which may have influenced the low number of northern fowl mites, since they are most active in the winter.
Birds infested with external parasites often become agitated due to skin irritation. They will spend more time preening and scratching. Their feathers may become damaged, and they may appear unhealthy. Birds showing these signs should be examined.
When examining birds for external parasites, producers should focus on the breast, back, head, vent region, and wings. Lice may be found on different parts of the body. They are yellowish in color and lie flat against the skin. Their eggs are typically found attached to the shafts of feathers. The vent area is the primary location to check for mite infestations and may appear “dirty.” Sticktight fleas are usually found embedded in the comb.
Birds should be monitored regularly. When producers are unable to examine all birds, they should focus on the young, the old, and any bird that appears unhealthy. The coop should also be inspected. Producers should examine the bedding, walls, and roosts, with close attention given to crevices and cracks where pests may hide.
Before parasite control can begin, the parasite must be correctly identified. Producers can use books or other publications for this purpose, or they may consult a veterinarian. Contacting the local Oklahoma State University Extension office is also a useful option. An agricultural extension educator may be able to identify the pest or submit samples to the Plant Disease and Insect Diagnostic Laboratory at Oklahoma State University for identification.
Prevention and control of external parasites require an integrated approach. The first line of defense is a strong biosecurity program to prevent parasites from entering the operation. Sanitation is also critical, keeping the coop and surrounding area clean helps prevent infestations.
Maintaining healthy birds is essential in preventing parasite infestations. Producers should focus on proper nutrition and disease prevention as they are key factors in maintaining a healthy flock. A strong immune system can help birds better withstand some external parasites.
Selecting the proper pesticide and using it correctly is essential. Many pests described in this article can be controlled with appropriate pesticides; however, their eggs are not killed, which requires repeated applications to target newly hatched larvae. Producers should read and follow pesticide label directions.
Alternative methods for external parasite control are also available such as providing diatomaceous earth mixed with sand for dust bathing or using sulfur bags to control mites and lice. For more information on these methods, see references below.
Finally, early identification and treatment greatly increase the chances of successful control. If infestations are allowed to become established, control becomes much more difficult.
For more information on external parasites in backyard poultry, producers may visit https://www.veterinaryentomology.org/ or contact their local veterinarian or Oklahoma State University County Agriculture Extension Educator.
References
Arends, J., J. (2003). External parasites and poultry pests. Diseases of Poultry. 11th Edition.
Murillo, A. C., & Mullens, B. A. (2016). Diversity and Prevalence of Ectoparasites on Backyard Chicken Flocks in California. Journal of medical entomology, 53(3), 707–71.
Murillo, A. C., & Mullens, B. A. (2016). Timing Diatomaceous Earth-Filled Dustbox Use for Management of Northern Fowl Mites (Acari: Macronyssidae) in Cage-Free Poultry Systems. Journal of economic entomology, 109(6), 2572–2579.
Murrillo, A.C., Mullens, B.A. (2016). Sulfur Dust Bag: A Novel Technique for Ectoparasite Control in Poultry Systems: Journal of Economic Entomology, 109(5), 2016, 2229-2233.
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