Raccoons (n=590) were collected from October 1999 to August 2003 from 35 counties across Texas, and gastrointestinal tracts were examined for helminth parasites. Prevalence was calculated and differences in mean abundance were examined among habitat ecoregions, age classes, and between sexes. Twenty different species of helminths (13 nematodes, two cestodes, two acanthocephalans, and three trematodes) were positively identified in the gastrointestinal tracts of 590 raccoons in Texas. Five of the 20 helminth species collected (Physaloptera rara, Placoconus lotoris, Molineus barbatus, Atriotaenia procyonis, and Macracanthorhynchus ingens) had a prevalence >20%. The total number of individuals of these five species (n=22,777) accounted for over 86% of the total number of individuals of all helminth species (n=26,426) collected. Subsequent analyses were based on these five helminths. Mean abundance differed among habitat ecoregions, age classes, and between sexes for all five parasites evaluated. This study is the most comprehensive statewide survey ever done of gastrointestinal helminths of raccoons across Texas. The five most prevalent helminths identified have all been reported in at least one previous survey, indicating that these parasites are not new to Texas and that raccoons are not naïve to the effects these parasites have on them. It may be helpful to wildlife rehabilitators, trappers, wildlife biologists, and other professionals to be aware of parasite abundance in raccoons from different areas of the state, as frequent human-raccoon interactions occur, and some of these parasites could be harmful to humans and domestic animals.
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http://dx.doi.org/10.7589/0090-3558-45.1.1 | DOI Listing |
mBio
December 2024
Department of Disease Intervention and Prevention, Texas Biomedical Research Institute, San Antonio, Texas, USA.
Since the emergence of highly pathogenic avian influenza virus (HPAIV) H5N1 of clade 2.3.4.
View Article and Find Full Text PDFJ Vector Ecol
December 2024
Department of Veterinary Integrative Biosciences, Texas A&M University, College Station, TX, U.S.A.,
J Med Entomol
November 2024
United States Department of Agriculture, Agricultural Research Service, Plains Area; Knipling-Bushland U.S. Livestock Insects Research Laboratory, Cattle Fever Tick Research Unit, 22675 N. Moorefield Road., Moore Airbase, Building 6419, Edinburg, TX, USA.
Wildlife are hosts of ectoparasites, such as fleas and ticks that may transmit human and animal pathogens. Little is known about the ecology of many ectoparasite species native to southern Texas, or their role in pathogen maintenance and transmission. Much attention has been given to the role of nonnative nilgai antelope as cattle fever tick hosts and agents of dispersal, but little attention has been given to other ectoparasites that may utilize nilgai antelope as hosts.
View Article and Find Full Text PDFJ Am Vet Med Assoc
November 2024
1Poxvirus and Rabies Branch, Division of High-Consequence Pathogens and Pathology, National Center for Emerging and Zoonotic Infectious Disease, CDC, Atlanta, GA.
Objective: To provide comprehensive epidemiological information about the distribution and occurrence of rabies during 2022 in the US, Canada, and Mexico.
Methods: The US National Rabies Surveillance System collected 2022 animal rabies data from US state and territorial public health departments and USDA Wildlife Services. Temporal and geographic analyses were conducted to evaluate trends in animal rabies cases.
Biology (Basel)
June 2024
Department of Biology, Texas State University, 601 University Drive, San Marcos, TX 78666, USA.
The prevalence of was assessed in 117 triatomine insects from central Texas. The PCR-based results revealed in 59% of the insects (62 adults and eight nymphs), with overall prevalences of of 0% (0/9), 64% (11/17), 58% (10/17), 73% (30/41), and 57% (19/33) for the Bastrop, Caldwell, Gonzales, Guadalupe, and Hays counties, respectively. Analyses of 18S rRNA fragments confirmed in 81% of these samples.
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