Improved Quantitative Estimates of Low Environmental Loading and Sporadic Periparturient Shedding of Cryptosporidium parvum in Adult Beef Cattle

Author:

Atwill E. R.1,Hoar B.2,das Graças Cabral Pereira M.1,Tate K. W.3,Rulofson F.4,Nader G.5

Affiliation:

1. Veterinary Medicine Teaching and Research Center, School of Veterinary Medicine, University of California—Davis, Tulare, California 93274

2. Population Health and Reproduction, School of Veterinary Medicine

3. Department of Agronomy and Range Science, University of California—Davis, Davis, California 95616

4. University of California Cooperative Extension, Sonora, California 95370

5. University of California Cooperative Extension, Yuba City, California 95991

Abstract

ABSTRACT Our primary goal was to generate an accurate estimate of the daily environmental loading rate of Cryptosporidium parvum oocysts for adult beef cattle, using immunomagnetic separation coupled with direct immunofluorescence microscopy for a highly sensitive diagnostic assay. An additional goal was to measure the prevalence and intensity of fecal shedding of C . parvum oocysts in pre- and postparturient cows as an indicator of their potential to infect young calves. This diagnostic method could detect with a ≥90% probability oocyst concentrations as low as 3.2 oocysts g of feces −1 , with a 54% probability of detecting just one oocyst g of feces −1 . Using this diagnostic method, the overall apparent prevalence of adult beef cattle testing positive for C . parvum was 7.1% (17 of 240), with 8.3 and 5.8% of cattle shedding oocysts during the pre- and postcalving periods, respectively. The mean intensity of oocyst shedding for test-positive cattle was 3.38 oocysts g of feces −1 . The estimated environmental loading rate of C . parvum ranged from 3,900 to 9,200 oocysts cow −1 day −1 , which is substantially less than a previous estimate of 1.7 × 10 5 oocysts cow −1 day −1 (range of 7.7 × 10 4 to 2.3 × 10 5 oocysts cow −1 day −1 ) (B. Hoar, E. R. Atwill, and T. B. Farver, Quant. Microbiol. 2: 21-36, 2000). Use of this highly sensitive assay functioned to detect a greater proportion of low-intensity shedders in our population of cattle, which reduced the estimated mean intensity of shedding and thereby reduced the associated environmental loading rate compared to those of previous studies.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference45 articles.

1. American Society of Agricultural Engineers. 1992. Manure production and characteristics p. 485-487. In ASAE standards D384.1. Agricultural engineering yearbook. American Society of Agricultural Engineers St. Joseph Mich.

2. Arrowood, M. J., and C. R. Sterling. 1987. Isolation of Cryptosporidium parvum and sporozoites using discontinuous sucrose and isopycnic Percoll gradients. J. Parasitol.73:314-319.

3. Atwill, E. R., J. A. Harp, T. Jones, P. W. Jardon, S. Checel, and M. Zylstra. 1998. Evaluation of periparturient dairy cows and contact surfaces as a reservoir of Cryptosporidium parvum for calfhood infection. Am. J. Vet. Res.59:1116-1121.

4. Atwill, E. R., E. Johnson, D. J. Klingborg, G. M. Veserat, G. Markegard, W. A. Jensen, D. W. Pratt, R. E. Delma, H. A. George, L. C. Forero, R. L. Phillips, S. J. Barry, N. K. McDougald, R. R. Gildersleeve, and W. E. Frost. 1998. Age, geographic, and temporal distribution of fecal shedding of Cryptosporidium parvum oocysts in cow-calf herds. Am. J. Vet. Res.60:420-425.

5. Atwill, E. R., E. Johnson, and M. das Graças C. Pereira. 1999. Association of herd composition, stocking rate, and calving duration with fecal shedding of Cryptosporidium parvum oocysts in beef herds. J. Am. Vet. Med. Assoc.215:1833-1838.

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