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. 2008 Oct;74(19):6026-31.
doi: 10.1128/AEM.00606-08. Epub 2008 Jul 11.

Cryptosporidium genotypes and subtypes in lambs and goat kids in Spain

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Cryptosporidium genotypes and subtypes in lambs and goat kids in Spain

Joaquín Quílez et al. Appl Environ Microbiol. 2008 Oct.

Abstract

To provide information on the transmission dynamics of cryptosporidial infections in domestic small ruminants and the potential role of sheep and goats as a source for human cryptosporidiosis, Cryptosporidium-positive isolates from 137 diarrheic lambs and 17 goat kids younger than 21 days of age were examined by using genotyping and subtyping techniques. Fecal specimens were collected between 2004 and 2006 from 71 sheep and 7 goat farms distributed throughout Aragón (northeastern Spain). Cryptosporidium parvum was the only species identified by restriction analyses of PCR products from small-subunit rRNA genes from all 154 microscopy-positive isolates and the sequencing of a subset of 50 isolates. Sequence analyses of the glycoprotein (GP60) gene revealed extensive genetic diversity within the C. parvum strains in a limited geographical area, in which the isolates from lambs exhibited 11 subtypes in two subtype families (IId and IIa) and those from goat kids displayed four subtypes within the family IId. Most isolates (98%) belonged to the subtype family IId, whereas only three isolates belonged to the most widely distributed family, IIa. Three of the four most prevalent subtypes (IIdA17G1a, IIdA19G1, and IIdA18G1) were previously identified in humans, and five subtypes (IIdA14G1, IIdA15G1, IIdA24G1, IIdA25G1, and IIdA26G1) were novel subtypes. All IId subtypes were identical to each other in the nonrepeat region, except for subtypes IIdA17G1b and IIdA22G1, which differed by a single nucleotide polymorphism downstream of the trinucleotide repeats. These findings suggest that lambs and goat kids are an important reservoir of the zoonotic C. parvum subtype family IId for humans.

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Figures

FIG. 1.
FIG. 1.
Phylogenetic relationships of the isolates examined in the current study to different C. parvum subtypes as inferred by neighbor-joining analysis of the GP60 gene, based on genetic distances calculated by the Kimura two-parameter model. Bootstrap values over 50% from 1,000 pseudoreplicates are indicated at the left of the supported node.

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References

    1. Abe, N., M. Matsubayashi, I. Kimata, and M. Iseki. 2006. Subgenotype analysis of Cryptosporidium parvum isolates from humans and animals in Japan using the 60-kDa glycoprotein gene sequences. Parasitol. Res. 99:303-305. - PubMed
    1. Akiyoshi, D. E., J. K. Tumwine, S. Bakeera-Kitata, and S. Tzipori. 2006. Subtype analysis of Cryptosporidium isolates from children in Uganda. J. Parasitol. 92:1097-1100. - PubMed
    1. Alves, M., L. Xiao, I. Sulaiman, A. A. Lal, O. Matos, and F. Antunes. 2003. Subgenotype analysis of Cryptosporidium isolates from humans, cattle, and zoo ruminants in Portugal. J. Clin. Microbiol. 41:2744-2747. - PMC - PubMed
    1. Alves, M., L. Xiao, F. Antunes, and O. Matos. 2006. Distribution of Cryptosporidium subtypes in humans and domestic and wild ruminants in Portugal. Parasitol. Res. 99:287-292. - PubMed
    1. Alves, M., A. M. Ribeiro, C. Neto, E. Ferreira, M. J. Benoliel, F. Antunes, and O. Matos. 2007. Distribution of Cryptosporidium species and subtypes in water samples in Portugal: a preliminary study. J. Eukaryot. Microbiol. 53:S24-S25. - PubMed

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