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1.
Int J Parasitol ; 46(9): 537-44, 2016 08.
Article in English | MEDLINE | ID: mdl-27368611

ABSTRACT

The phylum Apicomplexa includes parasites of medical, zoonotic and veterinary significance. Understanding the global distribution and genetic diversity of these protozoa is of fundamental importance for efficient, robust and long-lasting methods of control. Eimeria spp. cause intestinal coccidiosis in all major livestock animals and are the most important parasites of domestic chickens in terms of both economic impact and animal welfare. Despite having significant negative impacts on the efficiency of food production, many fundamental questions relating to the global distribution and genetic variation of Eimeria spp. remain largely unanswered. Here, we provide the broadest map yet of Eimeria occurrence for domestic chickens, confirming that all the known species (Eimeria acervulina, Eimeria brunetti, Eimeria maxima, Eimeria mitis, Eimeria necatrix, Eimeria praecox, Eimeria tenella) are present in all six continents where chickens are found (including 21 countries). Analysis of 248 internal transcribed spacer sequences derived from 17 countries provided evidence of possible allopatric diversity for species such as E. tenella (FST values ⩽0.34) but not E. acervulina and E. mitis, and highlighted a trend towards widespread genetic variance. We found that three genetic variants described previously only in Australia and southern Africa (operational taxonomic units x, y and z) have a wide distribution across the southern, but not the northern hemisphere. While the drivers for such a polarised distribution of these operational taxonomic unit genotypes remains unclear, the occurrence of genetically variant Eimeria may pose a risk to food security and animal welfare in Europe and North America should these parasites spread to the northern hemisphere.


Subject(s)
DNA, Protozoan/genetics , Eimeria/genetics , Poultry Diseases/parasitology , Animals , Biodiversity , Chickens/parasitology , Classification , Coccidiosis/epidemiology , Coccidiosis/parasitology , Coccidiosis/veterinary , Genotype , Phylogeny , Phylogeography , Poultry Diseases/epidemiology , Sequence Analysis, DNA
2.
Proc Natl Acad Sci U S A ; 112(38): E5343-50, 2015 Sep 22.
Article in English | MEDLINE | ID: mdl-26354122

ABSTRACT

The phylum Apicomplexa includes serious pathogens of humans and animals. Understanding the distribution and population structure of these protozoan parasites is of fundamental importance to explain disease epidemiology and develop sustainable controls. Predicting the likely efficacy and longevity of subunit vaccines in field populations relies on knowledge of relevant preexisting antigenic diversity, population structure, the likelihood of coinfection by genetically distinct strains, and the efficiency of cross-fertilization. All four of these factors have been investigated for Plasmodium species parasites, revealing both clonal and panmictic population structures with exceptional polymorphism associated with immunoprotective antigens such as apical membrane antigen 1 (AMA1). For the coccidian Toxoplasma gondii only genomic diversity and population structure have been defined in depth so far; for the closely related Eimeria species, all four variables are currently unknown. Using Eimeria tenella, a major cause of the enteric disease coccidiosis, which exerts a profound effect on chicken productivity and welfare, we determined population structure, genotype distribution, and likelihood of cross-fertilization during coinfection and also investigated the extent of naturally occurring antigenic diversity for the E. tenella AMA1 homolog. Using genome-wide Sequenom SNP-based haplotyping, targeted sequencing, and single-cell genotyping, we show that in this coccidian the functionality of EtAMA1 appears to outweigh immune evasion. This result is in direct contrast to the situation in Plasmodium and most likely is underpinned by the biology of the direct and acute coccidian life cycle in the definitive host.


Subject(s)
Antigenic Variation , Eimeria tenella/genetics , Eimeria tenella/immunology , Animals , Antigens, Protozoan/immunology , Base Sequence , Chickens/parasitology , Coccidiosis/parasitology , Crosses, Genetic , Feces , Genetic Variation , Genetics, Population , Genotype , Geography , Molecular Sequence Data , Oocysts , Phylogeny , Plasmodium/genetics , Plasmodium/immunology , Polymorphism, Single Nucleotide , Poultry Diseases/parasitology , Protozoan Vaccines
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