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1.
Biomed Res Int ; 2024: 4848451, 2024.
Article in English | MEDLINE | ID: mdl-39035771

ABSTRACT

Tick-borne pathogens continue to infect humans and animals worldwide. By adapting to the movement of livestock, ticks facilitate the spread of these infectious pathogens. Humans in close contact with animals that could be amplifying hosts are especially at risk of being infected with tick-borne pathogens. This study involved the collection of dry blood spots (DBSs) to determine tick-borne pathogens occurring in slaughtered livestock and abattoir workers in Kumasi. This study employed the use of conventional PCR, RT-PCR, and Sanger sequencing to detect and identify the tick-borne pathogens. The resulting data was analysed using Stata version 13. A total of 175 DBSs were collected from goats (76), cattle (54), and sheep (45) in the Kumasi abattoir (130, 74.29%) and Akwatia Line slaughter slab (45, 25.71%). The pathogens identified were mostly bacterial including Anaplasma capra (9.71%), Anaplasma phagocytophilum (1.14%), and Rickettsia aeschlimannii (0.57.%). The only parasite identified was Theileria ovis (9.14%). A significant association was seen between A. capra (p < 0.001) infection and female sheep sampled from the Akwatia Line slaughter slab. Again, there was a significant association between T. ovis (p < 0.001) infections and female sheep from the Kumasi abattoir. From the human DBS (63) screened, the pathogens identified were all bacterial including Coxiella burnetii (1.89%), Rickettsia africae (1.89%), and R. aeschlimannii (1.89%). This study reports the first detection of R. aeschlimannii in livestock as well as the occurrence of the above-mentioned pathogens in humans in Ghana. Animals can serve as amplifying hosts for infectious pathogens; hence, there is an increased risk of infections among the abattoir workers. Continuous surveillance effort is essential, and abattoir workers need to protect themselves from tick bites and infectious tick-borne pathogens.


Subject(s)
Abattoirs , Tick-Borne Diseases , Zoonoses , Animals , Humans , Tick-Borne Diseases/microbiology , Tick-Borne Diseases/parasitology , Tick-Borne Diseases/epidemiology , Sheep/parasitology , Cattle , Zoonoses/parasitology , Zoonoses/microbiology , Ticks/microbiology , Ticks/parasitology , Goats/parasitology , Goats/microbiology , Female , Male , Livestock/parasitology , Livestock/microbiology , Rickettsia/genetics , Rickettsia/isolation & purification , Rickettsia/pathogenicity
2.
Parasitol Res ; 123(7): 267, 2024 Jul 11.
Article in English | MEDLINE | ID: mdl-38990228

ABSTRACT

Exsheathment is crucial in the transition from free-living to parasitic phase for most strongyle nematode species. A greater understanding of this process could help in developing new parasitic control methods. This study aimed to identify commonalities in response to exsheathment triggers (heat acclimation, CO2 and pH) in a wide range of species (Haemonchus contortus, Trichostrongylus spp., Cooperia spp., Oesophagostomum spp., Chabertia ovina, and members of the subfamily Ostertagiinae) from sheep, cattle and farmed deer. The initial expectation of similarity in pH requirements amongst species residing within the same organ was not supported, with unexpected pH preferences for exsheathment of Trichostrongylus axei, Trichostrongylus vitrinus, Trichostrongylus colubriformis and Cooperia oncophora. We also found differences between species in their response to temperature acclimation, with higher exsheathment in response to heat shock observed for H. contortus, Ostertagia ostertagi, T. axei, T. vitrinus and Oesophagostomum sikae. Furthermore, some species showed poor exsheathment under all experimental conditions, such as Cooperia curticei and the large intestinal nematodes C. ovina and Oesophagostomum venulosum. Interestingly, there were some significant differences in response depending on the host from which the parasites were derived. The host species significantly impacted on the exsheathment response for H. contortus, Teladorsagia circumcincta, T. vitrinus and T. colubriformis. Overall, the data showed variability between nematode species in their response to these in vitro exsheathment triggers, highlighting the complexity of finding a common set of conditions for all species in order to develop a control method based on triggering the exsheathment process prematurely.


Subject(s)
Deer , Nematode Infections , Sheep Diseases , Animals , Deer/parasitology , Cattle , Sheep/parasitology , Sheep Diseases/parasitology , Nematode Infections/parasitology , Nematode Infections/veterinary , Hydrogen-Ion Concentration , Nematoda/physiology , Nematoda/classification , Cattle Diseases/parasitology , Carbon Dioxide , Intestinal Diseases, Parasitic/veterinary , Intestinal Diseases, Parasitic/parasitology , Hot Temperature
3.
PLoS One ; 19(7): e0306697, 2024.
Article in English | MEDLINE | ID: mdl-38990813

ABSTRACT

Raising small ruminants is the main source of income for farmers in Pakistan especially in rural areas of Dera Ghazi Khan in Punjab. Despite having large sheep population, the prevalence of intra-erythrocytic protozoa, Theileria (T.) lestoquardi, has never been reported from this area. This study was conducted to fill this knowledge gap and 333 blood samples of apparently healthy small ruminants (168 sheep and 165 goats) along with their epidemiological data were collected from Dera Ghazi Khan district during August till November 2022. The polymerase chain reaction (PCR) analysis amplified a 785 base pair amplicon specific for the Merozoite surface antigen (ms 1-2) gene of T. lestoquardi in 2 out of the 168 (3.3%) sheep blood samples, while no goat blood sample out of 165 was found to be infected with T. lestoquardi. DNA sequencing confirmed the presence of Theileria lestoquardi in both samples and phylogenetic analysis revealed that these amplicon resembled the partial ms 1-2 gene sequences detected in small ruminants from Pakistan, India Iran and Egypt. All the studied epidemiological factors (age, sex, breed, size of herd, dogs with herd, composition of herd, size of herd and Tick burden on sheep) were not found associated with the prevalence of T. lestoquardi. In conclusion, this study reports a low prevalence of T. lestoquardi infection in the Dera Ghazi Khan District of Punjab, Pakistan. The data generated from this work will help pave the way for the prophylactic detection and control of ovine and caprine theileriosis in the region.


Subject(s)
Goats , Phylogeny , Sheep Diseases , Theileria , Theileriasis , Animals , Theileria/genetics , Theileria/classification , Theileria/isolation & purification , Theileriasis/epidemiology , Theileriasis/parasitology , Theileriasis/blood , Sheep/parasitology , Pakistan/epidemiology , Goats/parasitology , Prevalence , Sheep Diseases/parasitology , Sheep Diseases/epidemiology , Sheep Diseases/blood , Risk Factors , Goat Diseases/parasitology , Goat Diseases/epidemiology , Goat Diseases/blood , Female , Male
4.
Parasit Vectors ; 17(1): 308, 2024 Jul 18.
Article in English | MEDLINE | ID: mdl-39026238

ABSTRACT

BACKGROUND: Lucilia cuprina (Wiedemann, 1830) (Diptera: Calliphoridae) is the main causative agent of flystrike of sheep in Australia and New Zealand. Female flies lay eggs in an open wound or natural orifice, and the developing larvae eat the host's tissues, a condition called myiasis. To improve our understanding of host-seeking behavior, we quantified gene expression in male and female antennae based on their behavior. METHODS: A spatial olfactometer was used to evaluate the olfactory response of L. cuprina mated males and gravid females to fresh or rotting beef. Antennal RNA-Seq analysis was used to identify sensory receptors differentially expressed between groups. RESULTS: Lucilia cuprina females were more attracted to rotten compared to fresh beef (> fivefold increase). However, males and some females did not respond to either type of beef. RNA-Seq analysis was performed on antennae dissected from attracted females, non-attracted females and males. Transcripts encoding sensory receptors from 11 gene families were identified above a threshold (≥ 5 transcript per million) including 49 ATP-binding cassette transporters (ABCs), two ammonium transporters (AMTs), 37 odorant receptors (ORs), 16 ionotropic receptors (IRs), 5 gustatory receptors (GRs), 22 odorant-binding proteins (OBPs), 9 CD36-sensory neuron membrane proteins (CD36/SNMPs), 4 chemosensory proteins (CSPs), 4 myeloid lipid-recognition (ML) and Niemann-Pick C2 disease proteins (ML/NPC2), 2 pickpocket receptors (PPKs) and 3 transient receptor potential channels (TRPs). Differential expression analyses identified sex-biased sensory receptors. CONCLUSIONS: We identified sensory receptors that were differentially expressed between the antennae of both sexes and hence may be associated with host detection by female flies. The most promising for future investigations were as follows: an odorant receptor (LcupOR46) which is female-biased in L. cuprina and Cochliomyia hominivorax Coquerel, 1858; an ABC transporter (ABC G23.1) that was the sole sensory receptor upregulated in the antennae of females attracted to rotting beef compared to non-attracted females; a female-biased ammonia transporter (AMT_Rh50), which was previously associated with ammonium detection in Drosophila melanogaster Meigen, 1830. This is the first report suggesting a possible role for ABC transporters in L. cuprina olfaction and potentially in other insects.


Subject(s)
Arthropod Antennae , Calliphoridae , Gene Expression Profiling , Animals , Female , Male , Arthropod Antennae/metabolism , Calliphoridae/genetics , Myiasis/veterinary , Myiasis/parasitology , Transcriptome , Sheep/parasitology , Australia , New Zealand , Smell , Receptors, Odorant/genetics , Receptors, Odorant/metabolism
5.
Parasit Vectors ; 17(1): 312, 2024 Jul 19.
Article in English | MEDLINE | ID: mdl-39030643

ABSTRACT

BACKGROUND: The parasitic protozoan Giardia duodenalis is an important cause of diarrheal disease in humans and animals that can be spread by fecal-oral transmission through water and the environment, posing a challenge to public health and animal husbandry. Little is known about its impact on large-scale sheep farms in China. In this study we investigated G. duodenalis infection of sheep and contamination of the environment in large-scale sheep farms in two regions of China, Henan and Ningxia. METHODS: A total of 528 fecal samples, 402 environmental samples and 30 water samples were collected from seven large-scale sheep farms, and 88 fecal samples and 13 environmental samples were collected from 12 backyard farms. The presence of G. duodenalis was detected by targeting the ß-giardin (bg) gene, and the assemblage and multilocus genotype of G. duodenalis were investigated by analyzing three genes: bg, glutamate dehydrogenase (gdh) and triphosphate isomerase (tpi). RESULTS: The overall G. duodenalis detection rate was 7.8%, 1.4% and 23.3% in fecal, environmental and water samples, respectively. On the large-scale sheep farms tested, the infection rate of sheep in Henan (13.8%) was found to be significantly higher than that of sheep in Ningxia (4.2%) (P < 0.05). However, the difference between the rates of environmental pollution in Henan (1.9%) and Ningxia (1.0%) was not significant (P > 0.05). Investigations of sheep at different physiological stages revealed that late pregnancy ewes showed the lowest infection rate (1.7%) and that young lambs exhibited the highest (18.8%). Genetic analysis identified G. duodenalis belonging to two assemblages, A and E, with assemblage E being dominant. A total of 27 multilocus genotypes were identified for members of assemblage E. CONCLUSIONS: The results suggest that G. duodenalis is prevalent on large-scale sheep farms in Henan and Ningxia, China, and that there is a risk of environmental contamination. This study is the first comprehensive examination of the presence of G. duodenalis on large-scale sheep farms in China. Challenges posed by G. duodenalis to sheep farms need to be addressed proactively to ensure public health safety.


Subject(s)
Farms , Feces , Genetic Variation , Genotype , Giardia lamblia , Giardiasis , Sheep Diseases , Animals , Sheep/parasitology , China/epidemiology , Giardia lamblia/genetics , Giardia lamblia/classification , Giardia lamblia/isolation & purification , Sheep Diseases/parasitology , Sheep Diseases/epidemiology , Giardiasis/veterinary , Giardiasis/parasitology , Giardiasis/epidemiology , Feces/parasitology , Protozoan Proteins/genetics , Phylogeny
6.
Genes (Basel) ; 15(7)2024 Jun 27.
Article in English | MEDLINE | ID: mdl-39062624

ABSTRACT

The objective of this study was to identify genomic regions and genes associated with resistance to gastrointestinal nematodes in Australian Merino sheep in Uruguay, using the single-step GWAS methodology (ssGWAS), which is based on genomic estimated breeding values (GEBVs) obtained from a combination of pedigree, genomic, and phenotypic data. This methodology converts GEBVs into SNP effects. The analysis included 26,638 animals with fecal egg count (FEC) records obtained in two independent parasitic cycles (FEC1 and FEC2) and 1700 50K SNP genotypes. The comparison of genomic regions was based on genetic variances (gVar(%)) explained by non-overlapping regions of 20 SNPs. For FEC1 and FEC2, 18 and 22 genomic windows exceeded the significance threshold (gVar(%) ≥ 0.22%), respectively. The genomic regions with strong associations with FEC1 were located on chromosomes OAR 2, 6, 11, 21, and 25, and for FEC2 on OAR 5, 6, and 11. The proportion of genetic variance attributed to the top windows was 0.83% and 1.9% for FEC1 and FEC2, respectively. The 33 candidate genes shared between the two traits were subjected to enrichment analysis, revealing a marked enrichment in biological processes related to immune system functions. These results contribute to the understanding of the genetics underlying gastrointestinal parasite resistance and its implications for other productive and welfare traits in animal breeding programs.


Subject(s)
Polymorphism, Single Nucleotide , Sheep Diseases , Animals , Sheep/parasitology , Sheep/genetics , Sheep Diseases/genetics , Sheep Diseases/parasitology , Disease Resistance/genetics , Genome-Wide Association Study , Nematode Infections/genetics , Nematode Infections/veterinary , Nematode Infections/parasitology , Australia , Parasite Egg Count/veterinary , Intestinal Diseases, Parasitic/genetics , Intestinal Diseases, Parasitic/veterinary , Intestinal Diseases, Parasitic/parasitology
7.
Int J Mol Sci ; 25(14)2024 Jul 17.
Article in English | MEDLINE | ID: mdl-39063065

ABSTRACT

Bovicola ovis, commonly known as the sheep-biting louse, is an ectoparasite that adversely affects the sheep industry. Sheep louse infestation lowers the quality of products, including wool and leather, causing a loss of approximately AUD 123M per annum in Australia alone. The lack of a high-quality genome assembly for the sheep-biting louse, as well as any closely related livestock lice, has hindered the development of louse research and management control tools. In this study, we present the assembly of B. ovis with a genome size of ~123 Mbp based on a nanopore long-read sequencing library and Illumina RNA sequencing, complemented with a chromosome-level scaffolding using the Pore-C multiway chromatin contact dataset. Combining multiple alignment and gene prediction tools, a comprehensive annotation on the assembled B. ovis genome was conducted and recalled 11,810 genes as well as other genomic features including orf, ssr, rRNA and tRNA. A manual curation using alignment with the available closely related louse species, Pediculus humanus, increased the number of annotated genes to 16,024. Overall, this study reported critical genetic resources and biological insights for the advancement of sheep louse research and the development of sustainable control strategies in the sheep industry.


Subject(s)
Nanopore Sequencing , Animals , Nanopore Sequencing/methods , Sheep/parasitology , Molecular Sequence Annotation , Chromosomes/genetics , Sheep Diseases/parasitology , Genome
8.
PLoS One ; 19(6): e0301554, 2024.
Article in English | MEDLINE | ID: mdl-38861496

ABSTRACT

In Sudan, resistance to benzimidazoles has been reported recently in cattle and goats from South Darfur. Herein, ivermectin efficacy against gastrointestinal nematodes (GINs) was evaluated in sheep and goats in three study areas in South Darfur. The faecal egg count reduction test (FECRT) was used to evaluate the efficacy of ivermectin in sheep and goats naturally infected with GINs in the region of Bulbul (goats: n = 106), Kass (goats: n = 40) and Nyala (Domaia (sheep: n = 47, goats: n = 77) and the University farm (goats: n = 52)), using different treatment plans, and the efficacy was evaluated 12 days after treatment. Ivermectin efficacy was also evaluated in goats experimentally infected using local Haemonchus contortus isolates from Kass and Nyala. Nematodes surviving ivermectin treatment in goats in Bulbul and Nyala were harvested and larvae used to infect worm-free male sheep (n = 6, ≤6 months old). Infected sheep were dosed subcutaneously with ivermectin every eight days with increasing doses from 0.2 mg/kg to 1.6 mg/kg bodyweight (bw). Reduced ivermectin efficacy was identified in sheep and goats in the four study locations. Using a paired statistic, the efficacy of a therapeutic dose in sheep was 75.6% (90% upper credible limit (UCrL): 77.5%), while twice the recommended dose led to a reduction of 92.6% (90% UCrL: 93.3%). In goats, the FECRs of a therapeutic dose were 72.9-95.3% (90% UCrL range: 73.6-95.7%) in Bulbul, Nyala Domaia, Nyala University farm and Kass. Twice the dose recommended for goats in Bulbul revealed a 90% UCrL of 87.6%. All post-treatment faecal cultures contained only Haemonchus spp. larvae. The experimental infection trials in sheep and goats supported our findings from field trials and calculated upper 90% CrL of below 98.9%. For the first time highly ivermectin resistant H. contortus populations have been identified in sheep and goats in Sudan, and resistance was experimentally confirmed.


Subject(s)
Drug Resistance , Goat Diseases , Goats , Ivermectin , Nematode Infections , Sheep Diseases , Animals , Goats/parasitology , Ivermectin/pharmacology , Ivermectin/therapeutic use , Sheep/parasitology , Sheep Diseases/drug therapy , Sheep Diseases/parasitology , Goat Diseases/drug therapy , Goat Diseases/parasitology , Sudan , Nematode Infections/drug therapy , Nematode Infections/veterinary , Nematode Infections/parasitology , Feces/parasitology , Male , Parasite Egg Count/veterinary , Nematoda/drug effects , Anthelmintics/therapeutic use , Anthelmintics/pharmacology , Haemonchus/drug effects
9.
Genes (Basel) ; 15(6)2024 May 30.
Article in English | MEDLINE | ID: mdl-38927648

ABSTRACT

Infections with gastrointestinal nematodes (GINs) reduce the economic efficiency of sheep operations and compromise animal welfare. Understanding the host's response to GIN infection can help producers identify animals that are naturally resistant to infection. The objective of this study was to characterize the hepatic transcriptome of sheep that had been naturally exposed to GIN parasites. The hepatic transcriptome was studied using RNA-Sequencing technology in animals characterized as high (n = 5) or medium (n = 6) based on their innate immune acute-phase (AP) response phenotype compared with uninfected controls (n = 4), and with biased antibody-mediated (AbMR, n = 5) or cell-mediated (CMR, n = 5) adaptive immune responsiveness compared to uninfected controls (n = 3). Following the assessment of sheep selected for innate responses, 0, 136, and 167 genes were differentially expressed (DE) between high- and medium-responding animals, high-responding and uninfected control animals, and medium-responding and uninfected control animals, respectively (false discovery rate (FDR) < 0.05, and fold change |FC| > 2). When adaptive immune responses were assessed, 0, 53, and 57 genes were DE between antibody- and cell-biased animals, antibody-biased and uninfected control animals, and cell-biased and uninfected control animals, respectively (FDR < 0.05, |FC| > 2). Functional analyses identified enriched gene ontology (GO) terms and metabolic pathways related to the innate immune response and energy metabolism. Six functional candidate genes were identified for further functional and validation studies to better understand the underlying biological mechanisms of host responses to GINs. These, in turn, can potentially help improve decision making and management practices to increase the overall host immune response to GIN infection.


Subject(s)
Immunity, Innate , Liver , Nematode Infections , Sheep Diseases , Transcriptome , Animals , Sheep/parasitology , Liver/parasitology , Liver/metabolism , Liver/immunology , Nematode Infections/veterinary , Nematode Infections/genetics , Nematode Infections/immunology , Nematode Infections/parasitology , Sheep Diseases/parasitology , Sheep Diseases/genetics , Sheep Diseases/immunology , Immunity, Innate/genetics , Nematoda/pathogenicity , Adaptive Immunity/genetics , Gastrointestinal Diseases/genetics , Gastrointestinal Diseases/parasitology , Gastrointestinal Diseases/immunology , Gastrointestinal Diseases/veterinary
10.
PLoS One ; 19(6): e0306390, 2024.
Article in English | MEDLINE | ID: mdl-38935803

ABSTRACT

The economic impact of gastrointestinal (GI) nematode infections on livestock production is well documented worldwide. Increasing evidence supports the hypothesis that parasite colonization induces significant changes in the GI tract environment and, therefore, in the landscape where the microbiota and parasites occur. Understanding the interactions between bacterial and parasite populations in the digestive tract of livestock may be useful to design parasite control strategies based on microbiota modification. The aims of this work were to investigate the impact of the oxytetracycline-mediated manipulation of the gut microbial community on the composition of GI nematode populations in naturally infected sheep and to explore changes in the GI microbial communities after nematode population treatment with the anthelmintic compound monepantel. Extensive manipulation of the GI microbiota with a therapeutic dose of the long-acting oxytetracycline formulation did not induce significant changes in the GI nematode burden. The gut microbiota of treated animals returned to control levels 17 days after treatment, suggesting strong resilience of the sheep microbial community to antibiotic-mediated microbiota perturbation. A significant decrease of the bacterial Mycoplasmataceae family (Log2FC = -4, Padj = 0.001) and a marked increase of the Methanobacteriaceae family (Log2FC = 2.9, Padj = 0.018) were observed in the abomasum of sheep receiving the monepantel treatment. While a comprehensive evaluation of the interactions among GI mycoplasma, methanobacteria and nematode populations deserves further assessment, the bacteria-nematode population interactions should be included in future control programs in livestock production. Understanding how bacteria and parasites may influence each other in the GI tract environment may substantially contribute to the knowledge of the role of microbiota composition in nematode parasite establishment and the role of the parasites in the microbiota composition.


Subject(s)
Gastrointestinal Microbiome , Gastrointestinal Tract , Nematoda , Nematode Infections , Oxytetracycline , Sheep Diseases , Animals , Sheep/parasitology , Sheep/microbiology , Gastrointestinal Microbiome/drug effects , Sheep Diseases/parasitology , Sheep Diseases/microbiology , Sheep Diseases/drug therapy , Nematode Infections/veterinary , Nematode Infections/drug therapy , Nematode Infections/parasitology , Nematode Infections/microbiology , Nematoda/microbiology , Nematoda/drug effects , Nematoda/physiology , Oxytetracycline/pharmacology , Gastrointestinal Tract/microbiology , Gastrointestinal Tract/parasitology , Aminoacetonitrile/analogs & derivatives , Aminoacetonitrile/pharmacology , Bacteria/drug effects
11.
Parasit Vectors ; 17(1): 215, 2024 May 11.
Article in English | MEDLINE | ID: mdl-38734633

ABSTRACT

BACKGROUND: Animal African trypanosomiasis, which is caused by different species of African trypanosomes, is a deadly disease in livestock. Although African trypanosomes are often described as blood-borne parasites, there have been recent reappraisals of the ability of these parasites to reside in a wide range of tissues. However, the majority of those studies were conducted on non-natural hosts infected with only one species of trypanosome, and it is unclear whether a similar phenomenon occurs during natural animal infections, where multiple species of these parasites may be present. METHODS: The infective trypanosome species in the blood and other tissues (adipose and skin) of a natural host (cows, goats and sheep) were determined using a polymerase chain reaction-based diagnostic. RESULTS: The animals were found to harbour multiple species of trypanosomes. Different patterns of distribution were observed within the host tissues; for instance, in some animals, the blood was positive for the DNA of one species of trypanosome and the skin and adipose were positive for the DNA of another species. Moreover, the rate of detection of trypanosome DNA was highest for skin adipose and lowest for the blood. CONCLUSIONS: The findings reported here emphasise the complexity of trypanosome infections in a natural setting, and may indicate different tissue tropisms between the different parasite species. The results also highlight the need to include adipose and skin tissues in future diagnostic and treatment strategies.


Subject(s)
Adipose Tissue , Goat Diseases , Goats , Skin , Trypanosoma , Trypanosomiasis, African , Animals , Goats/parasitology , Trypanosomiasis, African/veterinary , Trypanosomiasis, African/parasitology , Adipose Tissue/parasitology , Trypanosoma/genetics , Trypanosoma/isolation & purification , Trypanosoma/classification , Skin/parasitology , Sheep/parasitology , Goat Diseases/parasitology , Cattle , Polymerase Chain Reaction , Sheep Diseases/parasitology , DNA, Protozoan/genetics , Cattle Diseases/parasitology
12.
Parasitol Res ; 123(5): 210, 2024 May 14.
Article in English | MEDLINE | ID: mdl-38743097

ABSTRACT

Fasciola gigantica is a widespread parasite that causes neglected disease in livestock worldwide. Its high transmissibility and dispersion are attributed to its ability to infect intermediate snail hosts and adapt to various mammalian definitive hosts. This study investigated the variation and population dynamics of F. gigantica in cattle, sheep, and goats from three states in Sudan. Mitochondrial cytochrome c oxidase subunit I (COI) and NADH dehydrogenase subunit 1 (ND1) genes were sequenced successfully to examine intra and interspecific differences. ND1 exhibited higher diversity than COI, with 15 haplotypes and 10 haplotypes, respectively. Both genes had high haplotype diversity but low nucleotide diversity, with 21 and 11 polymorphic sites for ND1 and COI, respectively. Mismatch distribution analysis and neutrality tests revealed that F. gigantica from different host species was in a state of population expansion. Maximum likelihood phylogenetic trees and median networks revealed that F. gigantica in Sudan and other African countries had host-specific and country-specific lineages for both genes. The study also indicated that F. gigantica-infected small ruminants were evolutionarily distant, suggesting deep and historical interspecies adaptation.


Subject(s)
Electron Transport Complex IV , Fasciola , Fascioliasis , Genetic Variation , Goats , Haplotypes , NADH Dehydrogenase , Phylogeny , Population Dynamics , Animals , Sudan/epidemiology , Fasciola/genetics , Fasciola/classification , Fasciola/isolation & purification , Fascioliasis/veterinary , Fascioliasis/parasitology , Fascioliasis/epidemiology , Sheep/parasitology , Goats/parasitology , Cattle , NADH Dehydrogenase/genetics , Electron Transport Complex IV/genetics , Goat Diseases/parasitology , Goat Diseases/epidemiology , Ruminants/parasitology , Sheep Diseases/parasitology , Sheep Diseases/epidemiology , Cattle Diseases/parasitology , Cattle Diseases/epidemiology , Sequence Analysis, DNA
13.
J Biosci ; 492024.
Article in English | MEDLINE | ID: mdl-38726821

ABSTRACT

Disease cross-transmission between wild and domestic ungulates can negatively impact livelihoods and wildlife conservation. In Pin valley, migratory sheep and goats share pastures seasonally with the resident Asiatic ibex (Capra sibirica), leading to potential disease cross-transmission. Focussing on gastro-intestinal nematodes (GINs) as determinants of health in ungulates, we hypothesized that infection on pastures would increase over summer from contamination by migrating livestock. Consequently, interventions in livestock that are well-timed should reduce infection pressure for ibex. Using a parasite life-cycle model, that predicts infective larval availability, we investigated GIN transmission dynamics and evaluated potential interventions. Migratory livestock were predicted to contribute most infective larvae onto shared pastures due to higher density and parasite levels, driving infections in both livestock and ibex. The model predicted a c.30-day antiparasitic intervention towards the end of the livestock's time in Pin would be most effective at reducing GINs in both hosts. Albeit with the caveats of not being able to provide evidence of interspecific parasite transmission due to the inability to identify parasite species, this case demonstrates the usefulness of our predictive model for investigating parasite transmission in landscapes where domestic and wild ungulates share pastures. Additionally, it suggests management options for further investigation.


Subject(s)
Goats , Livestock , Animals , India/epidemiology , Goats/parasitology , Livestock/parasitology , Sheep/parasitology , Animal Migration , Goat Diseases/parasitology , Goat Diseases/transmission , Animals, Wild/parasitology , Sheep Diseases/parasitology , Sheep Diseases/transmission , Sheep Diseases/prevention & control , Nematode Infections/transmission , Nematode Infections/veterinary , Nematode Infections/prevention & control , Nematode Infections/parasitology , Nematode Infections/epidemiology , Seasons , Larva/parasitology , Nematoda/pathogenicity
14.
Sci Rep ; 14(1): 11218, 2024 05 16.
Article in English | MEDLINE | ID: mdl-38755395

ABSTRACT

Cryptosporidium spp. are significant zoonotic intestinal parasites that induce diarrhea and even death across most vertebrates, including humans. Previous studies showed that sheep are important hosts for Cryptosporidium and that its distribution in sheep is influenced by geography, feeding patterns, age, and season. Environmental factors also influence the transmission of Cryptosporidium. Molecular studies of Cryptosporidium in sheep have been conducted in only a few regions of China, and studies into the effect of sheep-housing environments on Cryptosporidium transmission are even rarer. To detect the prevalence of Cryptosporidium in large-scale sheep-housing farms, a total of 1241 fecal samples were collected from sheep, 727 environmental samples were taken from sheep housing, and 30 water samples were collected in six regions of China. To ascertain the existence of the parasite and identify the species of Cryptosporidium spp., we conducted nested PCR amplification of DNA extracted from all samples using the small-subunit (SSU) rRNA gene as a target. For a more in-depth analysis of Cryptosporidium spp. subtypes, C. xiaoi-and C. ubiquitum-positive samples underwent separate nested PCR amplification targeting the 60 kDa glycoprotein (gp60) gene. The amplification of the Cryptosporidium spp. SSU rRNA gene locus from the whole genomic DNA of all samples yielded a positive rate of 1.2% (20/1241) in fecal samples, 0.1% (1/727) in environmental samples, and no positive samples were found in water samples. The prevalence of Cryptosporidium spp. infection in large-scale housed sheep was 1.7%, which was higher than that in free-ranging sheep (0.0%). The highest prevalence of infection was found in weaning lambs (6.8%). Among the different seasons, the peaks were found in the fall and winter. The most prevalent species were C. xiaoi and C. ubiquitum, with the former accounting for the majority of infections. The distribution of C. xiaoi subtypes was diverse, with XXIIIc (n = 1), XXIIId (n = 2), XXIIIe (n = 2), and XXIIIl (n = 4) identified. In contrast, only one subtype, XIIa (n = 9), was found in C. ubiquitum. In this study, C. xiaoi and C. ubiquitum were found to be the predominant species, and Cryptosporidium was found to be present in the environment. These findings provide an important foundation for the comprehensive prevention and management of Cryptosporidium in intensively reared sheep. Furthermore, by elucidating the prevalence of Cryptosporidium in sheep and its potential role in environmental transmission, this study deepens our understanding of the intricate interactions between animal health, environmental contamination, and public health dynamics.


Subject(s)
Cryptosporidiosis , Cryptosporidium , Farms , Feces , Genetic Variation , Sheep Diseases , Animals , Cryptosporidium/genetics , Cryptosporidium/isolation & purification , Cryptosporidium/classification , Sheep/parasitology , China/epidemiology , Cryptosporidiosis/epidemiology , Cryptosporidiosis/parasitology , Cryptosporidiosis/transmission , Sheep Diseases/epidemiology , Sheep Diseases/parasitology , Sheep Diseases/transmission , Prevalence , Feces/parasitology , Phylogeny
15.
Acta Parasitol ; 69(2): 1219-1230, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38662073

ABSTRACT

BACKGROUND: Fleas belonging to the Pulicidae are prevalent ectoparasites infesting mammals and birds in Iran. This study focused on genetically identifying and characterizing Ctenocephalides canis collected both off-host and infesting humans and various domestic animals in the country. METHODS: A total of 918 adult flea samples were collected from 10 sites in western and northwestern Iran between April 2018 and May 2019. Out of these, 71 specimens were found off-host, while the remaining fleas were collected from humans (121), sheep (126), goats (184), and dogs (416). Morphological identification at the genus level was performed on all fleas, and ten selected specimens selected based on the sampling sites and hosts were subjected to molecular detection at the species level by using partial amplification and sequencing of the internal transcribed spacer 1 and 2, as well as the cytochrome oxidase I (COXI) markers. RESULTS: The morphological identification confirmed all fleas as Ctenocephalides spp. Alignment and phylogenetic analysis of nuclear and mitochondrial partial sequences confirmed the presence of C. canis. However, molecular divergence was observed among the ten isolates based on the ITS1 and ITS2 with diversity rates estimated at 0.15% and 3.36%, respectively. Notably, the analysis of the COXI marker revealed no molecular divergence among the partial sequences representing the ten studied isolates from C. canis. CONCLUSIONS: This study explores the diversity of C. canis in the western and northwestern regions of Iran, providing insights into their molecular taxonomy and potential role as disease vectors in these areas.


Subject(s)
Ctenocephalides , Flea Infestations , Phylogeny , Animals , Iran , Ctenocephalides/classification , Flea Infestations/veterinary , Flea Infestations/parasitology , Dogs , Humans , Sheep/parasitology , Animals, Domestic/parasitology , Goats/parasitology , Electron Transport Complex IV/genetics , Dog Diseases/parasitology
16.
Genes (Basel) ; 15(4)2024 04 18.
Article in English | MEDLINE | ID: mdl-38674440

ABSTRACT

The Australian sheep blowfly, Lucilia cuprina dorsalis, is a major sheep ectoparasite causing subcutaneous myiasis (flystrike), which can lead to reduced livestock productivity and, in severe instances, death of the affected animals. It is also a primary colonizer of carrion, an efficient pollinator, and used in maggot debridement therapy and forensic investigations. In this study, we report the complete mitochondrial (mt) genome of L. c. dorsalis from the Northern Territory (NT), Australia, where sheep are prohibited animals, unlike the rest of Australia. The mt genome is 15,943 bp in length, comprising 13 protein-coding genes (PCGs), two ribosomal RNAs (rRNAs), 22 transfer RNAs (tRNAs), and a non-coding control region. The gene order of the current mt genome is consistent with the previously published L. cuprina mt genomes. Nucleotide composition revealed an AT bias, accounting for 77.5% of total mt genome nucleotides. Phylogenetic analyses of 56 species/taxa of dipterans indicated that L. c. dorsalis and L. sericata are the closest among all sibling species of the genus Lucilia, which helps to explain species evolution within the family Luciliinae. This study provides the first complete mt genome sequence for L. c. dorsalis derived from the NT, Australia to facilitate species identification and the examination of the evolutionary history of these blowflies.


Subject(s)
Calliphoridae , Genome, Mitochondrial , Phylogeny , Animals , Calliphoridae/genetics , Northern Territory , Myiasis/veterinary , Myiasis/parasitology , Myiasis/genetics , RNA, Transfer/genetics , RNA, Ribosomal/genetics , Diptera/genetics , Sheep/parasitology , Sheep/genetics
17.
Rev Bras Parasitol Vet ; 33(2): e019923, 2024.
Article in English | MEDLINE | ID: mdl-38656051

ABSTRACT

Oestrus ovis larvae are obligate parasites of vertebrates and cause cavitary myiasis (oestrosis) in sheep and goats. It is also reported as a zoonosis causing ophthalmomyiasis and nasopharyngeal myiasis. Despite being relatively common in Brazil, epidemiological studies on O. ovis are scarce. Considering that the infestation is influenced by the climate and biomes of the studied region, we aimed to investigate the seasonal prevalence of O. ovis among slaughtered sheep in the northern region of the state of Mato Grosso, Brazil. The heads of sheep (n=697) slaughtered at a slaughterhouse in the municipality of Terra Nova do Norte (November 2011 to November 2013) were collected to count, catalog, and identify the larvae found in the upper respiratory tract. Overall, 45.77% (319/697) of the animals were infested with 2,412 recovered larvae, 96.89% (2,337/2,412) of which were identified at the species level as O. ovis. Seasonal variations in prevalence ranged from 41% (spring) to 56% (summer); however, no correlation was observed between prevalence and season, mean humidity, or temperature. In conclusion, parasitism by O. ovis in sheep in the studied area, occurs year-round, considering the occurrence of larvae (L1, L2, and L3) throughout the year, probably because of the area's environmental conditions.


Subject(s)
Diptera , Myiasis , Seasons , Sheep Diseases , Animals , Brazil/epidemiology , Sheep/parasitology , Prevalence , Myiasis/veterinary , Myiasis/epidemiology , Myiasis/parasitology , Sheep Diseases/epidemiology , Sheep Diseases/parasitology , Larva
18.
PLoS One ; 19(4): e0302455, 2024.
Article in English | MEDLINE | ID: mdl-38683822

ABSTRACT

Dicrocoelium lancet flukes cause significant production loss in ruminant livestock. Although co-infection with multiple Dicrocoelium species within a host is common, techniques for studying the composition of these complex parasite communities are lacking. The pathogenicity, epidemiology, and therapeutic susceptibility of different helminth species vary, and little is known about the interactions that take place between co-infecting species and their hosts. Here, we describe the first applicationof metabarcoding deep amplicon sequencing method to studythe Dicrocoelium species in sheep and goats. First, rDNA ITS-2 sequences of four Dicrocoelium species (Dicrocoelium dendriticum, Dicrocoelium hospes, Dicrocoelium orientalis, and Dicrocoelium chinensis) were extracted from the NCBI public database. Phylogenetic analysis revealed separate clades of Dicrocoelium species; hence, molecular differentiation between each species is possible in co-infections. Second, 202 flukes belonging to seventeen host populations (morphologically verified as belonging to the Dicrocoelium genus) were evaluated to determine the deep amplicon sequencing read threshold of an individual fluke for each of the four species. The accuracy of the method in proportional quantification of samples collected from single hosts was further assessed. Overall, 198 (98.01%) flukes were confirmed as D. dendriticum and 1.98% produced no reads. The comparison of genetic distances between rDNA ITS-2 revealed 86% to 98% identity between the Dicrocoelium species. Phylogenetic analysis demonstrated a distinct clustering of species, apart from D. orientalis and D. chinensis, which sit very close to each other in a single large clade whereas D. hospes and D. dendriticum are separated into their own clade. In conclusion each sample was identified as D. dendriticum based on the proportion of MiSeq reads and validated the presence of this group of parasites in the Gilgit Baltistan and Khyber Pakhtunkhwa provinces of Pakistan. The metabarcoding deep amplicon sequencing technology and bioinformatics pathway have several potential applications, including species interactions during co-infections, identifying the host and geographical distribution of Dicrocoelium in livestock, drug therapy response evaluation and understanding of the emergence and spread of drug resistance.


Subject(s)
Dicrocoeliasis , Dicrocoelium , Goat Diseases , Goats , High-Throughput Nucleotide Sequencing , Phylogeny , Sheep Diseases , Animals , Dicrocoelium/genetics , Dicrocoelium/isolation & purification , Sheep/parasitology , Goats/parasitology , Dicrocoeliasis/parasitology , Dicrocoeliasis/veterinary , Dicrocoeliasis/epidemiology , Pakistan/epidemiology , Sheep Diseases/parasitology , Sheep Diseases/epidemiology , Goat Diseases/parasitology , Goat Diseases/epidemiology , DNA, Helminth/genetics , DNA Barcoding, Taxonomic/methods , Ruminants/parasitology , Coinfection/parasitology , Coinfection/epidemiology
20.
Parasitology ; 150(8): 672-682, 2023 07.
Article in English | MEDLINE | ID: mdl-37165895

ABSTRACT

Gastrointestinal nematodes threaten the productivity of grazing livestock and anthelmintic resistance has emerged globally. It is broadly understood that wild ruminants living in sympatry with livestock act as a positive source of refugia for anthelmintic-susceptible nematodes. However, they might also act as reservoirs of anthelmintic-resistant nematodes, contributing to the spread of anthelmintic resistance at a regional scale. Here, we sampled managed sheep and cattle together with feral goats within the same property in New South Wales, Australia. Internal transcribed spacer 2 (ITS-2) nemabiome metabarcoding identified 12 gastrointestinal nematodes (Cooperia oncophora, Cooperia punctata, Haemonchus contortus, Haemonchus placei, Nematodirus spathiger, Ostertagia ostertagi, Teladorsagia circumcincta, Oesophagostomum radiatum, Oesophagostomum venulosum, Trichostrongylus axei, Trichostrongylus colubriformis and Trichostrongylus rugatus). Isotype-1 ß-tubulin metabarcoding targeting benzimidazole resistance polymorphisms identified 6 of these nematode species (C. oncophora, C. punctata, H. contortus, H. placei, O. ostertagi and T. circumcincta), with the remaining 3 genera unable to be identified to the species level (Nematodirus, Oesophagostomum, Trichostrongylus). Both ITS-2 and ß-tubulin metabarcoding showed the presence of a cryptic species of T. circumcincta, known from domestic goats in France. Of the gastrointestinal nematodes detected via ß-tubulin metabarcoding, H. contortus, T. circumcincta, Nematodirus and Trichostrongylus exhibited the presence of at least one resistance genotype. We found that generalist gastrointestinal nematodes in untreated feral goats had a similarly high frequency of the benzimidazole-resistant F200Y polymorphism as those nematodes in sheep and cattle. This suggests cross-transmission and maintenance of the resistant genotype within the wild ruminant population, affirming that wild ruminants should be considered potential reservoirs of anthelmintic resistance.


Subject(s)
Disease Reservoirs , Drug Resistance , Goats , Helminthiasis, Animal , Nematoda , Cattle/parasitology , Animal Husbandry/methods , Animals, Wild/parasitology , Disease Reservoirs/parasitology , Drug Resistance/genetics , Genotype , Goats/parasitology , Helminthiasis, Animal/parasitology , Helminthiasis, Animal/transmission , Nematoda/drug effects , Nematoda/genetics , New South Wales , Sheep/parasitology , Animals
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