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First Report of Enterocytozoon bieneusi, Encephalitozoon spp. and Blastocystis spp. in Hair Goats in Türkiye.

INTRODUCTION: Blastocystis spp., Enterocytozoon bieneusi and Encephalitozoon spp. are prevalent zoonotic gastrointestinal parasites that cause severe diarrhoea and enteric diseases in humans and animals worldwide. This study investigated the molecular occurrence, genetic diversity and zoonotic potential of E. bieneusi, Blastocystis spp. and Encephalitozoon spp. in domestic hair goats in Central Anatolia. METHODS: A total of 300 faecal samples were collected from hair goats in Kayseri, Aksaray and Sivas Provinces and genomic DNA was extracted from these samples. The presence of the three pathogens was detected using PCR and nested PCR targeting the SSU rRNA for Blastocystis spp., the internal transcribed spacer (ITS) for E. bieneusi and Encephalitozoon spp., respectively. Positive PCR products were sequenced to determine the species, subtypes and genotypes of the pathogens. RESULTS: The overall prevalence rates of E. bieneusi and Blastocystis spp. were 5.3% (16/300) and 6.7% (20/300), respectively. None of the faecal samples tested was positive for Encephalitozoon spp. and no co-infections among these three pathogens were detected. The SSU rRNA sequence analysis revealed Blastocystis spp. ST10, a subtype predominantly associated with animals. Additionally, one known E. bieneusi genotype (BEB6) was identified. The BEB6 genotype falls into zoonotic Group 2 of E. bieneusi in the phylogenetic tree. CONCLUSION: Our study is the first report of Blastocystis spp. and E. bieneusi infection in hair goats in Türkiye, highlighting their potential role in zoonotic transmission within a One Health framework. Our results provide scientific data for the prevention and control of these two intestinal pathogens. Further investigations are necessary to better understand their genetic characteristics and zoonotic potential in Türkiye.

Enterocytozoon bieneusi

Association of Enterocytozoon bieneusi Infection with chronic/persistent diarrhea and ITS genotypic diversity: a hospital-based case-control study in Suburban Shanghai, China.

Enterocytozoon bieneusi is a globally distributed zoonotic enteric pathogen that remains largely overlooked in routine diarrheal disease surveillance. Although previous studies in Shanghai, China, have reported elevated prevalence in diarrheal populations, case-control data from suburban areas at the peri&#x2011;urban interface and the strength of the association between E. bieneusi infection and chronic diarrhea in non-immunocompromised individuals remain poorly characterized. We performed a hospital-based case-control study in suburban Shanghai, enrolling 286 diarrheal outpatients without documented immunodeficiency and 138 asymptomatic controls frequency-matched for age and sex. Fecal specimens were collected and subjected to genomic DNA extraction. E. bieneusi was detected via nested PCR amplification of the ribosomal internal transcribed spacer (ITS) region. Factors associated with infection were identified using multivariate logistic regression. Genotypic diversity and zoonotic potential were assessed by Sanger sequencing and phylogenetic analysis. The overall prevalence of E. bieneusi was 12.2% (35/286) in diarrheal patients, significantly higher than the 2.2% (3/138) observed in asymptomatic controls (P < 0.001). E. bieneusi positivity was independently associated with chronic/persistent diarrhea (adjusted odds ratio = 2.63, 95% confidence interval: 1.25-5.54, P = 0.011). Fourteen distinct ITS genotypes were identified, comprising five known genotypes (D, EbpD, SHW7, Henan-III, and CHG5) and nine novel genotypes (designated SHH2 to SHH10). Thirteen genotypes clustered within Group 1, and one genotype (CHG5) fell within Group 2, two phylogenetic groups that contain genotypes with documented zoonotic potential in global surveillance. E. bieneusi was detected at a relatively high prevalence among diarrheal patients in suburban Shanghai, and its detection was associated with chronic/persistent diarrhea. The predominance of zoonotic genotypes and the identification of nine novel Group 1 genotypes indicate phylogenetic similarity to known zoonotic lineages and warrant further investigation of local zoonotic transmission; no animal or environmental samples were analyzed in this study. These findings suggest that E. bieneusi testing may be considered as part of the differential diagnosis for patients with unexplained chronic/persistent diarrhea and highlight the need for One Health surveillance in the surveyed area.

Diarrhea

Exploring shotgun metagenomic data to detect microeukaryotic pathogens in wildlife.

BACKGROUND: Microeukaryotic parasites of the intestinal tract are an understudied group of organisms that infect humans and many other animals. Targeted sequencing methods focused on individual loci are usually employed for detection of these parasites, making comprehensive studies of microeukaryotic parasite diversity within hosts or other systems difficult. Exploratory approaches such as shotgun metagenomic sequencing to survey the diversity of microeukaryotic parasites in new and existing datasets are not well developed. RESULTS: Utilizing existing datasets from 12 goose fecal samples, we explored some of the benefits and challenges of using shotgun metagenome sequencing to detect microeukaryotic parasites. We demonstrated the importance of careful curation of read classification data to avoid erroneously linking pathogens to hosts or environments as unsupported classifications were common in the data and varied widely depending on analysis parameters. However, we were able to establish strong support for the presence of sequences of Eimeria and Enterocytozoon bieneusi. In addition, examination of trichomonad reads indicated that parasite reads mapping to human pathogens unlikely to colonize geese may in fact represent cryptic microeukaryotic species that are not included in existing curated databases opening new potential avenues of study. CONCLUSIONS: Taken together these findings support the idea that exploring microeukaryotic parasite diversity within shotgun metagenomic datasets can be beneficial to our understanding of the presence and diversity of these organisms in wildlife hosts.

Animals