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Ejikeugwu, C. P.

Publications and source records attributed to Ejikeugwu, C. P..

2 recordsLinked to original sources

Misleading inference of schistosome epidemiology from ribosomal internal transcribed spacer (ITS) and mitochondrial DNA

The nuclear, internal transcribed spacer (ITS) and mitochondrial cox1 markers are widely used to differentiate Schistosoma haematobium from its livestock counterparts, S. bovis and S. curassoni. Schistosoma isolated from humans with ITS and cox1 alleles from livestock parasites are typically inferred to be zoonotic infections and those with heterozygous ITS alleles (suggesting mixed species ancestry) are classified as recent hybrids. These classifications assume that the ITS and cox1 markers accurately reflect genome-wide ancestry. Here, we evaluated the reliability of this classification scheme by genotyping ITS and cox1 from 132 parasites isolated from human urine, and from 37 adult schistosomes collected from cattle at 14 Nigerian locations. We also genome sequenced each sample to empirically determine livestock schistosome ancestry. ITS/cox1 genotyping suggested extensive recent hybridization and zoonotic infection. Among parasites from humans, 10.1% carried both S. curassoni and S. haematobium ITS, consistent with F1 or early generation hybrids, 21% had livestock schistosome markers at both cox1 and ITS suggesting zoonotic infection, while 13.7% carried S. bovis cox1 alongside mixed S. curassoni and S. haematobium ITS, suggesting more complex ancestry. Genome sequencing revealed a very different picture. All parasites from humans formed a tight cluster regardless of ITS or cox1 genotype, while all worms from cattle were well differentiated. We found no schistosomes containing 50% livestock parasite ancestry consistent with F1s. Instead, we observed regionally varying levels of S. bovis introgression, with modest levels in southern Nigeria (mean = 4.9%) and low levels in northern Nigeria (mean = 0.06%). These results demonstrate that: (i) two-locus genotyping is uninformative for detecting zoonotic infection or recent hybridization between S. haematobium and livestock schistosomes and (ii) previous data generated using this approach requires reinterpretation. These findings reveal the limitations of widely-used approaches for documenting zoonotic infection and hybridization between S. haematobium and livestock schistosome species. Author SummaryMolecular markers provide useful tools for investigating epidemiology of closely related pathogens, but care is required when interpreting the data generated. This study critically examines the interpretation of two widely used molecular markers - the maternally-inherited mitochondrial cox1 locus and ribosomal internal transcribed spacer (ITS) - that are widely used for molecular epidemiology studies of schistosome parasites of humans and livestock. Data from these two markers have been used to infer recent hybridization between livestock and human parasites, and to identify livestock-to-human transmission. To examine the accuracy of epidemiological inferences from the cox1/ITS genotypes we collected parasites from both cattle and people in Nigeria. We genotyped each parasite using cox1 and ITS, as well as using whole-genome sequencing. Cox1/ITS genotyping suggested high rates of hybridization and livestock-to-human transmission. By contrast, whole-genome data show that parasites sampled from humans and cattle are distinct and correspond to independent species. The discrepant results demonstrate that genotyping just two markers provide insufficient resolution and can lead to erroneous conclusions about parasite epidemiology and poor management decisions. We suggest that future work should sample multiple markers from each parasite, using amplicon sequencing or other cost-effective approaches, to improve our understanding of schistosome epidemiology.

evolutionary biology↗

Investigating the factors influencing antibiotic use practices and their association with antimicrobial resistance awareness among poultry farmers in Enugu State, Nigeria

BackgroundThe irrational use of antibiotics in poultry production has far-reaching consequences and continues to impact the fight against antimicrobial resistance (AMR) in Africa. In Nigeria, antibiotics are available over-the-counter and are widely used in food animal production for various reasons, including prophylaxis and growth promotion. While this practice may support animal production, it also drives the spread of AMR, posing serious health challenges due to close human-livestock interactions and the countrys high disease burden. This study examined poultry farmers knowledge, attitudes, and practices (KAP) regarding antibiotic use and AMR, aiming to highlight the public health risks and challenges in combating AMR in Nigeria. MethodsA cross-sectional survey of 200 poultry farms in Enugu State, Southeast Nigeria, was conducted to evaluate farmers KAP towards antibiotic usage and AMR. Using a validated, standardized, and self-administered questionnaire, data were collected from farmers responsible for key farm decisions, including input and feed management. The questionnaire comprised three sections: socio-demographic data, knowledge of AMR, and knowledge and practices regarding antibiotic use. Ethical approval was obtained, and participants gave oral consent based on their professional capacity. ResultsThe evaluation of poultrys farmers KAP regarding antibiotic usage and AMR revealed that the majority of farmers (90.5%) reported using antibiotics, primarily for treating infections (80.5%) or for feed enhancement, growth promotion, and prophylaxis (61%). Ampicillin (75%), ciprofloxacin (71.5%), and doxycycline (71%) were the most commonly administered antibiotics. Monthly administration was the most common (48%), and 89% of respondents believed that antibiotics promote poultry growth. Interestingly, a substantial proportion of respondents (65%) were unaware of AMR, highlighting a significant knowledge gap, with only 16% recognizing the risk of AMR infections. ConclusionOur study revealed that the surveyed poultry farmers heavily rely on antibiotics, primarily for treating infections and, to a significant extent, for growth promotion, despite their limited awareness of AMR. Ampicillin was identified as the most commonly used antibiotic, raising concerns due to its potential link to beta-lactamase selection amid the countrys carbapenem resistance issues. These findings underscore the urgent need for targeted education to address the AMR knowledge gap and reduce the misuse of antibiotics in poultry farming settings in Nigeria.

scientific communication and education↗