Zoonotic Cryptosporidium and Giardia in marsupials-an update
Amanda D Barbosa1,2, Siobhon Egan3, Yaoyu Feng4
1Harry Butler Institute, Vector- and Water-Borne Pathogens Research Group, Murdoch University, Murdoch, Western Australia, 6150, Australia. A.DuarteBarbosa@murdoch.edu.au.
Abstract:
Marsupials, inhabiting diverse ecosystems, including urban and peri-urban regions in Australasia and the Americas, intersect with human activities, leading to zoonotic spill-over and anthroponotic spill-back of pathogens, including Cryptosporidium and Giardia. This review assesses the current knowledge on the diversity of Cryptosporidium and Giardia species in marsupials, focusing on the potential zoonotic risks. Cryptosporidium fayeri and C. macropodum are the dominant species in marsupials, while in possums, the host-specific possum genotype dominates. Of these three species/genotypes, only C. fayeri has been identified in two humans and the zoonotic risk is considered low. Generally, oocyst shedding in marsupials is low, further supporting a low transmission risk. However, there is some evidence of spill-back of C. hominis into kangaroo populations, which requires continued monitoring. Although C. hominis does not appear to be established in small marsupials like possums, comprehensive screening and analysis are essential for a better understanding of the prevalence and potential establishment of zoonotic Cryptosporidium species in small marsupials. Both host-specific and zoonotic Giardia species have been identified in marsupials. The dominance of zoonotic G. duodenalis assemblages A and B in marsupials may result from spill-back from livestock and humans and it is not yet understood if these are transient or established infections. Future studies using multilocus typing tools and whole-genome sequencing are required for a better understanding of the zoonotic risk from Giardia infections in marsupials. Moreover, much more extensive screening of a wider range of marsupial species, particularly in peri-urban areas, is required to provide a clearer understanding of the zoonotic risk of Cryptosporidium and Giardia in marsupials.
Insights
Marsupials can carry Cryptosporidium and Giardia, posing potential zoonotic risks. While overall transmission risk appears low, continued monitoring of pathogen spill-back and comprehensive screening are crucial for public health.
Area of Science:
- Veterinary Parasitology
- Zoonotic Disease Epidemiology
- Microbial Ecology
Background:
- Marsupials inhabit diverse environments, increasing human-wildlife interaction and potential pathogen exchange.
- Zoonotic spill-over and anthroponotic spill-back of parasites like Cryptosporidium and Giardia are concerns in marsupial populations.
- Understanding pathogen diversity in marsupials is key to assessing public health risks.
Purpose of the Study:
- To review current knowledge on Cryptosporidium and Giardia diversity in marsupials.
- To evaluate the zoonotic potential and transmission risks associated with these parasites.
- To identify knowledge gaps and recommend future research directions.
Main Methods:
- Literature review of studies on Cryptosporidium and Giardia in marsupials.
- Analysis of reported species/genotypes and their prevalence in different marsupial hosts.
- Assessment of evidence for zoonotic transmission and host specificity.
Main Results:
- Cryptosporidium fayeri and C. macropodum are common in marsupials; possum genotype dominates in possums.
- Low zoonotic risk from Cryptosporidium, with C. fayeri found in two humans; C. hominis spill-back into kangaroos noted.
- Both host-specific and zoonotic Giardia duodenalis assemblages (A and B) found in marsupials, with origins from spill-back unclear.
Conclusions:
- Current zoonotic risk from marsupial Cryptosporidium appears low, but monitoring for C. hominis spill-back is needed.
- Further research, including multilocus typing and whole-genome sequencing, is essential for Giardia risk assessment.
- Extensive screening of diverse marsupial species, especially in peri-urban areas, is required to fully understand zoonotic risks.
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