Blood feast: Exploring the erythrocyte-feeding behaviour of the myxozoan Sphaerospora molnari
Language English Country England, Great Britain Media print-electronic
Document type Journal Article
PubMed
31650557
PubMed Central
PMC7581300
DOI
10.1111/pim.12683
Knihovny.cz E-resources
- Keywords
- Myxozoa, common carp, erythrocytes, flow cytometry, haemolytic anaemia, hematophagy,
- MeSH
- Erythrocytes parasitology MeSH
- Erythropoiesis physiology MeSH
- Phylogeny MeSH
- Anemia, Hemolytic parasitology MeSH
- Carps parasitology MeSH
- Myxozoa physiology MeSH
- Fish Diseases parasitology MeSH
- Feeding Behavior physiology MeSH
- Animals MeSH
- Check Tag
- Animals MeSH
- Publication type
- Journal Article MeSH
AIMS: As the most abundant cell population in the blood, erythrocytes represent an attractive source of nutrients and a protective niche to a number of pathogens. Previously, we observed the attachment of the myxozoan parasite Sphaerospora molnari to erythrocytes of its host, common carp (Cyprinus carpio), raising a number of questions about the nature of this interaction. METHODS AND RESULTS: We elucidated the impact of S molnari on the number of erythrocytes in healthy and immunocompromised fish, over a period of 6 weeks. While we observed only a mild decrease in RBC numbers in healthy individuals, we witnessed gradual and finally severe haemolytic anaemia in immunosuppressed fish. Accompanying this overt loss was increased erythropoiesis as represented by an increase of erythroblasts in the blood. In vitro, we demonstrated the uptake of host proteins from CFSE-labelled erythrocytes, ultimately inducing death of host RBCs, likely for nutrient gain of the parasite. Nevertheless, the results do not exclude a possible role of erythrocyte-derived proteins in immune evasion. CONCLUSION: Overall, the obtained data provide first evidence for the previously unknown appetite of myxozoan parasites for host erythrocytes and create an important framework for future investigations into the molecular mechanisms underlining this interaction.
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