Please use this identifier to cite or link to this item: http://hdl.handle.net/1893/37320
Appears in Collections:Aquaculture eTheses
Title: Prevalence and insights on the parasitic dinoflagellate Hematodinium sp. infection in the Norway lobster, Nephrops norvegicus
Author(s): Martin Molto, Irene
Supervisor(s): Albalat, Amaya
MacKenzie, Simon
Keywords: Hematodinium
Nephrops
Microbiome
Norway lobster
parasites
disease
Clyde Sea
infection
lipids
healthy
spores
sporulation
fisheries
DHA
EPA
sp.
dinoflagellates
dinospores
sex
size
dynamics
mortality
gut
haemolymph
moulting
richness
composition
pathosystem
host
crustaceans
decapoda
body colour method
pleopod method
severity
negative
positive
progression
susceptibility
opportunistic
beneficial
Issue Date: 7-Jul-2024
Publisher: University of Stirling
Citation: 1. Molto-Martin, I., Neil, D.M., Coates, C.J., Mackenzie, S., Bass, D., Stentiford, G.D., Albalat, A., 2024. Infection of Norway lobster (Nephrops norvegicus) by the parasite Hematodinium sp.: insights from 30 years of field observations. Royal Society Open Science 11. https://doi.org/10.1098/rsos.231147
2. Martin, I., Elsheshtawy, A., Clokie, B.G.J. , Mackenzie, S., Bass, D., Stentiford, G.D., Albalat, A. (2025). Microbiome dynamics associated with Hematodinium sp. infection in Norway lobster (Nephrops norvegicus). Animal Microbiome 7(1): 62. https://doi.org/10.1186/s42523-025-00416-w
Abstract: Hematodinium sp. poses a significant threat to shellfish fisheries and aquaculture worldwide, causing morbidity and mortality events in various decapod species. The study focuses on the Clyde Sea Area (CSA) population of Nephrops and aims to elucidate key aspects of the Hematodinium-Nephrops pathosystem. This research confirms that Hematodinium sp. infection levels in the CSA align with previous data using body colouration and pleopod examination methods (Beevers et al., 2012; Stentiford et al., 2001a). This confirms that Hematodinium sp. is endemic to the region, with infection rates peaking in spring and summer and declining in autumn. The study highlights a correlation between infection severity and Nephrops size, with smaller individuals being more susceptible to disease progression. Female Nephrops, exhibiting behaviours such as burrow emergence and synchronized moulting in spring, are particularly prone to acquiring infection. the Building upon this knowledge, previously unexamined aspects of Nephrops microbiome dynamics were explored in both Hematodinium-negative individuals and those infected by Hematodinium sp. The analysis revealed that even at subpatent levels, infected lobsters exhibit significant changes in haemolymph microbiome richness and composition, indicating a rapid and persistent microbial response to Hematodinium sp. infection. The infection decreased haemolymph bacterial richness and increased opportunistic bacteria, while the gut microbiome shifted towards polysaccharide-degrading genera. This study also established a baseline for “healthy” microbiomes in Nephrops, with Proteobacteria dominating both haemolymph (46.1%) and gut (26.7%) microbiomes, a pattern consistent with other crustaceans. The haemolymph contained beneficial genera like Bifidobacterium and Lactobacillus, alongside opportunistic pathogens such as Pseudomonas. The gut featured diverse genera, including sulphate-reducing bacteria and the key member Candidatus Bacilloplasma, capable of influencing immune responses. Furthermore, the lipid dynamics between Hematodinium sp. and Nephrops were analysed, revealing clear similarities in lipid profiles between the parasite spores and the host hepatopancreas. This may indicate that the parasite relies on scavenging host-derived lipids for survival and possibly pathogenesis. Hematodinium sp. macrospores accumulate energy-rich lipids such as triacylglycerols, DHA, and EPA, which likely enhance membrane fluidity, motility, and stress resistance, thereby aiding in their survival and transmission of Hematodinium sp.. Future investigations should build upon these insights by incorporating comprehensive monitoring of Hematodinium sp. progression in captivity and exploring the environmental and biological cues that trigger sporulation. Additionally, further research into the specific mechanisms of lipid utilization and the roles of different spore types will advance the understanding of host-parasite interactions.
Type: Thesis or Dissertation
URI: http://hdl.handle.net/1893/37320

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