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Updated: Feb 13, 2026

A Toxicological and Ecotoxicological Assay Based on Mussel (Mytilus galloprovincialis) Hemocytes Motility
Published on: December 13, 2024
Characterisation of the intracellular protozoan MPX in Scottish mussels, Mytilus edulis Linnaeus, 1758
G Fichi1, S Carboni1, J E Bron1
1Institute of Aquaculture, Faculty of Natural Sciences, University of Stirling, FK9 4LA Stirling, UK.
Abstract:
Ciliates have been reported as pathogens of many species of economically important bivalves. Mussel protozoan X (MPX), is an uncharacterised intracellular ciliate of mussels and has been widely reported in Mytilus spp. around the world. In order to characterise this ciliate, Mytilus edulis samples were collected from a site on the West coast of Scotland, and four different fixatives for histological examination were tested. Fresh preparations of mussel digestive glands were also examined by laser scanning confocal microscopy. Intracellular ciliates were prepared by laser capture microdissection and partial sequences of small subunit ribosomal RNA gene and of large subunit ribosomal RNA gene were generated, using Phyllopharyngea primers. Methacarn solution proved to be the best fixative for both histological and molecular characterisation. The morphological and molecular investigations confirmed that this ciliate belongs to the class Phyllopharyngea, order Rhynchodida. However, this organism does not belong to any known family, genus or species, therefore, a new description is necessary, following further morphological analyses. Most mussel samples containing MPX displayed mild to moderate infections, with no signs of necrosis or haemocytic response, although a single sample displayed a severe infection (∼103 ciliates per section). The localisation of this ciliate in tissues other than the digestive gland, the presence of necrosis in infected tissue of the most severely infected mussel and the binary fission of this ciliate have been observed here for the first time. We also report the first observation of the live ciliate isolated from tissue. Although MPX remains of unknown significance to the mussel industry, tools and protocols described here will be useful in further characterising these and other ciliates (subclass Rhynchodia) known as pathogens for bivalves.
Insights
This study characterizes Mussel Protozoan X (MPX), an unclassified ciliate pathogen in mussels. New methods reveal its classification within Phyllopharyngea and highlight novel observations of its infection dynamics.
Area of Science:
- Marine Biology
- Parasitology
- Microbiology
Background:
- Intracellular ciliates, such as Mussel Protozoan X (MPX), are emerging pathogens affecting commercially important bivalve molluscs.
- MPX has been globally detected in Mytilus spp., but remains poorly characterized, necessitating detailed investigation.
Purpose of the Study:
- To morphologically and molecularly characterize the unclassified intracellular ciliate, Mussel Protozoan X (MPX), found in Mytilus edulis.
- To establish optimal methods for the histological and molecular analysis of MPX.
- To investigate the pathogenicity and life cycle of MPX in its host.
Main Methods:
- Histological examination of Mytilus edulis tissues using four different fixatives.
- Laser scanning confocal microscopy of fresh mussel digestive gland preparations.
- Laser capture microdissection for isolating intracellular ciliates.
- Molecular characterization using partial small and large subunit ribosomal RNA gene sequencing with Phyllopharyngea primers.
Main Results:
- Methacarn solution was identified as the optimal fixative for both histological and molecular analyses of MPX.
- Morphological and molecular data confirm MPX belongs to the class Phyllopharyngea, order Rhynchodida, but represents a new species.
- First-time observations include MPX localization beyond the digestive gland, necrosis in severe infections, and binary fission. Live MPX was also observed.
Conclusions:
- MPX is a novel ciliate species within Phyllopharyngea, order Rhynchodida, requiring formal description.
- The developed histological and molecular protocols are valuable for future research on MPX and related bivalve pathogens.
- The pathogenic significance of MPX to the mussel industry requires further investigation, despite initial observations of mild to moderate infections.
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