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Parasitic freshwater mussels impact the shoaling behaviour and habitat use of their host fish.
Karlstad University, Faculty of Health, Science and Technology (starting 2013), Department of Environmental and Life Sciences (from 2013). (River Ecology and Management)ORCID iD: 0000-0002-6541-4795
INRAE, UR RiverLY, Villeurbanne, France.
River Ecology and Management, Research Group RivEM, Department of Environmental and Life Sciences, Karlstad University, Karlstad, 65188, Sweden.
Karlstad University, Faculty of Health, Science and Technology (starting 2013), Department of Environmental and Life Sciences (from 2013).ORCID iD: 0000-0002-8738-8815
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2026 (English)In: Behavioral Ecology and Sociobiology, ISSN 0340-5443, E-ISSN 1432-0762, Vol. 80, no 60Article in journal (Other academic) Published
Abstract [en]

Freshwater mussels in the order Unionida are a highly endangered taxon of ecosystem engineers with a variety of conservation and reintroduction efforts around the world attempting to increase wild populations. The unionid lifecycle involves a parasitic larval life-stage (glochidia), primarily adapted for dispersal rather than growth. Little is known about the behavioural effects of the glochidia on their host fish. We investigated the shoaling behaviour and habitat preference of the Eurasian minnow (Phoxinus phoxinus) while infested with the glochidia of one of Europe’s most endangered unionid mussels, the thick-shelled river mussel (Unio crassus). Behavioural assays were carried out in a hydrologically complex flow-through aquaria at two time points of the infestation period, a carrying stage and an excystment stage (14 and 28 days post infestation). We demonstrate that glochidiosis reduces minnow shoaling frequency and increases the number of isolated individuals. However, minnow shoal area and nearest neighbour distance remained unaffected. Infested minnows demonstrated a significant preference for slower flowing and less turbulent habitat. These results suggest that glochidiosis reduces host swimming efficiency, which likely increases predatory pressure on infested minnows. Simultaneously, this preference for calmer habitats may benefit the encysted mussels, as these habitats are better suited for juvenile mussel excystment. Our results highlight the importance of low-flow and low-turbulence habitats for unionid recruitment, as parasitized host individuals tolerate these conditions well.

Place, publisher, year, edition, pages
Springer Nature, 2026. Vol. 80, no 60
Keywords [en]
Cyprinidae, Unionidae, Phoxinus phoxinus, Unio crassus, Endangered species, Conservation, Ecology, Sociobiology
National Category
Behavioral Sciences Biology
Research subject
Biology
Identifiers
URN: urn:nbn:se:kau:diva-103897DOI: 10.1007/s00265-026-03736-2ISI: 001754701900001Scopus ID: 2-s2.0-105037654345OAI: oai:DiVA.org:kau-103897DiVA, id: diva2:1950806
Note

Artikeln ingick som manuskript i Rocks doktorsavhandling. Nu publicerad.

Available from: 2025-04-09 Created: 2025-04-09 Last updated: 2026-05-19Bibliographically approved
In thesis
1. Glochidiosis and behaviour
Open this publication in new window or tab >>Glochidiosis and behaviour
2025 (English)Doctoral thesis, comprehensive summary (Other academic)
Abstract [en]

Freshwater mussels in the order Unionida are a highly endangered and globally distributed taxon of parasitic bivalves. Consequently, many conservation and reintroduction projects have emerged to protect this valuable order. Adult mussels release parasitic larvae (glochidia) that affix themselves to their hosts, typically the gills of fish, where they become encysted in the tissue and metamorphose into juveniles; later, excysting as juveniles to develop into free-living adults in the sediment, completing the lifecycle. As Unionids are well-known ecosystem engineers, reintroduction efforts are generally met with support. However, members of the public unfamiliar with the scientific literature often have reservations when learning that the restoration project aims to introduce parasites to their local waterways. Little is known about the impacts of glochidiosis on host fishes; however, most effects are negative. With the growth of mussel conservation projects, more fish will be exposed to these negative impacts. 

In this dissertation, I explore the parasitic interactions of two of Europe’s most endangered mussels with some of their respective host fishes. I initially produced a general literature review to summarize all previous work on the topic and better understand which aspects needed the most attention (Paper I). From this, I surmised that the behavioural and molecular impacts of glochidiosis were the least studied and that there was a general over-representation of the interaction between the freshwater pearl mussel (Margaritifera margaritifera) and its salmonid hosts, a highly specialized interaction not well-suited for cross-species generalizations. I followed Paper I with an investigation into the impacts of infestation by the thick-shelled river mussel (Unio crassus) on the schooling behaviour of its host minnow (Phoxinus phoxinus; Paper II), and the impacts of both adult and larval life stages of U. crassus on the predator-prey interactions of its host bullhead (Cottus gobio) with a prey gammarid (Paper III). The results of Papers II and III suggested that unionid mussels may manipulate host behaviour; to test this hypothesis, a year-long field study was conducted on the movement patterns and habitat choice of brown trout (Salmo trutta) when infested with glochidia from M. margaritifera, the species most likely to express an extended phenotype (Paper IV), as speculated in Paper I. This investigation provided evidence in support of an expressed extended phenotype by a unionid mussel on its host fish.

Abstract [en]

Unionid mussels are a unique order of bivalves characterised by the presence of a parasitic larval life stage, known as a glochidium. In this dissertation, I explore the behavioural effects of glochidiosis (the condition of bearing glochidia) on common hosts of Europe’s most endangered unionids. The dissertation includes a general review of the effects of glochidiosis, two laboratory studies, and a year-long field study. The results presented here demonstrate that glochidia induce effects on their host fish similar to those caused by other parasites, including reduced growth, decreased swimming performance, and a general preference for calmer water and more structurally complex habitats. Together, the behavioural alterations induced by glochidiosis may benefit unionid recruitment, as infested host fish may transport excysting juvenile mussels to habitats favourable for later development. This provides evidence for the presence of an extended phenotype in unionids.

Place, publisher, year, edition, pages
Karlstad: Karlstads universitet, 2025. p. 93
Series
Karlstad University Studies, ISSN 1403-8099 ; 2025:19
Keywords
Unionida, Glochidia, Parasitology, Behavioural Ecology, Ecology, Host Manupilation
National Category
Ecology Behavioral Sciences Biology Other Biological Topics
Research subject
Biology
Identifiers
urn:nbn:se:kau:diva-103900 (URN)10.59217/ogie5789 (DOI)978-91-7867-570-8 (ISBN)978-91-7867-571-5 (ISBN)
Public defence
2025-05-23, 1B309, Sjöströmsalen, Karlstad, 10:00 (English)
Opponent
Supervisors
Note

Paper 2 and 4 part of thesis as manuscript, now published. 

Available from: 2025-04-30 Created: 2025-04-09 Last updated: 2026-05-11Bibliographically approved

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Rock, Sebastian L.Calles, OlleWatz, JohanÖsterling, Martin

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