Diversity and community structure of ectoparasites infecting some elasmobranch species off the Tunisian coast.
This study examined ectoparasite diversity on eight elasmobranch species off Tunisia, identifying 24 species—including three new ones—with community structure varying by host species and influenced by geographic, ecological, and phylogenetic factors; copepods were most diverse.
With more than 62 reported species, Tunisia has a rich diversity of elasmobranchs. However, investigations of their parasites in Tunisian waters remain rare and fragmented. With the global biodiversity crisis that most living species are facing, the study of parasite diversity is crucial for assessing ecosystem health and host-parasite interactions. In this study, 2,092 specimens of cartilaginous fishes (Chondrichthyes: Elasmobranchii) belonging to eight species, six genera and five families were sampled along the Tunisian coast and examined for their ectoparasites. The different host species were each infected by at least one ectoparasite species. A total of 24 ectoparasite species, among which three new species, were collected and identified. Copepods exhibited the highest taxonomic diversity (11 species), followed by 'monogeneans' (6 species), isopods (5 species), and leeches (2 species). To understand the diversification and specialisation of the collected ectoparasite species and the factors that may influence them, parasitological indices, parasitic communities' composition, parasitic richness and seasonal variation are presented in this work. Parasite community structure varied among host species and families. Mustelus mustelus (Linnaeus) showed the greatest diversity (Shannon-Wiener H' = 1.91; Species richness (SR) = 10), whereas Torpedo torpedo (Linnaeus) hosted only a single leech species. The present study demonstrates that parasite community composition and structure of the studied hosts seem to be influenced primarily by the geographic distribution, the sampling effort and the population density, along with other factors such as the phylogeny of the host species.
- Research Article
6
- 10.1111/fwb.13639
- Oct 30, 2020
- Freshwater Biology
Parasites are known to respond strongly to changes in host diversity and may ultimately reflect changes in ecosystems. However, it remains unclear whether strong relationships between host and parasite richness also reflect those at the level of community composition. A complementary approach is to test for concordance between host and parasite composition to evaluate whether shifts in parasite community structure mirror patterns of their hosts and potentially the environment. I tested for concordance between patterns of community similarity in parasites, their fish hosts, and environmental factors sampled across three sites and four seasons within each of two river ecosystems. I constructed ordinations of parasites, fish, and environmental variables to establish their patterns of similarity in multivariate space and used Procrustes analysis to evaluate whether patterns in community structure were concordant. Spatial and seasonal patterns in fish and parasite community structure were concordant when analysing patterns in community composition (i.e. presence–absence), but not community abundance (i.e. numerical density). Patterns in fish communities were concordant with the physical river environment. However, despite finding concordance between fish and parasite communities and fish and their environment, parasites were concordant with the river environment in only one ecosystem. Re‐evaluating the relationship between host and parasite diversity under a community concordance framework showed that patterns among host and parasite community composition exist, but this relationship is weaker than expected. The looser connection between patterns in host and parasite community composition can be mediated by parasite life history and parasites responding both indirectly and directly to changes in host communities and the local environment.
- Research Article
8
- 10.1515/ap-2017-0039
- Jan 1, 2017
- Acta parasitologica
The parasite communities of two freshwater catfishes (Auchenipterus osteomystax and Trachelyopterus galeatus) were analyzed during the dry and rainy seasons in a Neotropical floodplain. The nature of river-floodplain systems places specific demands on parasite community structure, due to changes in the host environment. It was therefore hypothesized that flood conditions lead to an increase in the richness and abundance of fish parasites in the rainy season at the mouth of Aguapeí River floodplain. The Auchenipterus osteomystax parasite community was richer (11 vs. eight) in species than T. galeatus, although the latter exhibited a greater parasite burden (F1,108 = 126.99, P<0.0001). During the rainy season both host species demonstrated high levels of parasitism (least squared means ± SE = 1.69 ± 0.05 vs. 1.34 ± 0.05; F1,108 = 21.45, P<0.0001). Differences were found in the composition of the parasite species and the proportion of parasites for each host species and between each seasonal period. Flood conditions during the rainy season caused a change in the composition and structure of the parasitic communities. The results corroborate the hypothesis that floods are one of the most significant influences on shaping the parasite communities of fish in floodplains. Our greatest concern is the reduction these dynamics and effects bring about on local biota and, consequently, in host-parasite interaction. We would therefore like to take this opportunity to warn environmental agencies and hydroelectric companies about the importance of the conservation of the diversity of this location.
- Research Article
38
- 10.14411/fp.2011.023
- Sep 21, 2011
- Folia Parasitologica
Previously published multidisciplinary studies in the Miramichi and Bouctouche rivers (New Brunswick, Canada) noted significant changes in fish health parameters, including elevated tissue levels of organic contaminants and a wide range of physiological disturbances, in mummichog Fundulus heteroclitus (L.) from a site on the Miramichi River that received bleached kraft pulpmill and municipal effluent. The present study reports differences in the abundance of individual parasite species, as well as parasite infracommunity and component community composition, in mummichog from both rivers. These differences were evaluated in relation to host (size, condition, immune function, tissue organochlorine contaminant levels) and environmental (faecal coliform counts, salinity, temperature) data derived from the previously published studies. Overall, 18 parasite species were identified, the most common of which were Ascocotyle sp. larv., Ornithodiplostomum sp. larv., Posthodiplostomum sp. larv., and Proteocephalus filicollis (Rudolphi, 1802). There were broad differences in parasite community structure and composition between rivers and within rivers, the most prominent pattern being a pronounced difference between sites in the upper and lower estuary of each river that was likely driven by salinity. Mean infracommunity richness was also positively related to faecal coliforms (considered here as a surrogate measure of eutrophication via municipal sewage), and both were highest at the most polluted site. We noted no other significant relationships. Thus our data suggest that the parasite communities in these two estuaries were primarily structured by large upstream/downstream ecological gradients in salinity, and secondarily by eutrophication due to pollution by municipal and industrial effluents. Overall, our results highlight the value of coordinated multidisciplinary studies for understanding the factors that shape parasite abundance and community structure.
- Research Article
32
- 10.1111/1365-2656.13204
- Mar 31, 2020
- Journal of Animal Ecology
Community composition is driven by a few key assembly processes: ecological selection, drift and dispersal. Nested parasite communities represent a powerful study system for understanding the relative importance of these processes and their relationship with biological scale. Quantifying β-diversity across scales and over time additionally offers mechanistic insights into the ecological processes shaping the distributions of parasites and therefore infectious disease. To examine factors driving parasite community composition, we quantified the parasite communities of 959 amphibian hosts representing two species (the Pacific chorus frog, Pseudacris regilla and the California newt, Taricha torosa) sampled over 3months from 10 ponds in California. Using additive partitioning, we estimated how much of regional parasite richness (γ-diversity) was composed of within-host parasite richness (α-diversity) and turnover (β-diversity) at three biological scales: across host individuals, across species and across habitat patches (ponds). We also examined how β-diversity varied across time at each biological scale. Differences among ponds comprised the majority (40%) of regional parasite diversity, followed by differences among host species (23%) and among host individuals (12%). Host species supported parasite communities that were less similar than expected by null models, consistent with ecological selection, although these differences lessened through time, likely due to high dispersal rates of infectious stages. Host individuals within the same population supported more similar parasite communities than expected, suggesting that host heterogeneity did not strongly impact parasite community composition and that dispersal was high at the individual host-level. Despite the small population sizes of within-host parasite communities, drift appeared to play a minimal role in structuring community composition. Dispersal and ecological selection appear to jointly drive parasite community assembly, particularly at larger biological scales. The dispersal ability of aquatic parasites with complex life cycles differs strongly across scales, meaning that parasite communities may predictably converge at small scales where dispersal is high, but may be more stochastic and unpredictable at larger scales. Insights into assembly mechanisms within multi-host, multi-parasite systems provide opportunities for understanding how to mitigate the spread of infectious diseases within human and wildlife hosts.
- Research Article
33
- 10.1017/s0031182016001608
- Oct 20, 2016
- Parasitology
Host-parasite associations are complex interactions dependent on aspects of hosts (e.g. traits, phylogeny or coevolutionary history), parasites (e.g. traits and parasite interactions) and geography (e.g. latitude). Predicting the permissive host set or the subset of the host community that a parasite can infect is a central goal of parasite ecology. Here we develop models that accurately predict the permissive host set of 562 helminth parasites in five different parasite taxonomic groups. We developed predictive models using host traits, host taxonomy, geographic covariates, and parasite community composition, finding that models trained on parasite community variables were more accurate than any other covariate group, even though parasite community covariates only captured a quarter of the variance in parasite community composition. This suggests that it is possible to predict the permissive host set for a given parasite, and that parasite community structure is an important predictor, potentially because parasite communities are interacting non-random assemblages.
- Research Article
- 10.14411/fp.2025.017
- Jun 3, 2025
- Folia parasitologica
Species richness and similarity in metazoan parasite communities of fish can be influenced by several biotic (age, body size, vagility, social and feeding behaviour, among others), and local abiotic factors (temperature, salinity, climatic events, etc.). The parasite communities of ten species of the family Carangidae from Acapulco Bay, Mexico, were quantified and analysed between May 2014 and August 2024. A total of 1,148 fish specimens were examined and 78 parasite species were identified (44 endoparasites and 34 species of ectoparasites). At the component community level, species richness ranged from 11 in Euprepocaranx dorsalis (Gill) to 27 in Caranx caninus Günther. Parasite communities were dominated mainly by monogenean species. The richness and parasite species composition differed between the ten species of host. The habitat type, body size and host diet variety were the main factors responsible of these differences. Similarity in species composition varied even between hosts of the same genus, suggesting that phylogenetic relatedness and sympatry were not important determinants of parasite communities in these carangid fish. Therefore, host ecology has a greater influence on the structure and species composition of parasite communities than its phylogenetic history.
- Research Article
11
- 10.2478/s11686-014-0215-5
- Jan 1, 2014
- Acta Parasitologica
This study investigated the factors (i.e., season, locality, sampling year, total length and maturity stage of the hosts) that might influence the structure of parasite populations and communities in the clingfish Gobiesox marmoratus. The parasite community was described and analyzed using numerical descriptors, such as prevalence, intensity and species richness, between factors previously mentioned. A total of 260 clingfish were collected from 2 localities of central Chile, four seasons and during 3 year cycles (from July 2006 to July 2009). In the whole clingfish sample, 668 parasites were found, which belonged to 14 parasite taxa; 9 of them were new records in G. marmoratus. Parasite infracommunity richness ranged 0-3 species, although 1 trematode species, Helicometrina nimia, represented 80% of all parasites collected and was the most abundant and prevalent parasite species. The average of parasite abundance and intensity (± SD) was 2.5 ± 8.2 and 7.5 ± 12.7, respectively. Generalized linear model showed that parasite communities were influenced by season, locality, sampling year, and maturity stage when considering the abundance and intensity of parasites. For the parasite richness, only the locality and maturity of fish was determinant for explaining the differences. The populations and communities of the parasite variations were variable due to differences in fish body length because prevalence, abundance and intensity of parasites significantly correlated with the fish body length. Concordantly, maturity fish were longer than immature fish. Thus, clingfish from El Tabo were longest and mature, which harbored higher parasite richness than those fish from Las Cruces.
- Research Article
- 10.3390/ani16081192
- Apr 14, 2026
- Animals : an open access journal from MDPI
Parasites are integral components of marine ecosystems, providing insights into host biology, trophic interactions, and environmental variability. This study presents the first systematic characterization of the metazoan parasite community of the Green Jack (Caranx caballus) in the northern Colombian Pacific, a region designated as an Exclusive Artisanal Fishing Zone (ZEPA) but with limited parasitological research. Specimens were collected from the Cupica Gulf across wet and dry seasons, and parasitological analyses were conducted to evaluate parasite load, community structure, spatial distribution, and seasonal variation. Of 46 fish examined, 20 were parasitized (overall prevalence: 43.5%), with low infection intensities (1-3 parasites per fish). Nine parasite species were identified, including monogeneans, digeneans, and copepods. Copepods (Caligus sp.) represented the most species-rich and dominant group, while Allopyragraphorus caballeroi exhibited aggregated distribution. Parasite communities showed low richness and diversity, seasonal stability, and strong trophic linkages to crustacean prey, particularly brachyuran megalopa. Host condition was unaffected by parasitism, suggesting resilience under current infection levels. These findings provide the first reference on parasite richness and diversity for C. caballus in Colombia, extending the known distribution of several species within the Eastern Tropical Pacific and underscoring the role of parasites as biological markers for fisheries monitoring and ecosystem change.
- Research Article
- 10.1111/jfb.70332
- Jan 23, 2026
- Journal of fish biology
Host functional traits are widely used to explain patterns of parasite diversity and community structure; however, their predictive power in species-rich Neotropical freshwater systems remains poorly understood. We examined whether host traits predict helminth parasite community composition in the Lacantún River (southern Mexico), using presence/absence data for 74 helminth genera recorded from 58 fish species. We evaluated a suite of host traits related to body size, spatial ecology, migration and trophic position, together with a proxy for host phylogenetic relatedness. Multivariate analyses revealed that the first axis explained 17.9% of the total variation in parasite assemblage composition. Trophic level was the strongest contributor to this axis (23.8% of its explained variance), followed by host total length (21.3%) and position in the water column (20.6%). Notably, piscivorous hosts harboured distinct parasite communities. Nevertheless, the overall proportion of explained variation was low, reflecting the complex, multicausal nature of host-parasite systems and the influence of unmeasured factors such as host density, sampling effort and parasite life-history diversity. Consistent with this interpretation, univariate analyses showed no significant linear relationship between helminth genus richness and either host total length or trophic level. Together, these results indicate that host traits act primarily as ecological filters shaping which parasite genera occur, rather than determining the total number of parasite genera per host. Our findings highlight the importance of multivariate, trait-based approaches for understanding parasite community assembly in Neotropical rivers and caution against relying on simple richness-based predictors in highly complex host-parasite networks.
- Research Article
- 10.1002/njz2.70010
- Jan 1, 2026
- New Zealand Journal of Zoology
Most tropical coastal lagoons are currently greatly impacted by anthropogenic activities that promote the emergence of parasite diseases in aquatic organisms. This is because water is a medium necessary for the transmission of larval stages of many parasite species. A total of 433 specimens of Mugil curema (Valenciennes, 1836) were collected between April and October of 2024 from five coastal lagoons exposed to different levels of anthropogenic impact in Guerrero, Mexico. The main objective was to determine the effect of local environmental factors on the structuring of parasite communities of this fish. Fifteen species of parasites were identified: one of Monogenea (adult), five Digenea (two adults and three larvae), three Acanthocephala (one adult and two juvenile), one Cestoda (larvae), two Nematoda (one adult and one larvae), and three Crustacea (two copepods and one branchyuran). Three parasite species were classified as specialist of mugilid fish ( Ligophorus sp., Floridocentis pacifica , and Ergasilus lizae ), and the remaining species were generalist parasites acquired by the host, during its stay in the coastal lagoons. Five allogenic species that use ichthyophagous birds as definitive hosts represented 87% of the total parasites recovered, thereby highlighting the importance of this species of fish as an intermediate host for these parasites. The component communities and the infracommunities of M. curema exhibited a similar pattern: low numbers of species, low diversity, and high dominance by a single parasite species [the heterophyid Ascocotyle ( Phagicola ) longa ]. Species composition and structure of the component parasite communities were strongly influenced by the physical and environmental characteristics of each coastal lagoon as surface area, salinity, oxygen and phosphate concentrations, and pH.
- Research Article
35
- 10.1111/j.0030-1299.2005.13590.x
- Mar 17, 2005
- Oikos
Ecosystem functioning, characterized by components such as productivity and stability, has been extensively linked with diversity in recent years, mainly in plant ecology. The aim of our study was thus to quantify general relationships between diversity, community structure and ecosystem functions in metazoan parasite communities. We used data on parasite communities from 15 species of marine fish hosts from coastal Chile. The volumetric abundance (volume of all parasite species per individual host, in mm3) was used as a surrogate for productivity. Species diversity was measured using both species richness and evenness, while community structure was estimated using the co‐occurrence indices V‐ratio, C‐score and a new C‐scores index standardized for the number of host replicates. After correcting for fish size, 47% of host species show no relationship, 13% show a hump shaped curve and 40% show positive monotonic relationships between productivity and parasite richness across all host individuals in a sample. We obtained a logarithmically decreasing relationship between evenness and productivity for all fish species, and propose a ‘dominance‐resistance’ hypothesis based on immunity to explain this pattern. The stability of the parasite community, measured as the coefficient of variation in productivity among individual hosts, was strongly and positively related to mean species richness across the 15 host species. The C‐scores index, based on the number of checkerboard units in the host‐parasite presence/absence matrix, increases linearly with mean productivity across the 15 host species, suggesting that parasite communities tend to be more structured when they are more productive. This is the likely reason why linear relationships between richness and productivity were not observed consistently in all fish species. Parasite communities provide some clear patterns for the diversity–ecosystem functioning debate in ecology, although other factors, such as the history of community assembly, may also influence these patterns.
- Research Article
226
- 10.1046/j.1365-2699.2003.00949.x
- Sep 26, 2003
- Journal of Biogeography
Aim The rate at which similarity in species composition decays with increasing distance was investigated among communities of parasitic helminths in different populations of the same host species. Rates of distance decay in similarity of parasite communities were compared between populations of fish and mammal hosts, which differ with respect to their vagility and potential to disperse parasite species over large distances.Location Data on helminth communities were compiled for several populations of three mammalian host species (Ondatra zibethicus, Procyon lotor and Canis latrans) and three fish host species (Perca flavescens, Catostomus commersoni and Esox lucius) from continental North America.Methods Distances between localities and similarity in the composition of helminth communities, the latter computed using the Jaccard index, were calculated for all possible pairs of host populations within each host species. Similarity values were then regressed against distance to see if they decayed at exponential rates, as reported for plant communities; the significance of the regressions was assessed using randomization tests.Results The number of hosts examined per population did not correlate with the number of helminth species found per population, and thus sampling effort is unlikely to have confounded the results. In four (two mammals and two fish) of the six host species, similarity in helminth communities decayed exponentially with distance. When the log of similarity is plotted against untransformed distance, the slopes obtained for the two fish species are lower than those obtained for the two mammalian host species.Main conclusions Similarity in the composition of parasite communities appears to decay exponentially with increasing distance in some host species, but not in all host species. The rate of decay is not necessarily associated with the vagility of the host. Although distance decay of similarity is generally occurring, it seems that other ecological processes, related either to the host or its habitat, can obscure it.
- Research Article
13
- 10.1017/s0022149x20000504
- Jan 1, 2020
- Journal of Helminthology
Understanding the mechanisms driving host-parasite interactions has important ecological and epidemiological implications. Traditionally, most studies dealing with host-parasite interaction networks have focused on species relationship patterns, and intra-population variation in such networks has been widely overlooked. In this study, we tested whether the composition of parasite communities of five anuran species (Leptodactylus chaquensis, Leptodactylus fuscus, Leptodactylus podicipinus, Pseudis paradoxa and Pithecopus azureus) vary across a pasture pond and a natural reserve site in south-eastern Pantanal, Brazil. We analysed the structure of individual-based networks of these five anuran species, assessed the species roles in the networks and the contribution of host species and body size to interaction strength in the networks, and tested if network ecological attributes varied between the two sites. We observed a total of 17 parasite morphospecies in 151 individual anurans and found that the abundance of parasite species tends to vary, with host species being the main filter driving parasite community structure. The composition of core parasite species remained similar between study sites, and network structure (i.e. parasite richness, interaction diversity, specialization, nestedness and modularity) did not change between pasture and natural reserve. Individual traits of hosts influenced network descriptors since larger hosts presented greater interaction strength independent of the study site. In short, we found that the occurrence of highly connected parasite taxa in both the pasture and the reserve sites may have promoted similarity in network structures, and host body size was the best predictor of associations with parasites in both study sites.
- Research Article
23
- 10.1111/jfb.12591
- Dec 26, 2014
- Journal of Fish Biology
By combining an examination of stomach contents yielding a snapshot of the most recent trophic niche and the structure of parasite communities reflecting a long-term feeding niche, this study aimed at gaining more comprehensive information on the role of the small-sized deep-water velvet belly lantern shark Etmopterus spinax in the local food webs of the Galicia Bank and the canyon and valley system of the Avilés Canyon, which have been both proposed for inclusion in the Natura 2000 network of protected areas. As far as is known, this study provides the first comparative parasite infracommunity data for a deep-sea shark species. Component parasite communities in E. spinax were relatively rich, whereas the infracommunities were rather depauperate, with similar low diversity at both localities. The significant differences in the composition and structure of both parasite communities and prey assemblages indicate differential effects of the two deep-sea ecosystems on both long-term and most recent trophic niches of E. spinax. These results underline the importance of the use of multivariate analyses for the assessment of geographical variation in shark populations based on parasites and diet data.
- Research Article
1
- 10.15517/rbt.v63i4.16785
- Oct 16, 2015
- Revista de Biología Tropical
<p class="Default">La estructura de la comunidad de parásitos, determinada mediante análisis de anidamiento, varía considerablemente en función de la especie hospedera y el tamaño corporal de la misma. El patrón anidado es aquel en el que comunidades pobres en especies constituyen subunidades de comunidades de mayor riqueza, lo cual también se observa en las comunidades de parásitos. Existen grandes diferencias de riqueza y abundancia de parásitos en función del tamaño del hospedero. Por lo tanto, en este estudio determinamos, mediante análisis de anidamiento, si la estructura de la comunidad de parásitos de peces del intermareal, se relaciona con la longitud corporal de los hospederos y los descriptores parasitológicos. Se recolectaron 2 435 individuos de cinco especies de peces del intermareal rocoso de Chile central (32º02’-33º57’ S y 70º30’- 70º30’ W); <em>Helcogrammoides chilensis,</em><em> Scartichthys viridis, Auchenionchus microcirrhis, Gobiesox marmoratus </em>y<em> Sicyases sanguineus</em>. Cada especimen fue revisado con respecto a sus parásitos y medido en su longitud total (LT). Las cinco especies muestreadas fueron clasificadas en función de la longitud corporal (LT) en tres rangos, cada uno de los cuales constituye una infracomunidad del estudio, y para la que se calculó el índice de anidamiento. Se emplearon los modelos NTCP (Nestedness Temperature Calculator Program) y NODF (Nestedness metric based on the Overlap and Decreasing Fill), utilizando la presencia/ausencia de especies parásitas. También se empleó el modelo WNODF (Weighted – NODF) utilizando la abundancia de parásitos por especie. Así mismo, se calculó la riqueza total de especies, el promedio de riqueza, abundancia, diversidad y dominancia a nivel de la infracomunidad, para relacionarlos con los índices de anidamiento. Las infracomunidades de parásitos de la mayoría de las especies presentaron patrones de anidamiento, excepto en <em>G. marmoratus</em> y <em>H. chilensis,</em> en algunos de sus rangos de LT. No se encontró una relación directa entre el índice de anidamiento y la LT de los peces. Sin embargo, se observaron correlaciones directas de los índices de anidamiento con la riqueza promedio, abundancia y la diversidad infracomunitaria de parásitos, pero no con la riqueza total, que mostró una correlación inversa con la LT del hospedero. Además, se detectó anidamiento en la comunidad componente de parásitos en todas las especies de peces. Concluimos que las comunidades de parásitos de peces provenientes de la zona intermareal son estructuradas y predecibles, y se encuentran vagamente condicionadas por la LT de los hospederos y las características agregadas de los parásitos, especialmente a un nivel infracommunitario.</p>