期刊论文详细信息
PeerJ
Occurrence of two myxosporean parasites in the gall bladder of white seabream Diplodus sargus (L.) (Teleostei, Sparidae), with the morphological and molecular description of Ceratomyxa sargus n. sp.
article
Sónia Rocha1  Luís Filipe Rangel3  Graça Casal1  Ricardo Severino3  Florbela Soares6  Pedro Rodrigues1  Maria João Santos3 
[1] Institute of Biomedical Sciences Abel Salazar ,(ICBAS), University of Porto;Instituto de Investigação e Inovação em Saúde ,(i3S), University of Porto;Laboratory of Animal Pathology, Interdisciplinary Centre of Marine and Environmental Research ,(CIIMAR), University of Porto;Department of Biology, Faculty of Sciences ,(FCUP), University of Porto;TOXRUN – Toxicology Research Unit, University Institute of Health Sciences;IPMA, Aquaculture Research Station
关键词: Phylogeny;    SSU rRNA gene;    Aquaculture;    Ultrastructure;    Taxonomy;    Ceratomyxa sargus n. sp.;    Zschokkella auratis;    Myxosporean parasites;   
DOI  :  10.7717/peerj.14599
学科分类:社会科学、人文和艺术(综合)
来源: Inra
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【 摘 要 】

Myxosporeans are widespread cnidarian parasites that usually parasitize fish as part of their complex life cycle, thus constituting a potential threat for the aquaculture industry. White seabream Diplodus sargus (L.) is a commercially valuable sparid fish reared in Southern European aquacultures. Nonetheless, knowledge on myxosporean infections potentially harming the sustainable production of this fish is extremely limited. In this study, a myxosporean survey was conducted on D. sargus specimens reared in two Southern Portuguese fish farms. Two coelozoic myxosporeans were detected infecting the gall bladder, and are herein reported based on microscopic and molecular procedures: Ceratomyxa sargus n. sp. and Zschokkella auratis Rocha et al., 2013, previously described from reared stocks of gilthead seabream Sparus aurata in the same geographic locality. Ceratomyxa sargus n. sp. is the 12th species of the genus to be reported from Southern European sparids, reinforcing a substantial radiation of Ceratomyxa within this fish family and geographic region. SSU rRNA-based Bayesian inference and maximum likelihood analyses revealed C. sargus n. sp. positioned separately from other sparid-infecting Ceratomyxa spp. reported from Southern European countries, demonstrating that this species does not share a more immediate common ancestor with its closest relatives based on host affinity and geography. The recognition of a novel sparid-infecting lineage within the Ceratomyxa clade strengthens the contention that this genus entered sparid fish multiple times, namely in the Southern European region. The identification of Zschokkella auratis infections in D. sargus demonstrates that host shift has occurred among sparids reared in the Southern Portuguese coast. This agrees with the broad host specificity that is usually attributed to this genus, and that may be suggested to be the outcome of the capacity of the Zschokkella morphotype to undergo host shift/switch based on our findings and the limited molecular data available for this genus. Thus, a better understanding of Zschokkella host-associated diversification and dispersal mechanisms requires the increasing availability of molecular data from infections of the same species occurring in multiple hosts and geographical locations.

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