Literature DB >> 31026464

Haplosporidium pinnae associated with mass mortality in endangered Pinna nobilis (Linnaeus 1758) fan mussels.

Rossella Panarese1, Perla Tedesco2, Giovanni Chimienti3, Maria Stefania Latrofa1, Francesco Quaglio4, Giuseppe Passantino1, Canio Buonavoglia1, Andrea Gustinelli2, Angelo Tursi3, Domenico Otranto5.   

Abstract

The fan mussel, Pinna nobilis (Linnaeus 1758), is an endemic bivalve of the Mediterranean basin, protected by international legislation as an endangered species. In the early summer of 2018, a mass mortality event (MME) of P. nobilis was recorded in the Gulf of Taranto (Southern Italy, Ionian Sea). Moribund specimens of P. nobilis were collected by scuba divers and processed by bacteriological, parasitological, histopathological and molecular analyses to investigate the causes of this MME. Different developmental stages (i.e., plasmodia, spores and sporocysts) of a presumptive haplosporidian parasite were observed during the histological analysis in the epithelium and in the lumen of the digestive tubules, where mature spores occurred either free or in sporocysts. The spores presented an operculum and an ovoid shape measuring 4.4 µm (±0.232) in length and 3.6 µm (±0.233) in width. BLAST analysis of an 18SrRNA sequence revealed a high nucleotide similarity (99%) with the reference sequence of Haplosporidium pinnae available in GenBank database. Phylogenetic analysis clustered the sequence of the pathogen in a paraphyletic clade with the reference sequence of H. pinnae, excluding other haplosporidians (i.e., Bonamia and Minchinia genera). Based on data reported, H. pinnae was the causative agent of MME in the populations of P. nobilis sampled in the Ionian Sea, where the conservation of this endangered species is heavily threatened by such a protozoan infection. Further investigations should contribute to knowledge about the life cycle of H. pinnae in order to reduce spread of the pathogen and to mitigate the burden of the disease where P. nobilis is facing the risk of extinction.
Copyright © 2019 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  18SrRNA; Haplosporidium pinnae; Histology; Mass mortality; Molecular analyses; Pinna nobilis

Mesh:

Substances:

Year:  2019        PMID: 31026464     DOI: 10.1016/j.jip.2019.04.005

Source DB:  PubMed          Journal:  J Invertebr Pathol        ISSN: 0022-2011            Impact factor:   2.841


  5 in total

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Authors:  Athanasios Lattos; Konstantina Bitchava; Ioannis A Giantsis; John A Theodorou; Costas Batargias; Basile Michaelidis
Journal:  Microorganisms       Date:  2021-04-26

2.  Reduced Antioxidant Response of the Fan Mussel Pinna nobilis Related to the Presence of Haplosporidium pinnae.

Authors:  Antonio Box; Xavier Capó; Silvia Tejada; Gaetano Catanese; Amalia Grau; Salud Deudero; Antoni Sureda; José María Valencia
Journal:  Pathogens       Date:  2020-11-11

3.  Pathophysiological Responses of Pinna nobilis Individuals Enlightens the Etiology of Mass Mortality Situation in the Mediterranean Populations.

Authors:  Athanasios Lattos; Konstantinos Feidantsis; Ioannis Georgoulis; Ioannis A Giantsis; Dimitrios Karagiannis; John A Theodorou; Alexandra Staikou; Basile Michaelidis
Journal:  Cells       Date:  2021-10-22       Impact factor: 6.600

4.  Diversity of Molluscan Assemblage in Relation to Biotic and Abiotic Variables in Brown Algal Forests.

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Journal:  Plants (Basel)       Date:  2022-08-16

5.  Tracking a mass mortality outbreak of pen shell Pinna nobilis populations: A collaborative effort of scientists and citizens.

Authors:  Miguel Cabanellas-Reboredo; Maite Vázquez-Luis; Baptiste Mourre; Elvira Álvarez; Salud Deudero; Ángel Amores; Piero Addis; Enric Ballesteros; Agustín Barrajón; Stefania Coppa; José Rafael García-March; Salvatore Giacobbe; Francisca Giménez Casalduero; Louis Hadjioannou; Santiago V Jiménez-Gutiérrez; Stelios Katsanevakis; Diego Kersting; Vesna Mačić; Borut Mavrič; Francesco Paolo Patti; Serge Planes; Patricia Prado; Jordi Sánchez; José Tena-Medialdea; Jean de Vaugelas; Nardo Vicente; Fatima Zohra Belkhamssa; Ivan Zupan; Iris E Hendriks
Journal:  Sci Rep       Date:  2019-09-16       Impact factor: 4.379

  5 in total

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