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.
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http://dx.doi.org/10.1016/j.jip.2019.04.005 | DOI Listing |
Ecol Evol
December 2024
Shoreline Società Cooperativa Trieste Italy.
Following the increased mass mortality of populations in the Mediterranean, reliable protocols for the transport, maintenance, and controlled reproduction of this highly endangered species were drawn up within the European Life Pinna project. To test these protocols, the large Pinnidae , which shares similar habits to , has been used. In December 2022, a transport trial of nine specimens of from Trieste (NE Italy) to Camogli (NW Italy) was carried out.
View Article and Find Full Text PDFEcol Evol
August 2024
IRFAP LIMIA (Laboratorio de Investigaciones Marinas y Acuicultura) - Govern de les Illes Balears Port d'Andratx Balearic Islands Spain.
J Invertebr Pathol
November 2023
Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, ChiBioFarAm, Università Degli Studi di Messina, V.le Ferdinando Stagno D'Alcontres, 31, 98166 Messina, Italy.
The rapid spread of the protozoan Haplosporidium pinnae is having a strong negative effect on Pinna nobilis populations. A case study on a residual population in Lake Faro (Sicily, Central Mediterranean), whose long-term monitoring has revealed a dramatic decline following the 2018-2020 mass mortality event, is presented. In the framework of such monitoring, we performed tissue sampling on nine living P.
View Article and Find Full Text PDFEcol Evol
August 2023
Institut océanographique Paul Ricard Ile des Embiez, Var France.
The fan mussel is currently on the brink of extinction due to a multifactorial disease mainly caused to the highly pathogenic parasite , meaning that the selection pressure outweighs the adaptive potential of the species. Hopefully, rare individuals have been observed somehow resistant to the parasite, stretching the need to identify the traits underlying this better fitness. Among the candidate to explore at first intention are fast-evolving immune genes, of which toll-like receptor (TLR).
View Article and Find Full Text PDFDisease outbreaks in several ecologically or commercially important invertebrate marine species have been reported in recent years all over the world. Mass mortality events (MMEs) have affected the noble pen shell (), causing its near extinction. Our knowledge of the dynamics of diseases affecting this species is still unclear.
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