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Detection and Quantification of INocardia crassostreae/I, an Emerging Pathogen, in IMytilus galloprovincialis/I in the Mediterranean Sea Using Droplet Digital PCR

Nocardia crassostreae is a novel pathogen responsible for infections in oysters (Crassostrea gigas) and mussels (Mytilus galloprovincialis). N. crassostreae is also responsible for nocardiosis both in immunocompetent and immunocompromised patients. We investigated N. crassostreae DNA in mussels grow...

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Published in:Pathogens (Basel) 2023-07, Vol.12 (8)
Main Authors: Cutarelli, Anna, Carella, Francesca, De Falco, Francesca, Cuccaro, Bianca, Di Nocera, Fabio, Nava, Donatella, De Vico, Gionata, Roperto, Sante
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container_title Pathogens (Basel)
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creator Cutarelli, Anna
Carella, Francesca
De Falco, Francesca
Cuccaro, Bianca
Di Nocera, Fabio
Nava, Donatella
De Vico, Gionata
Roperto, Sante
description Nocardia crassostreae is a novel pathogen responsible for infections in oysters (Crassostrea gigas) and mussels (Mytilus galloprovincialis). N. crassostreae is also responsible for nocardiosis both in immunocompetent and immunocompromised patients. We investigated N. crassostreae DNA in mussels grown in marine sites of the Mediterranean Sea in the Campania Region. We examined 185 mussel pooled samples by droplet digital PCR (ddPCR) and real-time quantitative PCR (qPCR), each pool composed of 10 mussels and 149 individual mussels. ddPCR detected N. crassostreae DNA in 48 mussel pooled samples and in 23 individual mussel samples. qPCR detected N. crassostreae DNA in six pooled samples and six individual mussel samples. The two molecular assays for the detection of N. crassostreae DNA showed significant differences both in the pooled and in individual samples. Our study demonstrated that ddPCR outperformed real-time qPCR for N. crassostreae DNA detection, thus confirming that ddPCR technology can identify the pathogens in many infectious diseases with high sensitivity and specificity. Furthermore, in individual mussels showing histological lesions due to N. crassostreae, the lowest copy number/microliter detected by ddPCR of this pathogen was 0.3, which suggests that this dose could be enough to cause infections of N. crassostreae in mussels.
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subjects Actinomycetales infections
Causes of
Diseases
Genetic aspects
Health aspects
Identification and classification
Mussels
Nocardia
Polymerase chain reaction
title Detection and Quantification of INocardia crassostreae/I, an Emerging Pathogen, in IMytilus galloprovincialis/I in the Mediterranean Sea Using Droplet Digital PCR
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