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1.
J Appl Microbiol ; 129(1): 37-50, 2020 Jul.
Article in English | MEDLINE | ID: mdl-31505106

ABSTRACT

AIMS: Several virulence factors of three new Photobacterium species: Photobacterium toruni, Photobacterium malacitanum and Photobacterium andalusiense associated with diseases of cultured redbanded seabream (Pagrus auriga) were studied. The exoenzymatic activities, adherence and cytotoxic capabilities, and iron-uptake mechanisms were determined both in bacterial extracellular products (ECP) and whole bacterial cells. The histopathology damages provoked on redbanded seabream by the ECP was also studied. METHODS AND RESULTS: The highest exoenzymatic activities of the ECP were alkaline- and acid-phosphatase, phosphohydrolase and lipase. The ECP were strongly lethal for fish at 4-96 h post-inoculation (p.i). Histological changes were evident at 96 hpi of ECP, affecting head kidney, splenic parenchyma and heart. Cytotoxicity assays, on three fish lines and one human cell line, were conducted using whole bacterial cells and their ECP. The new species tested were cytotoxic only for fish cell lines using whole bacterial cells. Bacterial adherence showed an adherence index moderate on CHSE-214 cell line. All strains showed variable haemolytic activity, and were able to grow under iron-limiting conditions, although the CAS reactivitiy was very low. However, all strains produced high amounts of extracelullar citrate that could be used as iron carrier, and use haem as iron source, except the P. toruni strains because a deletion in the genomic region encoding this ability in all Vibrionaceae members. CONCLUSIONS: The toxic activity of the bacterial ECPs was thermolabile, and not associated with their thermoresistant lipopolysaccharide content. The virulence of the strains tested could not be related to the haemolytic activity. Iron uptake could be based on the use of endogenous citrate as iron carrier and P. toruni lacks the ability to use haem as iron source. SIGNIFICANCE AND IMPACT OF THE STUDY: The study analyses for the first time the virulence properties of three new species of Photobacterium pathogenic for fish.


Subject(s)
Fish Diseases/microbiology , Gram-Negative Bacterial Infections/veterinary , Photobacterium/pathogenicity , Sea Bream/microbiology , Animals , Aquaculture , Cell Line , Fish Diseases/pathology , Gram-Negative Bacterial Infections/microbiology , Humans , Photobacterium/growth & development , Photobacterium/metabolism , Photobacterium/physiology , Virulence , Virulence Factors/metabolism
2.
J Appl Microbiol ; 128(1): 41-53, 2020 Jan.
Article in English | MEDLINE | ID: mdl-31529740

ABSTRACT

AIMS: To determine the immune gene expression response of gilthead seabream (Sparus aurata) that is experimentally infected with the lymphocystivirus LCDV-Sa. METHODS AND RESULTS: Viral DNA and transcripts were detected by qPCR in all samples from fish injected with LCDV-Sa, demonstrating that the virus establish a systemic and asymptomatic infection. The expression of 23 immune-related genes was also analysed by RT-qPCR in the head kidney (HK) and intestine at several times post-infection (dpi). In HK, the expression of five type I interferon (IFN)-related genes (ifn, irf3, mx2, mx3 and isg15), il10 and ck10 was upregulated at 1-3 dpi, while genes related to the inflammation process (tnfα, il1ß, il6, casp1) were not differentially expressed or even downregulated. The expression profile in the intestine was different regarding type I INF-related genes. An upregulated c3 and ighm expression was observed in both HK and intestine at 3-8 dpi. Finally, the transcription of nccrp1 and mhcIIα was induced in HK, whereas tcrß expression was downregulated in both organs. CONCLUSIONS: LCDV-Sa seems to trigger an immune response in gilthead seabream characterized by a partial activation of type I IFN system and a lack of systemic inflammatory response which may be related to viral persistence. SIGNIFICANCE AND IMPACT OF THE STUDY: The immune response observed in gilthead seabream infected by LCDV-Sa could be implicated in the establishment of an asymptomatic persistent infection.


Subject(s)
Asymptomatic Infections , DNA Virus Infections/veterinary , Fish Diseases/immunology , Gene Expression Regulation/immunology , Iridoviridae/physiology , Sea Bream/immunology , Animals , Cytokines/genetics , DNA Virus Infections/immunology , DNA Virus Infections/virology , Fish Diseases/virology , Fish Proteins/genetics , Head Kidney/immunology , Intestines/immunology , Sea Bream/genetics , Sea Bream/virology
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