The Fish Pathogen Vibrio ordalii Under Iron Deprivation Produces the Siderophore Piscibactin
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The Fish Pathogen Vibrio ordalii Under Iron Deprivation Produces the Siderophore PiscibactinAutor(es)
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2019-09-03Cita bibliográfica
Ruiz, P.; Balado, M.; Fuentes-Monteverde, J.C.; Toranzo, A.E.; Rodríguez, J.; Jiménez, C.; Avendaño-Herrera, R.; Lemos, M.L. The Fish Pathogen Vibrio Ordalii Under Iron Deprivation Produces the Siderophore Piscibactin. Microorganisms 2019, 7, 313, doi:10.3390/microorganisms7090313.
Resumen
[Abstract] Vibrio ordalii is the causative agent of vibriosis, mainly in salmonid fishes, and its virulence mechanisms are still not completely understood. In previous works we demonstrated that V. ordalii possess several iron uptake mechanisms based on heme utilization and siderophore production. The aim of the present work was to confirm the production and utilization of piscibactin as a siderophore by V. ordalii. Using genetic analysis, identification by peptide mass fingerprinting (PMF) of iron-regulated membrane proteins and chemical identification by LC-HRMS, we were able to clearly demonstrate that V. ordalii produces piscibactin under iron limitation. The synthesis and transport of this siderophore is encoded by a chromosomal gene cluster homologous to another one described in V. anguillarum, which also encodes the synthesis of piscibactin. Using β-galactosidase assays we were able to show that two potential promoters regulated by iron control the transcription of this gene cluster in V. ordalii. Moreover, biosynthetic and transport proteins corresponding to piscibactin synthesis and uptake could be identified in membrane fractions of V. ordalii cells grown under iron limitation. The synthesis of piscibactin was previously reported in other fish pathogens like Photobacterium damselae subsp. piscicida and V. anguillarum, which highlights the importance of this siderophore as a key virulence factor in Vibrionaceae bacteria infecting poikilothermic animals.
Palabras clave
Vibrio ordalii
Fish pathogens
Iron uptake
Siderophores
Piscibactin
Vanchrobactin
Fish pathogens
Iron uptake
Siderophores
Piscibactin
Vanchrobactin
Versión del editor
Derechos
Atribución 4.0 Internacional
ISSN
2076-2607