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Impact of milk fish farming in the tropics on potentially pathogenic vibrios
Institution:1. Dipartimento di Scienze e Tecnologie Biologiche ed Ambientali, Università del Salento, Via Prov.le Lecce Monteroni, Lecce, Italy;2. Dipartimento di Scienze Ambientali, Informatica e Statistica, Università Ca'' Foscari di Venezia, Dorsoduro 1405, Venezia, Italy;3. Istituto per l''Ambiente Marino Costiero, U.O.S. di Taranto, CNR, Via Roma 3, Taranto, Italy;1. Department of Food Science and Engineering, Jinan University, Guangzhou, China;2. Hubei Entry-Exit Inspection and Quarantine Bureau, Inspection and Quarantine Technology Center, Wuhan, China;3. Food Safety and Health Emergency Technical Research Center of Guangdong Province, Guangzhou, China;4. Department of Wine, Food and Molecular Biosciences, Lincoln University, Christchurch, New Zealand
Abstract:Ratios of sucrose-negative to sucrose-positive vibrios on TCBS agar (suc?/suc+) indicate the abundance of potential human pathogenic non-cholera vibrios in coastal mariculture environments of the Lingayen Gulf (Philippines. In guts of adult maricultured milkfish (Chanos chanos) of suc? vibrios reached extreme peak values ranging between 2 and 545 million per g wet weight. Suc? vibrios outnumbered suc+ vibrios in anoxic sediments, too, and were rarely predominant in coastal waters or in oxidized sediments. Suc?/suc+ ratios in sediments increased toward the mariculture areas with distance from the open sea at decreasing redox potentials. There is circumstantial evidence that suc? vibrios can be dispersed from mariculture areas to adjacent environments including coral reefs. An immediate human health risk by pathogenic Vibrio species is discounted, since milkfish guts contained mainly members of the Enterovibrio group. A representative isolate of these contained proteolytic and other virulence factors, but no genes encoding toxins characteristic of clinical Vibrio species.
Keywords:Sucrose-negative vibrios  Enterovibrionaceae  Health risk  Milkfish mariculture  Philippines
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