4.7 Article

Efficacy of potential phage cocktails against Vibrio harveyi and closely related Vibrio species isolated from shrimp aquaculture environment in the south east coast of India

期刊

VETERINARY MICROBIOLOGY
卷 207, 期 -, 页码 83-96

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.vetmic.2017.06.006

关键词

Vibrio harveyi; Vibrio species; Phage cocktail; Phage biocontrol; Shrimp aquaculture

资金

  1. Department of Science and Technology (DST), Fast Track Young Scientists Scheme, New Delhi [SR/FT/LS-205/2009]

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A diverse set of novel phages infecting the marine pathogenic Vibrio harveyi was isolated from shrimp aqua culture environments in the south east coast of India. Based on initial screening, three phages with a broad host range revealed that the growth inhibition of phage is relatively specific to V. harveyi. They were also able to infect V. alginolyticus and V. parahemolyticus that belonged to the Harveyi Glade species from shrimp pond and sea coast environment samples. However, the impact of these phages on their host bacterium are well understood; a one-step growth curve experiment and transmission electron microscope (TEM) revealed three phages grouped under the Myoviridae (VHM1 and VHM2); Siphoviridae (VHS1) family. These phages were further molecular characterized with respect to phage genomic DNA isolates. The randomly amplified polymorphic DNA (RAPD), restriction fragment length polymorphism (RFLP) digestion with HindIII, and major structural proteins were distinguished by sodium-dodecyl-sulfate polyacrylamide gel electrophoresis (SDS-PAGE) clearly indicated that all the phage isolates were different, even when they came from the same source, giving an insight into the diversity of phages. Evaluation of microcosm studies of Penaeus monodon larvae infected with V. harveyi (105 CFU mL - 1) showed that larvae survival after 96 h in the presence of phage treatment at 109 PFU mL -1 was enhanced when compared with the control. The resolution in over survival highly recommended that this study provides the phage-based therapy which could be an innovative and eco-friendly solution against Vibrio disease in shrimp aquaculture and in the natural environment.

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