AI Article Synopsis

  • Edwardsiella piscicida is a fish pathogen affecting multiple species, with unclear reasons for its genetic diversity; this study analyzed 37 isolates from 10 different fish species in North America.
  • Using multilocus sequence analysis (MLSA), researchers grouped these isolates into six clades, assessing their virulence in Chinook salmon after introducing the bacteria.
  • Results showed high mortality rates (≥83.3%) in salmon infected with certain clades, indicating a genetic basis for the virulence of different strains, highlighting the need for further research on various fish models.*

Article Abstract

Edwardsiella piscicida is an emergent global fish pathogen with a wide host range, although host associations driving genetic diversity remain unclear. This study investigated the genetic and virulence diversity of 37 E. piscicida isolates recovered from 10 fish species in North America. Multilocus sequence analysis (MLSA) was conducted using concatenated alignments of the gyrB, pgi and phoU sequences. MLSA clustered the tested isolates into six discrete clades. In light of recent disease outbreaks in cultured salmonids, the virulence of each clade was evaluated in Chinook salmon Oncorhynchus tshawytscha fingerlings following intracoelomic challenge of ~10  CFU/fish. Challenged and control fish were monitored for 21d, and microbiological and histological examination was performed on dead and surviving fish. Peak mortality occurred 3-5 days post-challenge (dpc) regardless of isolate or genetic group. Edwardsiella piscicida was recovered from all moribund and dead animals. At 21 dpc, fish challenged with isolates from clades II, III and IV presented cumulative mortality ≥83.3%, whereas isolates from clade I, V and VI resulted in cumulative mortality ≤71.4%. This study suggests an underlying genetic basis for strain virulence and potential host associations. Further investigations using other fish models and variable challenge conditions are warranted.

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Source
http://dx.doi.org/10.1111/jfd.13509DOI Listing

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