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Enterococcus-like infections in Macrobrachium rosenbergii are exacerbated by high pH and temperature but reduced by

W Cheng1, J C Chen

  • 1Department of Aquaculture, National Taiwan Ocean University, Keelung, ROC.

Insights

Environmental factors like high pH and temperature increase mortality in Macrobrachium rosenbergii challenged with an enterococcus-like bacterium. Conversely, low salinity may improve prawn survival rates.

Area of Science:

  • Aquatic animal health
  • Microbiology
  • Environmental science

Background:

  • Macrobrachium rosenbergii (giant freshwater prawn) aquaculture faces significant losses due to bacterial diseases.
  • An enterococcus-like bacterium (strain KM002) has been identified as a primary cause of mortality.

Purpose of the Study:

  • To investigate the impact of varying environmental conditions (pH, salinity, temperature) on the pathogenicity of an enterococcus-like bacterium in Macrobrachium rosenbergii.
  • To determine how environmental factors influence disease progression and mortality rates in challenged prawns.

Main Methods:

  • Macrobrachium rosenbergii were challenged with different doses of enterococcus-like bacterium (strain KM002).
  • Experiments were conducted across a range of pH (4.6–9.5), salinity (0–15 ppt), and temperature (27–34°C) levels.
  • Survival rates were monitored under various challenge doses and environmental conditions.

Main Results:

  • Mortality onset was faster and cumulative mortality higher at elevated pH levels (8.8–9.5).
  • Salinity impacts varied, with 0 ppt and 15 ppt showing 100% mortality, while intermediate salinities (5–10 ppt) offered some protection.
  • Higher temperatures (33–34°C) exacerbated mortality, especially at higher pH levels, while 30–31°C showed increased survival.

Conclusions:

  • Environmental parameters, particularly high pH and temperature, significantly exacerbate mortality in Macrobrachium rosenbergii infected with this enterococcus-like bacterium.
  • Low salinity conditions appear to have a protective effect on prawn survival.
  • Further research is required to elucidate the specific mechanisms behind these environmental influences on disease susceptibility.

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