Selective protein self-deprivation by Mormon crickets following fungal attack

Robert B Srygley1

  • 1USDA-Agricultural Research Service, Northern Plains Agricultural Research Laboratory, 1500 N. Central Ave., Sidney, MT 59270, USA.

PubMed

Insights

Fungal infection in Mormon crickets increases phenoloxidase (PO) immune response but reduces protein consumption, contrary to expectations. This dietary shift may limit fungal growth or compromise host immunity, impacting insect behavior and survival.

Area of Science:

  • Insect pathology
  • Animal behavior
  • Immunology

Background:

  • Mormon crickets exhibit behavioral changes during infection, including altered resource acquisition.
  • Insects infected with the fungus Beauveria bassiana show reduced circulating phenoloxidase (PO) and increased susceptibility to fungal attack.
  • Protein acquisition influences aggression in Mormon cricket bands.

Purpose of the Study:

  • To investigate whether Mormon crickets elevate PO and alter protein consumption in response to Beauveria bassiana infection.
  • To determine the relationship between protein consumption, immune response, and survivorship to fungal infection.

Main Methods:

  • Beauveria bassiana was applied topically to Mormon crickets.
  • Hemolymph was collected on days 1 and 4 post-infection to assay total protein, PO, and proPO.
  • Insect feeding behavior (protein and carbohydrate consumption) was monitored.

Main Results:

  • PO titers increased in infected crickets by day 4, while proPO remained unchanged.
  • Circulating protein levels declined in infected insects.
  • Infected insects reduced protein consumption, especially in the first three days post-infection, and later reduced carbohydrate intake.
  • Survivorship was positively correlated with protein consumption.

Conclusions:

  • Fungal infection elevates the PO immune response but leads to reduced protein intake in Mormon crickets.
  • This selective protein deprivation may be a host strategy to limit fungal growth or a manipulation by the fungus.
  • Altered feeding behavior, particularly reduced protein acquisition, could decrease cannibalism and slow band movement.

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