Two Populations of Mites (Tyrophagus putrescentiae) Differ in Response to Feeding on Feces-Containing Diets

Jan Hubert1, Marta Nesvorna1, Bruno Sopko1,2

  • 1Divison of Crop Protection and Plant Health, Crop Research Institute, Prague, Czechia.

Frontiers in Microbiology
|November 15, 2018
PubMed

Insights

House dust mites (Tyrophagus putrescentiae) can acquire gut bacteria through coprophagy. Feeding on feces enriched with Bartonella-like bacteria benefits mite populations, accelerating growth.

Area of Science:

  • Microbiology
  • Ecology
  • Entomology

Background:

  • Tyrophagus putrescentiae, a common mite in homes and stored products, harbors diverse bacterial communities, including intracellular symbionts and gut bacteria.
  • Microbial transmission via mite feces (coprophagy) is a potential but understudied mechanism for gut bacteria colonization across generations.
  • Soil-borne feces may act as a vector for spreading microorganisms.

Purpose of the Study:

  • To investigate the role of fecal bacteria in the diet of Tyrophagus putrescentiae.
  • To evaluate the impact of fecal extracts on mite respiration, nutrient content, population growth, and microbiome composition.
  • To determine if coprophagy influences bacterial acquisition and symbiont dynamics in mite populations.

Main Methods:

  • Two populations of T. putrescentiae (L and P), hosting Cardinium and Wolbachia respectively, were fed extracts from their own culture medium (feces, food, dead mites).
  • Effects on mite respiration, nutrient content, population growth, and microbiome composition were assessed.
  • Bacterial community composition in feces and mite guts was analyzed using sequencing.

Main Results:

  • Feces from population P were dominated by Bartonella-like sequences, while population L feces contained Staphylococcus, Virgibacillus, Brevibacterium, Enterobacteriaceae, and Bacillus.
  • Mites from population P showed increased respiration when fed fecal extracts, unlike population L mites.
  • Feeding on P-feces enriched diets increased Bartonella-like bacteria abundance (6% to 20%) and accelerated population growth fivefold in population P mites.

Conclusions:

  • The mite microbiome exhibits resistance to acquiring new bacterial species from conspecific feces.
  • Coprophagy of feces enriched with symbiotic Bartonella-like bacteria benefits T. putrescentiae populations harboring these symbionts.
  • Coprophagy serves as a significant mechanism for bacterial acquisition and maintenance in T. putrescentiae.

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