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Published on: November 16, 2014
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.
Abstract:
Background: Tyrophagus putrescentiae is a ubiquitous mite species in soil, stored products and house dust and infests food and causes allergies in people. T. putrescentiae populations harbor different bacterial communities, including intracellular symbionts and gut bacteria. The spread of microorganisms via the fecal pellets of T. putrescentiae is a possibility that has not been studied in detail but may be an important means by which gut bacteria colonize subsequent generations of mites. Feces in soil may be a vector for the spread of microorganisms. Methods: Extracts from used mite culture medium (i.e., residual food, mite feces, and dead mite bodies) were used as a source of feces-inhabiting microorganisms as food for the mites. Two T. putrescentiae populations (L and P) were used for experiments, and they hosted the intracellular bacteria Cardinium and Wolbachia, respectively. The effects of the fecal fraction on respiration in a mite microcosm, mite nutrient contents, population growth and microbiome composition were evaluated. Results: Feces from the P population comprised more than 90% Bartonella-like sequences. Feces from the L population feces hosted Staphylococcus, Virgibacillus, Brevibacterium, Enterobacteriaceae, and Bacillus. The mites from the P population, but not the L population, exhibited increased bacterial respiration in the microcosms in comparison to no-mite controls. Both L- and P-feces extracts had an inhibitory effect on the respiration of the microcosms, indicating antagonistic interactions within feces-associated bacteria. The mite microbiomes were resistant to the acquisition of new bacterial species from the feces, but their bacterial profiles were affected. Feeding of P mites on P-feces-enriched diets resulted in an increase in Bartonella abundance from 6 to 20% of the total bacterial sequences and a decrease in Bacillus abundance. The population growth was fivefold accelerated on P-feces extracts in comparison to the control. Conclusion: The mite microbiome, to a certain extent, resists the acquisition of new bacteria when mites are fed on feces of the same species. However, a Bartonella-like bacteria-feces-enriched diet seems to be beneficial for mite populations with symbiotic Bartonella-like bacteria. Coprophagy on the feces of its own population may be a mechanism of bacterial acquisition in T. putrescentiae.
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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