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Wolbachia Bacterial Infection in Drosophila
Published on: February 25, 2007
Evidence for horizontal transfer of Wolbachia by a Drosophila mite
1Department of Biology, Mount Allison University, 35B York St., Sackville, NB, E4L 1G7, Canada.
Abstract:
Mites are common ectoparasites of Drosophila and have been implicated in bacterial and mobile element invasion of Drosophila stocks. The obligate endobacterium, Wolbachia, has widespread effects on gene expression in their arthropod hosts and alters host reproduction to enhance its survival and propagation, often with deleterious effects in Drosophila hosts. To determine whether Wolbachia could be transferred between Drosophila melanogaster laboratory stocks by the mite Tyrophagus putrescentiae, mites were introduced to Wolbachia-infected Drosophila vials. These vials were kept adjacent to mite-free and Wolbachia-uninfected Drosophila stock vials. The Wolbachia infection statuses of the infected and uninfected flies were checked from generation 1 to 5. Results indicate that Wolbachia DNA could be amplified from mites infesting Wolbachia-infected fly stocks and infection in the previously uninfected stocks arose within generation 1 or 2, concomitant with invasion of mites from the Wolbachia-infected stock. A possible mechanism for the transfer of Wolbachia from flies to mites and vice versa, can be inferred from time-lapse photography of fly and mite interactions. We demonstrated that mites ingest Drosophila corpses, including Wolbachia-infected corpses, and Drosophila larva ingest mites, providing possible sources of Wolbachia infection and transfer. This research demonstrated that T. putrescentiae white mites can facilitate Wolbachia transfer between Drosophila stocks and that this may occur by ingestion of infected corpses. Mite-vectored Wolbachia transfer allows for rapid establishment of Wolbachia infection within a new population. This mode of Wolbachia introduction may be relevant in nature as well as in the laboratory, and could have a variety of biological consequences.
Insights
The mite Tyrophagus putrescentiae can transfer the endobacterium Wolbachia between Drosophila melanogaster stocks. This mite-vectored transfer occurs through ingestion of infected fly corpses, facilitating rapid Wolbachia spread.
Area of Science:
- * Arthropod biology
- * Microbial ecology
- * Parasitology
Background:
- * Mites are common ectoparasites of Drosophila, potentially facilitating pathogen and mobile element invasion.
- * Wolbachia, an obligate endobacterium, significantly impacts arthropod hosts, altering gene expression and reproduction, often detrimentally in Drosophila.
- * Understanding vector-mediated transmission is crucial for controlling Wolbachia spread in laboratory and natural populations.
Purpose of the Study:
- * To investigate the potential of the mite Tyrophagus putrescentiae to transfer Wolbachia between Drosophila melanogaster laboratory stocks.
- * To identify mechanisms of Wolbachia transmission facilitated by mites.
- * To assess the speed and implications of mite-vectored Wolbachia transfer.
Main Methods:
- * Mites were introduced to Wolbachia-infected Drosophila vials adjacent to uninfected stocks.
- * Wolbachia infection status was monitored in flies across five generations.
- * Time-lapse photography documented mite-fly interactions, including corpse ingestion and larval predation.
Main Results:
- * Wolbachia DNA was detected in mites from infected Drosophila stocks.
- * Uninfected Drosophila stocks acquired Wolbachia within 1-2 generations following mite introduction.
- * Mites were observed ingesting infected Drosophila corpses, and fly larvae were seen ingesting mites.
Conclusions:
- * Tyrophagus putrescentiae mites effectively facilitate Wolbachia transfer between Drosophila stocks.
- * Ingestion of infected corpses by mites and subsequent interactions with flies represent a key transmission mechanism.
- * Mite-vectored Wolbachia transfer enables rapid population-level infection, with potential ecological and laboratory relevance.

