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Updated: Aug 25, 2026

Wolbachia Bacterial Infection in Drosophila
Published on: February 25, 2007
Wolbachia pipientis: intracellular infection and pathogenesis in Drosophila
Elizabeth A McGraw1, Scott L O'Neill
1Department of Zoology and Entomology, School of Life Sciences, The University of Queensland, Brisbane QLD 4072, Australia.
Abstract:
Wolbachia pipientis is a vertically transmitted, obligate intracellular symbiont of arthropods. The bacterium is best known for its ability to manipulate host reproductive biology where it can induce cytoplasmic incompatibility, parthenogenesis, feminization and male-killing. In addition to the various reproductive phenotypes it generates through interaction with host reproductive tissue it is also known to infect somatic tissues. However, relatively little is known about the consequences of infection of these tissues with the exception that in some hosts Wolbachia acts as a classical mutualist and in others a pathogen, dramatically shortening adult insect lifespan. Manipulation experiments have demonstrated that the severity of Wolbachia-induced effects on the host is determined by a combination of host genotype, Wolbachia strain, host tissue localization, and interaction with the environment. The recent completion of the whole genome sequence of Wolbachia pipientis wMel strain indicates that it is likely to use a type IV secretion system to establish and maintain infection in its host. Moreover, an unusual abundance of genes encoding proteins with eukaryotic-like ankyrin repeat domains suggest a function in the various described phenotypic effects in hosts.
Insights
Wolbachia pipientis, an intracellular bacterium, manipulates arthropod reproduction and can infect somatic tissues. Its impact varies, influenced by host, bacterium strain, and environment.
Area of Science:
- Microbiology
- Genetics
- Insect Biology
Background:
- Wolbachia pipientis is an obligate intracellular symbiont in arthropods.
- It is known for manipulating host reproduction (cytoplasmic incompatibility, parthenogenesis, feminization, male-killing).
- Wolbachia also infects somatic tissues, with varied consequences ranging from mutualism to pathogenesis.
Purpose of the Study:
- To explore the consequences of Wolbachia infection in arthropod somatic tissues.
- To understand the genetic basis of Wolbachia's phenotypic effects on hosts.
Main Methods:
- Analysis of the Wolbachia pipientis wMel strain genome.
- Review of manipulation experiments investigating host-symbiont interactions.
Main Results:
- The wMel genome suggests a type IV secretion system for infection establishment.
- Abundant eukaryotic-like ankyrin repeat domain proteins may mediate phenotypic effects.
- Host genotype, Wolbachia strain, tissue localization, and environment determine infection severity.
Conclusions:
- Wolbachia's impact on hosts is complex and multifactorial.
- Genomic insights point to specific mechanisms for host interaction and manipulation.

