Related Experiment Video
Updated: Dec 30, 2025

Generation of Monoclonal Cultures from Wolbachia-infected Drosophila melanogaster JW18 Cell Line
Published on: June 27, 2025
Transgenic Testing Does Not Support a Role for Additional Candidate Genes in Wolbachia Male Killing or Cytoplasmic
Jessamyn I Perlmutter1,2, Jane E Meyers1,2, Seth R Bordenstein3,2,4,5
1Department of Biological Sciences, Vanderbilt University, Nashville, Tennessee, USA.
Abstract:
Endosymbiotic bacteria in the genus Wolbachia remarkably infect nearly half of all arthropod species. They spread in part because of manipulations of host sexual reproduction that enhance the maternal transmission of the bacteria, including male killing (death of infected males) and unidirectional cytoplasmic incompatibility (CI; death of offspring from infected fathers and uninfected mothers). Recent discoveries identified several genes in prophage WO of Wolbachia (wmk, cifA, and cifB) that fully or partially recapitulate male killing or CI when transgenically expressed in Drosophila melanogaster However, it is not yet fully resolved if other gene candidates contribute to these phenotypes. Here, we transgenically tested 10 additional gene candidates for their involvement in male killing and/or CI. The results show that despite sequence and protein architecture similarities or comparative associations with reproductive parasitism, transgenic expression of the candidates does not recapitulate male killing or CI. Sequence analysis across Wmk and its closest relatives reveals amino acids that may be important to its function. In addition, evidence is presented to propose new hypotheses regarding the relationship between wmk transcript length and its ability to kill a given host, as well as copy number of wmk homologs within a bacterial strain, which may be predictive of host resistance. Together, these analyses continue to build the evidence for identification of wmk, cifA, and cifB as the major genes that have thus far been shown to cause reproductive parasitism in Wolbachia, and the transgenic resources provide a basis for further functional study of phage WO genes.IMPORTANCE Wolbachia are widespread bacterial endosymbionts that manipulate the reproduction of diverse arthropods to spread through a population and can substantially shape host evolution. Recently, reports identified three prophage WO genes (wmk, cifA, and cifB) that transgenically recapitulate many aspects of reproductive manipulation in Drosophila melanogaster Here, we transgenically tested 10 additional gene candidates for CI and/or male killing in flies. The results yield no evidence for the involvement of these gene candidates in reproductive parasitism, bolstering the evidence for identification of the cif and wmk genes as the major factors involved in their phenotypes. In addition, evidence supports new hypotheses for prediction of male-killing phenotypes or lack thereof based on wmk transcript length and copy number. These experiments inform efforts to understand the full basis of reproductive parasitism for basic and applied purposes and lay the foundation for future work on the function of an interesting group of Wolbachia and phage WO genes.
Insights
Wolbachia bacteria manipulate host reproduction through genes like wmk, cifA, and cifB. Further testing of 10 other gene candidates did not reveal involvement in male killing or cytoplasmic incompatibility.
Area of Science:
- Microbiology
- Genetics
- Evolutionary Biology
Background:
- Wolbachia are endosymbiotic bacteria found in nearly half of all arthropod species.
- They manipulate host reproduction, including male killing and cytoplasmic incompatibility (CI), to enhance their transmission.
- Previous research identified wmk, cifA, and cifB genes from prophage WO as key players in these reproductive manipulations.
Purpose of the Study:
- To investigate the role of 10 additional gene candidates in Wolbachia-mediated male killing and CI.
- To further elucidate the genetic basis of reproductive parasitism in Wolbachia.
- To explore potential predictive markers for male-killing phenotypes.
Main Methods:
- Transgenic expression of 10 candidate genes in Drosophila melanogaster.
- Analysis of male killing and cytoplasmic incompatibility phenotypes.
- Sequence analysis of Wmk and related proteins.
- Investigation of wmk transcript length and copy number.
Main Results:
- Transgenic expression of the 10 tested gene candidates did not recapitulate male killing or CI.
- Sequence analysis identified potentially important amino acids in Wmk.
- Evidence suggests wmk transcript length and copy number may predict host resistance or male-killing phenotypes.
Conclusions:
- The study reinforces wmk, cifA, and cifB as the primary genes responsible for Wolbachia's reproductive parasitism.
- The tested candidate genes are unlikely to contribute significantly to these phenotypes.
- New hypotheses regarding wmk transcript length and copy number offer insights into predicting host responses and bacterial strain characteristics.

