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Updated: Mar 21, 2026

Measuring and Altering Mating Drive in Male Drosophila melanogaster
Published on: February 15, 2017
Male-Killing Spiroplasma Alters Behavior of the Dosage Compensation Complex during Drosophila melanogaster
Becky Cheng1, Nitin Kuppanda1, John C Aldrich1
1W.M. Keck Science Department, Claremont McKenna, Pitzer and Scripps Colleges, 925 N. Mills Avenue, Claremont, CA 91711, USA.
Abstract:
Numerous arthropods harbor maternally transmitted bacteria that induce the preferential death of males [1-7]. This sex-specific lethality benefits the bacteria because males are "dead ends" regarding bacterial transmission, and their absence may result in additional resources for their viable female siblings who can thereby more successfully transmit the bacteria [5]. Although these symbionts disrupt a range of developmental processes [8-10], the underlying cellular mechanisms are largely unknown. It was previously shown that mutations in genes of the dosage compensation pathway of Drosophila melanogaster suppressed male killing caused by the bacterium, Spiroplasma [10]. This result suggested that dosage compensation is a target of Spiroplasma. However, it remains unclear how this pathway is affected, and whether the underlying interactions require the male-specific cellular environment. Here, we investigated the cellular basis of male embryonic lethality in D. melanogaster induced by Spiroplasma. We found that the dosage compensation complex (DCC), which acetylates X chromatin in males [11], becomes mis-localized to ectopic regions of the nucleus immediately prior to the killing phase. This effect was accompanied by inappropriate histone acetylation and genome-wide mis-regulation of gene expression. Artificially induced formation of the DCC in infected females, through transgenic expression of the DCC-specific gene msl-2, resulted in mis-localization of this complex to non-X regions and early Spiroplasma-induced death, mirroring the killing effects in males. These findings strongly suggest that Spiroplasma initiates male killing by targeting the dosage compensation machinery directly and independently of other cellular features characteristic of the male sex.
Insights
Spiroplasma bacteria kill male Drosophila embryos by targeting the dosage compensation complex (DCC). This complex mis-localizes, causing widespread gene misregulation and male death, independent of male-specific cellular environments.
Area of Science:
- Microbiology
- Genetics
- Developmental Biology
Background:
- Maternally transmitted bacteria in arthropods can cause male-specific lethality.
- This phenomenon benefits bacteria by increasing female sibling resources and transmission success.
- The cellular mechanisms behind this sex-specific lethality remain largely unknown.
Purpose of the Study:
- To investigate the cellular basis of male embryonic lethality induced by Spiroplasma in Drosophila melanogaster.
- To determine if Spiroplasma targets the dosage compensation pathway and how.
Main Methods:
- Examined the localization of the dosage compensation complex (DCC) in male Drosophila embryos infected with Spiroplasma.
- Assessed histone acetylation and gene expression patterns.
- Experimentally induced DCC formation in female Drosophila to observe effects.
Main Results:
- The DCC mis-localized to ectopic nuclear regions before male embryo death.
- This mis-localization correlated with aberrant histone acetylation and genome-wide gene expression changes.
- Artificial DCC formation in females led to similar Spiroplasma-induced lethality.
Conclusions:
- Spiroplasma directly targets the dosage compensation machinery to induce male embryonic lethality.
- The targeting mechanism is independent of other male-specific cellular features.
- Dosage compensation is a critical factor in Spiroplasma-mediated sex-specific killing.
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