Related Experiment Video
Updated: Sep 19, 2025

Sexual Crosses with the Mucoromycete Phycomyces blakesleeanus
Published on: June 6, 2025
Male-dependent resistance to Spiroplasma-induced cytoplasmic incompatibility
Marie Pollmann1,2,3, Ronja Reinisch2, Lea von Berg2,4
1Koret School of Veterinary Medicine, The Robert H. Smith Faculty of Agriculture, Food and Environment, Hebrew University of Jerusalem, Rehovot, Israel.
Abstract:
Cytoplasmic incompatibility (CI) caused by bacterial endosymbionts is an embryonic developmental failure between infected host males and uninfected females. Although even closely related hosts can have different CI phenotypes, little is known on the resistance mechanism in non-susceptible hosts. The parasitoid wasp species complex of Lariophagus distinguendus encompasses at least three species, termed clades A, B and C. All three species contain strains infected with the endosymbiotic bacterium Spiroplasma, which causes CI in clade A. We studied the relatedness of Spiroplasma in the species complex, the occurrence of CI in selected strains, and the effect of host strain and sex on CI induction. According to multi-locus sequence typing, all host species carry the same sDis strain. CI was absent in strains of clades B and C. Cross-transferring sDis revealed a male-dependent CI resistance in clade B. Together, this suggests a single infection event in the ancestor of all L. distinguendus clades. Some L. distinguendus strains are susceptible to CI, others are resistant. At least in one strain, resistance to CI is male-dependent, as theory predicts, supporting male-dependent traits as drivers for loss of CI-inducing bacteria. These results facilitate future studies on the mechanism of Spiroplasma-induced CI and its resistance.
Insights
Cytoplasmic incompatibility (CI) is an embryonic failure caused by bacteria. In Lariophagus distinguendus wasps, CI resistance is male-dependent in some strains, suggesting evolutionary drivers for bacterial loss.
Area of Science:
- Evolutionary biology
- Microbial genetics
- Insect-microbe interactions
Background:
- Cytoplasmic incompatibility (CI) causes embryonic failure between infected males and uninfected females.
- Mechanisms of CI resistance in non-susceptible hosts remain unclear.
- The parasitoid wasp Lariophagus distinguendus harbors Spiroplasma, a CI-inducing endosymbiont.
Purpose of the Study:
- Investigate Spiroplasma relatedness across L. distinguendus clades.
- Determine CI occurrence and host/sex effects on induction.
- Identify resistance mechanisms in non-susceptible wasp strains.
Main Methods:
- Multi-locus sequence typing (MLST) of Spiroplasma strains.
- CI assays across different host clades and sexes.
- Experimental cross-transfer of Spiroplasma strains.
Main Results:
- All L. distinguendus clades carry the same Spiroplasma strain (sDis).
- CI was observed in clade A but absent in clades B and C.
- Clade B exhibited male-dependent CI resistance, confirmed by cross-transfer experiments.
Conclusions:
- A single Spiroplasma infection event likely occurred in the ancestor of L. distinguendus clades.
- Male-dependent resistance is a key factor in the evolution of CI resistance.
- Findings provide a foundation for studying Spiroplasma-induced CI mechanisms and resistance.
Related Concept Videos
Bacterial Phylum Tenericutes
Endospores and Sporulation

