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Mackevicius-Dubickaja, V.

Publications and source records attributed to Mackevicius-Dubickaja, V..

2 recordsLinked to original sources

Wolbachia feminizes a spider host with assistance from co-infecting symbionts

Arthropods commonly harbor maternally-transmitted bacterial endosymbionts that manipulate host biology. Multiple heritable symbionts can co-infect the same individual, allowing these host-restricted bacteria to engage in cooperation or conflict, which can ultimately affect host phenotype. The spider Mermessus fradeorum is variably infected with up to five heritable symbionts: Rickettsiella (R), Tisiphia (T), and three strains of Wolbachia (W1-3). Quintuply infected spiders are feminized, causing genetic males to develop as phenotypic females and produce almost exclusively female offspring. By comparing feminization across nine infection combinations, we identified a feminizing strain of Wolbachia, W1. We also observed that spiders infected with both W1 and W3 produced [~]10% more females than those lacking W3. This increase in feminization rate does not seem to be due to direct changes in W1 titer, nor does W1 titer correlate with feminization rate. Instead, we observed subtle titer interactions among symbionts, with lower relative abundance of R and T symbionts in strongly feminized infections. This synergistic effect of co-infection on Wolbachia feminization may help promote the spread of all five symbionts in spider populations. These results confirm the first instance of Wolbachia-induced feminization in spiders and demonstrate that co-infecting symbionts can improve the efficacy of symbiont-induced feminization.

ecology↗

Warm temperature inhibits cytoplasmic incompatibility induced by endosymbiotic Rickettsiella in a spider host

Bacterial endosymbionts manipulate reproduction in arthropods to increase prevalence in the host population. One such manipulation is cytoplasmic incompatibility (CI), wherein the bacteria sabotage sperm in infected males to reduce hatch rate when mated with uninfected females, but zygotes are "rescued" when that male mates with an infected female. In the spider Mermessus fradeorum (Linyphiidae), Rickettsiella symbionts cause variable levels of CI. We hypothesized that temperature affects CI strength and rescue in M. fradeorum, potentially mediated by bacterial titer. We reared Rickettsiella-infected spiders in two temperature conditions (26{degrees}C vs 20{degrees}C) and tested CI induction in males and CI rescue in females. In incompatible crosses between infected males and uninfected females, hatch rate from warm males was doubled (Mean{+/-}S.E. = 0.687{+/-}0.052) relative to cool males (0.348{+/-}0.046), indicating that CI induction is weaker in warm males. In rescue crosses between infected females and infected males, female rearing temperature had a marginal effect on CI rescue, but hatch rate remained high for both warm (0.960{+/-}0.023) and cool females (0.994{+/-}0.004). Bacterial titer as measured by qPCR was lower in warm than cool spiders, particularly in females, suggesting that bacterial titer may play a role in causing the temperature-mediated changes in CI.

ecology↗