International Journal of Molecular Sciences (Dec 2022)

New <i>Wolbachia pipientis</i> Genotype Increasing Heat Stress Resistance of <i>Drosophila melanogaster</i> Host Is Characterized by a Large Chromosomal Inversion

  • Aleksandra E. Korenskaia,
  • Olga D. Shishkina,
  • Alexandra I. Klimenko,
  • Olga V. Andreenkova,
  • Margarita A. Bobrovskikh,
  • Natalja V. Shatskaya,
  • Gennady V. Vasiliev,
  • Nataly E. Gruntenko

DOI
https://doi.org/10.3390/ijms232416212
Journal volume & issue
Vol. 23, no. 24
p. 16212

Abstract

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The maternally transmitted endocellular bacteria Wolbachia is a well-known symbiont of insects, demonstrating both negative and positive effects on host fitness. The previously found Wolbachia strain wMelPlus is characterized by a positive effect on the stress-resistance of its host Drosophila melanogaster, under heat stress conditions. This investigation is dedicated to studying the genomic underpinnings of such an effect. We sequenced two closely related Wolbachia strains, wMelPlus and wMelCS112, assembled their complete genomes, and performed comparative genomic analysis engaging available Wolbachia genomes from the wMel and wMelCS groups. Despite the two strains under study sharing very close gene-composition, we discovered a large (>1/6 of total genome) chromosomal inversion in wMelPlus, spanning through the region that includes the area of the inversion earlier found in the wMel group of Wolbachia genotypes. A number of genes in unique inversion blocks of wMelPlus were identified that might be involved in the induction of a stress-resistant phenotype in the host. We hypothesize that such an inversion could rearrange established genetic regulatory-networks, causing the observed effects of such a complex fly phenotype as a modulation of heat stress resistance. Based on our findings, we propose that wMelPlus be distinguished as a separate genotype of the wMelCS group, named wMelCS3.

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