Identification of Parthenogenesis-Inducing Effector Proteins in Wolbachia

Author:

Fricke Laura C1,Lindsey Amelia R I1ORCID

Affiliation:

1. Department of Entomology, University of Minnesota , St. Paul, MN 55108 , USA

Abstract

Abstract Bacteria in the genus Wolbachia have evolved numerous strategies to manipulate arthropod sex, including the conversion of would-be male offspring to asexually reproducing females. This so-called “parthenogenesis induction” phenotype can be found in a number of Wolbachia strains that infect arthropods with haplodiploid sex determination systems, including parasitoid wasps. Despite the discovery of microbe-mediated parthenogenesis more than 30 yr ago, the underlying genetic mechanisms have remained elusive. We used a suite of genomic, computational, and molecular tools to identify and characterize two proteins that are uniquely found in parthenogenesis-inducing Wolbachia and have strong signatures of host-associated bacterial effector proteins. These putative parthenogenesis-inducing proteins have structural homology to eukaryotic protein domains including nucleoporins, the key insect sex determining factor Transformer, and a eukaryotic-like serine–threonine kinase with leucine-rich repeats. Furthermore, these proteins significantly impact eukaryotic cell biology in the model Saccharomyces cerevisiae. We suggest that these proteins are parthenogenesis-inducing factors and our results indicate that this would be made possible by a novel mechanism of bacterial-host interaction.

Publisher

Oxford University Press (OUP)

Reference71 articles.

1. Modulation of Rho GTPases and the actin cytoskeleton by YopT of Yersinia;Aepfelbacher;Curr Top Microbiol Immunol,2005

2. A suite of gateway® cloning vectors for high-throughput genetic analysis in Saccharomyces cerevisiae;Alberti;Yeast,2007

3. Polo-like kinase-activating kinases: aurora A, Aurora B and what else?;Archambault;Cell Cycle,2012

4. Accurate prediction of protein structures and interactions using a three-track neural network;Baek;Science,2021

5. A Wolbachia deubiquitylating enzyme induces cytoplasmic incompatibility;Beckmann;Nat Microbiol,2017

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