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High-Throughput Transcriptome Analysis for Investigating Host-Pathogen Interactions
Published on: March 5, 2022
Transcriptome Sequencing Reveals Novel Candidate Genes for Cardinium hertigii-Caused Cytoplasmic Incompatibility and
Evelyne Mann1, Corinne M Stouthamer2, Suzanne E Kelly2
1Institute for Milk Hygiene, Milk Technology and Food Science, University of Veterinary Medicine, Vienna, Austria.
Insights
Cytoplasmic incompatibility (CI) causes reproductive failure in arthropods. This study reveals that Cardinium and Wolbachia bacteria use different genes to induce CI, though they may target similar host pathways.
Area of Science:
- Microbiology
- Evolutionary Biology
- Genetics
Background:
- Cytoplasmic incompatibility (CI) is a symbiont-induced reproductive failure affecting arthropod offspring production.
- While Wolbachia is a well-studied CI-inducing symbiont, Cardinium (Bacteroidetes) is another known CI agent that evolved this trait independently.
- Understanding the molecular mechanisms of CI in Cardinium is crucial for comprehending symbiont-host interactions and reproductive manipulation.
Purpose of the Study:
- To conduct the first transcriptomic study of the CI-inducing Cardinium strain cEper1 in its natural host, Encarsia suzannae.
- To identify candidate genes and pathways involved in the insect-Cardinium symbiosis and CI induction.
- To compare the genetic basis of CI between Cardinium and Wolbachia.
Main Methods:
- Transcriptomic analysis of Cardinium cEper1 within Encarsia suzannae.
- Identification of highly expressed transcripts, including those related to host manipulation.
- Analysis of female-biased gene expression patterns.
Main Results:
- Highly expressed Cardinium transcripts were identified, including genes involved in ubiquitination, apoptosis, and host DNA manipulation.
- Female-biased expression of ribosomal protein genes suggests increased translational activity in female wasps.
- Confirmation that Cardinium and Wolbachia utilize distinct sets of genes to induce CI.
Conclusions:
- Cardinium and Wolbachia employ different genetic mechanisms to achieve CI.
- Both symbionts may converge on similar host pathways for reproductive manipulation.
- This study provides the first transcriptomic insights into Cardinium and advances our understanding of CI evolution.
Abstract:
Cytoplasmic incompatibility (CI) is an intriguing, widespread, symbiont-induced reproductive failure that decreases offspring production of arthropods through crossing incompatibility of infected males with uninfected females or with females infected with a distinct symbiont genotype. For years, the molecular mechanism of CI remained unknown. Recent genomic, proteomic, biochemical, and cell biological studies have contributed to understanding of CI in the alphaproteobacterium Wolbachia and implicate genes associated with the WO prophage. Besides a recently discovered additional lineage of alphaproteobacterial symbionts only moderately related to Wolbachia, Cardinium (Bacteroidetes) is the only other symbiont known to cause CI, and genomic evidence suggests that it has very little homology with Wolbachia and evolved this phenotype independently. Here, we present the first transcriptomic study of the CI Cardinium strain cEper1, in its natural host, Encarsia suzannae, to detect important CI candidates and genes involved in the insect-Cardinium symbiosis. Highly expressed transcripts included genes involved in manipulating ubiquitination, apoptosis, and host DNA. Female-biased genes encoding ribosomal proteins suggest an increase in general translational activity of Cardinium in female wasps. The results confirm previous genomic analyses that indicated that Wolbachia and Cardinium utilize different genes to induce CI, and transcriptome patterns further highlight expression of some common pathways that these bacteria use to interact with the host and potentially cause this enigmatic and fundamental manipulation of host reproduction. IMPORTANCE The majority of insects carry maternally inherited intracellular bacteria that are important in their hosts' biology, ecology, and evolution. Some of these bacterial symbionts cause a reproductive failure known as cytoplasmic incompatibility (CI). In CI, the mating of symbiont-infected males and uninfected females produces few or no daughters. The CI symbiont then spreads and can have a significant impact on the insect host population. Cardinium, a bacterial endosymbiont of the parasitoid wasp Encarsia in the Bacteroidetes, is the only bacterial lineage known to cause CI outside the Alphaproteobacteria, where Wolbachia and another recently discovered CI symbiont reside. Here, we sought insight into the gene expression of a CI-inducing Cardinium strain in its natural host, Encarsia suzannae. Our study provides the first insights into the Cardinium transcriptome and provides support for the hypothesis that Wolbachia and Cardinium target similar host pathways with distinct and largely unrelated sets of genes.
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