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One to host them all: genomics of the diverse bacterial endosymbionts of the spider Oedothorax gibbosus

Bacterial endosymbionts of the groups Wolbachia , Cardinium and Rickettsiaceae are well known for their diverse effects on their arthropod hosts, ranging from mutualistic relationships to reproductive phenotypes. Here, we analysed a unique system in which the dwarf spider Oedothorax gibbosus is co-i...

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Autores principales: Halter, Tamara, Köstlbacher, Stephan, Rattei, Thomas, Hendrickx, Frederik, Manzano-Marín, Alejandro, Horn, Matthias
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Microbiology Society 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9997750/
https://www.ncbi.nlm.nih.gov/pubmed/36757767
http://dx.doi.org/10.1099/mgen.0.000943
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author Halter, Tamara
Köstlbacher, Stephan
Rattei, Thomas
Hendrickx, Frederik
Manzano-Marín, Alejandro
Horn, Matthias
author_facet Halter, Tamara
Köstlbacher, Stephan
Rattei, Thomas
Hendrickx, Frederik
Manzano-Marín, Alejandro
Horn, Matthias
author_sort Halter, Tamara
collection PubMed
description Bacterial endosymbionts of the groups Wolbachia , Cardinium and Rickettsiaceae are well known for their diverse effects on their arthropod hosts, ranging from mutualistic relationships to reproductive phenotypes. Here, we analysed a unique system in which the dwarf spider Oedothorax gibbosus is co-infected with up to five different endosymbionts affiliated with Wolbachia , ‘Candidatus Tisiphia’ (formerly Torix group Rickettsia ), Cardinium and Rhabdochlamydia . Using short-read genome sequencing data, we show that the endosymbionts are heterogeneously distributed among O. gibbosus populations and are frequently found co-infecting spider individuals. To study this intricate host–endosymbiont system on a genome-resolved level, we used long-read sequencing to reconstruct closed genomes of the Wolbachia , ‘Ca. Tisiphia’ and Cardinium endosymbionts. We provide insights into the ecology and evolution of the endosymbionts and shed light on the interactions with their spider host. We detected high quantities of transposable elements in all endosymbiont genomes and provide evidence that ancestors of the Cardinium , ‘Ca. Tisiphia’ and Wolbachia endosymbionts have co-infected the same hosts in the past. Our findings contribute to broadening our knowledge about endosymbionts infecting one of the largest animal phyla on Earth and show the usefulness of transposable elements as an evolutionary ‘contact-tracing’ tool.
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spelling pubmed-99977502023-03-10 One to host them all: genomics of the diverse bacterial endosymbionts of the spider Oedothorax gibbosus Halter, Tamara Köstlbacher, Stephan Rattei, Thomas Hendrickx, Frederik Manzano-Marín, Alejandro Horn, Matthias Microb Genom Research Articles Bacterial endosymbionts of the groups Wolbachia , Cardinium and Rickettsiaceae are well known for their diverse effects on their arthropod hosts, ranging from mutualistic relationships to reproductive phenotypes. Here, we analysed a unique system in which the dwarf spider Oedothorax gibbosus is co-infected with up to five different endosymbionts affiliated with Wolbachia , ‘Candidatus Tisiphia’ (formerly Torix group Rickettsia ), Cardinium and Rhabdochlamydia . Using short-read genome sequencing data, we show that the endosymbionts are heterogeneously distributed among O. gibbosus populations and are frequently found co-infecting spider individuals. To study this intricate host–endosymbiont system on a genome-resolved level, we used long-read sequencing to reconstruct closed genomes of the Wolbachia , ‘Ca. Tisiphia’ and Cardinium endosymbionts. We provide insights into the ecology and evolution of the endosymbionts and shed light on the interactions with their spider host. We detected high quantities of transposable elements in all endosymbiont genomes and provide evidence that ancestors of the Cardinium , ‘Ca. Tisiphia’ and Wolbachia endosymbionts have co-infected the same hosts in the past. Our findings contribute to broadening our knowledge about endosymbionts infecting one of the largest animal phyla on Earth and show the usefulness of transposable elements as an evolutionary ‘contact-tracing’ tool. Microbiology Society 2023-02-09 /pmc/articles/PMC9997750/ /pubmed/36757767 http://dx.doi.org/10.1099/mgen.0.000943 Text en © 2023 The Authors https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License.
spellingShingle Research Articles
Halter, Tamara
Köstlbacher, Stephan
Rattei, Thomas
Hendrickx, Frederik
Manzano-Marín, Alejandro
Horn, Matthias
One to host them all: genomics of the diverse bacterial endosymbionts of the spider Oedothorax gibbosus
title One to host them all: genomics of the diverse bacterial endosymbionts of the spider Oedothorax gibbosus
title_full One to host them all: genomics of the diverse bacterial endosymbionts of the spider Oedothorax gibbosus
title_fullStr One to host them all: genomics of the diverse bacterial endosymbionts of the spider Oedothorax gibbosus
title_full_unstemmed One to host them all: genomics of the diverse bacterial endosymbionts of the spider Oedothorax gibbosus
title_short One to host them all: genomics of the diverse bacterial endosymbionts of the spider Oedothorax gibbosus
title_sort one to host them all: genomics of the diverse bacterial endosymbionts of the spider oedothorax gibbosus
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9997750/
https://www.ncbi.nlm.nih.gov/pubmed/36757767
http://dx.doi.org/10.1099/mgen.0.000943
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