Published December 1, 2021 | Version v1

Ecology and evolution of chlamydial symbionts of arthropods

  • 1. Centre for Microbiology and Environmental Systems Science, Division of Microbial Ecology, University of Vienna
  • 2. Royal Belgian Institute of Natural Sciences
  • 3. Department of Biology, University of Ljubljana

Description

The phylum Chlamydiae consists of obligate intracellular bacteria including major human pathogens and diverse environmental representatives. Here we investigated the Rhabdochlamydiaceae which is predicted to be the largest and most diverse chlamydial family, with the few known members infecting arthropod hosts. Using published 16S rRNA gene sequence data we identified at least 388 genus-level lineages containing about 14 051 putative species within this family. We show that rhabdochlamydiae are mainly found in freshwater and soil environments, suggesting the existence of diverse, yet unknown hosts. Next, we created a comprehensive genome dataset including metagenome assembled genomes classified as members of the family Rhabdochlamydiaceae, and we determined the genome sequences of two Rhabdochlamydia species, R. porcellionis infecting the woodlouse Porcellio scaber, and R. oedothoracis associated with the dwarf spider Oedothorax gibbosus. Comparative analysis of basic genome features and gene content with reference genomes of well-studied chlamydial families with known host ranges, namely Parachlamydiaceae (protist hosts) and Chlamydiaceae (human and other vertebrate hosts) suggested a distinct niche for members of the Rhabdochlamydiaceae. We propose that members of the family represent intermediate stages of adaptation of chlamydiae from protists to vertebrate hosts. Within the genus Rhabdochlamydia pronounced genome size reduction could be observed (1.49-1.93 Mb). The abundance and genomic distribution of transposases suggests transposable element expansion and subsequent gene inactivation as a mechanism of genome streamlining during adaptation to new hosts. Together, this study provides first insights into the molecular ecology, genomic diversity and evolution of representatives of one of the most successful chlamydial families.

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Additional details

Funding

FWF Austrian Science Fund
Towards functional ecology of environmental chlamydiae P 32112