Placozoan microbiomes reveal evolutionary trajectories towards mutualism among the largely parasitic Rickettsiales
Mankowski, A.; Berndt, H.; Leisch, N.; Nakano, H.; Nishi, G.; Hadfield, M. G.; Huettel, B.; Enders, T.; Dubilier, N.; Gruber-Vodicka, H. R.
Show abstract
Rickettsiales are an enigmatic clade of strictly host-associated bacteria with some very common phylotypes in aquatic habitats. Despite amplicon- and metagenomic sequencing-based observations, the roles of these aquatic Rickettsiales are still unknown, as their genomes feature both beneficial and parasitic traits. In placozoans, microscopy-based observations of intracellular and Rickettsia-like-organisms point to Rickettsiales as common and abundant symbionts. We therefore systematically studied the microbiomes of placozoans to understand the eco-evolutionary dynamics of their associated Rickettsiales. Single-animal metagenomics revealed a widespread association of placozoans with Rickettsiales from three clades of Ca. Midichloriaceae, which were present in all but two placozoan lineages. A comparative phylogenetic analysis of placozoans and their Rickettsiales symbionts revealed host species-specific switches among Rickettsiales clades in several placozoan lineages. Our combination of evolutionary analyses, genome annotations, and expression data indicate different functional roles of these Rickettsiales clades, with some clearly diverging from a classical parasitic lifestyle by the loss of all ATP scavenging machinery. One of placozoan lineages that lacked Ca. Midichloriaceae was instead associated with Rickettsiaceae symbionts, while another was completely devoid of Rickettsiales symbionts. Our imaging data of fibre cells entirely free of Rickettsiales underscores previously unrecognized variation in placozoan-microbe associations. Early-branching invertebrates, including placozoans as well as many corals, are gaining increasing traction as emerging models across the life sciences. Our data and analyses show that it is important to consider the specific endosymbiont groups and their ecology in a given host, as these symbionts likely influence the hosts cellular and organismal biology.
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