Nephromyces represents a diverse and novel lineage of the Apicomplexa that has retained apicoplasts

Author:

Muñoz-Gómez Sergio A12,Durnin Keira12,Eme Laura3,Paight Christopher4,Lane Christopher E4,Saffo Mary B5,Slamovits Claudio H12

Affiliation:

1. Department of Biochemistry and Molecular Biology; Dalhousie University; Halifax, Nova Scotia, Canada

2. Centre for Comparative Genomics and Evolutionary Bioinformatics; Dalhousie University; Halifax, Nova Scotia, Canada

3. Department of Cell and Molecular Biology, Science for Life Laboratory, Uppsala University, Uppsala, Sweden

4. Department of Biological Sciences, University of Rhode Island, Kingston, RI, USA

5. Smithsonian National Museum of Natural History, Washington, DC, USA

Abstract

Abstract A most interesting exception within the parasitic Apicomplexa is Nephromyces, an extracellular, probably mutualistic, endosymbiont found living inside molgulid ascidian tunicates (i.e., sea squirts). Even though Nephromyces is now known to be an apicomplexan, many other questions about its nature remain unanswered. To gain further insights into the biology and evolutionary history of this unusual apicomplexan, we aimed to (1) find the precise phylogenetic position of Nephromyces within the Apicomplexa, (2) search for the apicoplast genome of Nephromyces, and (3) infer the major metabolic pathways in the apicoplast of Nephromyces. To do this, we sequenced a metagenome and a metatranscriptome from the molgulid renal sac, the specialized habitat where Nephromyces thrives. Our phylogenetic analyses of conserved nucleus-encoded genes robustly suggest that Nephromyces is a novel lineage sister to the Hematozoa, which comprises both the Haemosporidia (e.g., Plasmodium) and the Piroplasmida (e.g., Babesia and Theileria). Furthermore, a survey of the renal sac metagenome revealed 13 small contigs that closely resemble the genomes of the non-photosynthetic reduced plastids, or apicoplasts, of other apicomplexans. We show that these apicoplast genomes correspond to a diverse set of most closely related but genetically divergent Nephromyces lineages that co-inhabit a single tunicate host. In addition, the apicoplast of Nephromyces appears to have retained all biosynthetic pathways inferred to have been ancestral to parasitic apicomplexans. Our results shed light on the evolutionary history of the only probably mutualistic apicomplexan known, Nephromyces, and provide context for a better understanding of its life style and intricate symbiosis.

Publisher

Oxford University Press (OUP)

Subject

Genetics,Ecology, Evolution, Behavior and Systematics

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