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A Novel Alveolate in Bivalves with Chemosynthetic Bacteria Inhabiting Deep‐Sea Methane Seeps
Authors:Fumiya Noguchi  Masaru Kawato  Takao Yoshida  Yoshihiro Fujiwara  Katsunori Fujikura  Kiyotaka Takishita
Affiliation:1. Japan Agency for Marine‐Earth Science and Technology (JAMSTEC), , Kanagawa, 237‐0061 Japan;2. Graduate School of Marine Science and Technology, Tokyo University of Marine Science and Technology, , Tokyo, 108‐8477 Japan
Abstract:It has recently been unveiled that a wide variety of microbial eukaryotes (protists) occur in chemosynthetic ecosystems, such as hydrothermal vents and methane seeps. However, there is little knowledge regarding protists associated with endemic animals inhabiting these environments. In the present study, utilizing PCR techniques, we detected fragments of the small subunit ribosomal RNA gene (SSU rRNA gene) from a particular protist from gill tissues of a significant fraction of the vesicomyid clams Calyptogena soyoae and C. okutanii complex and of the mussel Bathymodiolus platifrons and B. japonicus, all of which harbor chemosynthetic endosymbiont bacteria and dominate methane seeps in Sagami Bay, Japan. Based on the phylogeny of SSU rRNA gene, the organism in question was shown to belong to Alveolata. It is noteworthy that this protist did not affiliate with any known alveolate group, although being deeply branched within the lineage of Syndiniales, for which the monophyly was constantly recovered, but not robustly supported. In addition, the protist detected using PCR followed by sequencing was localized within gill epithelial cells of B. platifrons with whole‐mount fluorescence in situ hybridization. This protist may be an endoparasite or an endocommensal of Calyptogena spp. and Bathymodiolus spp., and possibly have physiological and ecological impacts on these bivalves.
Keywords:Bacteriocyte     Bathymodiolus        Calyptogena     chemosynthetic ecosystems  commensalism  molecular phylogeny  parasitism  ribosomal RNA  Syndiniales
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