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      Response of a kleptoplastidic foraminifer to heterotrophic starvation: photosynthesis and lipid droplet biogenesis.

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          Abstract

          The aim of this work is to document the complex nutritional strategy developed by kleptoplastic intertidal foraminifera. We study the mixotrophic ability of a common intertidal foraminifer, Elphidium williamsoni, by (i) investigating the phylogenetic identity of the foraminiferal kleptoplasts, (ii) following their oxygenic photosynthetic capacity and (iii) observing the modification in cellular ultrastructural features in response to photoautotrophic conditions. This was achieved by coupling molecular phylogenetic analyses and TEM observations with non-destructive measurements of kleptoplast O2 production over a 15-day experimental study. Results show that the studied E. williamsoni actively selected kleptoplasts mainly from pennate diatoms and had the ability to produce oxygen, up to 13.4 nmol O2 cell-1 d-1, from low to relatively high irradiance over at least 15 days. Ultrastructural features and photophysiological data showed significant differences over time, the number of lipid droplets, residual bodies and the dark respiration increased; whereas, the number of kleptoplasts decreased accompanied by a minor decrease of the photosynthetic rate. These observations suggest that in E. williamsoni kleptoplasts might provide extra carbon storage through lipid droplets synthesis and highlight the complexity of E. williamsoni feeding strategy and the necessity of further dedicated studies regarding mechanisms developed by kleptoplastidic foraminifera for carbon partitioning and storage.

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          Author and article information

          Journal
          FEMS Microbiol Ecol
          FEMS microbiology ecology
          Oxford University Press (OUP)
          1574-6941
          0168-6496
          May 01 2019
          : 95
          : 5
          Affiliations
          [1 ] UMR CNRS 6112 LPG-BIAF, Bio-Indicateurs Actuels et Fossiles, Université d'Angers, 2 Boulevard Lavoisier, 49045 Angers CEDEX 1, France.
          [2 ] Ifremer, RBE/LEAD, 101 Promenade Roger Laroque, 98897 Nouméa, New Caledonia, France.
          [3 ] EA2160, Laboratoir Mer Molécules Santé, 2 rue de la Houssinière, Université de Nantes, 4433 Nantes Cedex 1, France.
          Article
          5427914
          10.1093/femsec/fiz046
          30947330
          62070052-41ec-45d3-ad29-eb036443a6f9
          © FEMS 2019.
          History

          DNA barcoding,electron microscopy,foraminifera,kleptoplasty,lipids

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