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Trophic state alters the mechanism whereby energetic coupling between photosynthesis and respiration occurs in Euglena gracilis.
Gain, Gwenaëlle; Vega de Luna, Félix; Cordoba, Javier; Perez, Emilie; Degand, Hervé; Morsomme, Pierre; Thiry, Marc; Baurain, Denis; Pierangelini, Mattia; Cardol, Pierre.
Afiliação
  • Gain G; InBioS - PhytoSYSTEMS, Laboratoire de Génétique et Physiologie des Microalgues, ULiège, Liège, B-4000, Belgium.
  • Vega de Luna F; InBioS - PhytoSYSTEMS, Laboratoire de Génétique et Physiologie des Microalgues, ULiège, Liège, B-4000, Belgium.
  • Cordoba J; InBioS - PhytoSYSTEMS, Laboratoire de Génétique et Physiologie des Microalgues, ULiège, Liège, B-4000, Belgium.
  • Perez E; InBioS - PhytoSYSTEMS, Laboratoire de Génétique et Physiologie des Microalgues, ULiège, Liège, B-4000, Belgium.
  • Degand H; Louvain Institute of Biomolecular Science and Technology (LIBST), UCLouvain, Louvain-la-Neuve, B-1348, Belgium.
  • Morsomme P; Louvain Institute of Biomolecular Science and Technology (LIBST), UCLouvain, Louvain-la-Neuve, B-1348, Belgium.
  • Thiry M; Laboratoire de Biologie Cellulaire et Tissulaire, Giga-Neurosciences, ULiège, Liège, B-4000, Belgium.
  • Baurain D; InBioS - PhytoSYSTEMS, Eukaryotic Phylogenomics, ULiège, Liège, B-4000, Belgium.
  • Pierangelini M; InBioS - PhytoSYSTEMS, Laboratoire de Génétique et Physiologie des Microalgues, ULiège, Liège, B-4000, Belgium.
  • Cardol P; InBioS - PhytoSYSTEMS, Laboratoire de Génétique et Physiologie des Microalgues, ULiège, Liège, B-4000, Belgium.
New Phytol ; 232(4): 1603-1617, 2021 11.
Article em En | MEDLINE | ID: mdl-34392544
ABSTRACT
The coupling between mitochondrial respiration and photosynthesis plays an important role in the energetic physiology of green plants and some secondary-red photosynthetic eukaryotes (diatoms), allowing an efficient CO2 assimilation and optimal growth. Using the flagellate Euglena gracilis, we first tested if photosynthesis-respiration coupling occurs in this species harbouring secondary green plastids (i.e. originated from an endosymbiosis between a green alga and a phagotrophic euglenozoan). Second, we tested how the trophic state (mixotrophy and photoautotrophy) of the cell alters the mechanisms involved in the photosynthesis-respiration coupling. Energetic coupling between photosynthesis and respiration was determined by testing the effect of respiratory inhibitors on photosynthesis, and measuring the simultaneous variation of photosynthesis and respiration rates as a function of temperature (i.e. thermal response curves). The mechanism involved in the photosynthesis-respiration coupling was assessed by combining proteomics, biophysical and cytological analyses. Our work shows that there is photosynthesis-respiration coupling and membrane contacts between mitochondria and chloroplasts in E. gracilis. However, whereas in mixotrophy adjustment of the chloroplast ATP/NADPH ratio drives the interaction, in photoautotrophy the coupling is conditioned by CO2 limitation and photorespiration. This indicates that maintenance of photosynthesis-respiration coupling, through plastic metabolic responses, is key to E. gracilis functioning under changing environmental conditions.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Fotossíntese / Euglena gracilis Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Fotossíntese / Euglena gracilis Idioma: En Ano de publicação: 2021 Tipo de documento: Article