Plastid thylakoid architecture optimizes photosynthesis in diatoms

Phytoplankton and plant plastids have distinct evolutionary origins and membrane organization. Here Floriet al. show that diatom photosynthetic complexes spatially segregate into interconnected subdomains within loose thylakoid stacks enabling fast diffusion of electron carriers and efficient photos...

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Autores principales: Serena Flori, Pierre-Henri Jouneau, Benjamin Bailleul, Benoit Gallet, Leandro F Estrozi, Christine Moriscot, Olivier Bastien, Simona Eicke, Alexander Schober, Carolina Río Bártulos, Eric Maréchal, Peter G Kroth, Dimitris Petroutsos, Samuel Zeeman, Cécile Breyton, Guy Schoehn, Denis Falconet, Giovanni Finazzi
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/dbb2f45ac7514c388c1ff45a78492185
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spelling oai:doaj.org-article:dbb2f45ac7514c388c1ff45a784921852021-12-02T15:38:32ZPlastid thylakoid architecture optimizes photosynthesis in diatoms10.1038/ncomms158852041-1723https://doaj.org/article/dbb2f45ac7514c388c1ff45a784921852017-06-01T00:00:00Zhttps://doi.org/10.1038/ncomms15885https://doaj.org/toc/2041-1723Phytoplankton and plant plastids have distinct evolutionary origins and membrane organization. Here Floriet al. show that diatom photosynthetic complexes spatially segregate into interconnected subdomains within loose thylakoid stacks enabling fast diffusion of electron carriers and efficient photosynthesisSerena FloriPierre-Henri JouneauBenjamin BailleulBenoit GalletLeandro F EstroziChristine MoriscotOlivier BastienSimona EickeAlexander SchoberCarolina Río BártulosEric MaréchalPeter G KrothDimitris PetroutsosSamuel ZeemanCécile BreytonGuy SchoehnDenis FalconetGiovanni FinazziNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-9 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Serena Flori
Pierre-Henri Jouneau
Benjamin Bailleul
Benoit Gallet
Leandro F Estrozi
Christine Moriscot
Olivier Bastien
Simona Eicke
Alexander Schober
Carolina Río Bártulos
Eric Maréchal
Peter G Kroth
Dimitris Petroutsos
Samuel Zeeman
Cécile Breyton
Guy Schoehn
Denis Falconet
Giovanni Finazzi
Plastid thylakoid architecture optimizes photosynthesis in diatoms
description Phytoplankton and plant plastids have distinct evolutionary origins and membrane organization. Here Floriet al. show that diatom photosynthetic complexes spatially segregate into interconnected subdomains within loose thylakoid stacks enabling fast diffusion of electron carriers and efficient photosynthesis
format article
author Serena Flori
Pierre-Henri Jouneau
Benjamin Bailleul
Benoit Gallet
Leandro F Estrozi
Christine Moriscot
Olivier Bastien
Simona Eicke
Alexander Schober
Carolina Río Bártulos
Eric Maréchal
Peter G Kroth
Dimitris Petroutsos
Samuel Zeeman
Cécile Breyton
Guy Schoehn
Denis Falconet
Giovanni Finazzi
author_facet Serena Flori
Pierre-Henri Jouneau
Benjamin Bailleul
Benoit Gallet
Leandro F Estrozi
Christine Moriscot
Olivier Bastien
Simona Eicke
Alexander Schober
Carolina Río Bártulos
Eric Maréchal
Peter G Kroth
Dimitris Petroutsos
Samuel Zeeman
Cécile Breyton
Guy Schoehn
Denis Falconet
Giovanni Finazzi
author_sort Serena Flori
title Plastid thylakoid architecture optimizes photosynthesis in diatoms
title_short Plastid thylakoid architecture optimizes photosynthesis in diatoms
title_full Plastid thylakoid architecture optimizes photosynthesis in diatoms
title_fullStr Plastid thylakoid architecture optimizes photosynthesis in diatoms
title_full_unstemmed Plastid thylakoid architecture optimizes photosynthesis in diatoms
title_sort plastid thylakoid architecture optimizes photosynthesis in diatoms
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/dbb2f45ac7514c388c1ff45a78492185
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