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Thylakoid membrane reorganizations revealed by small-angle neutron scattering of Monstera deliciosa leaves associated with non-photochemical quenching

Non-photochemical quenching (NPQ) is an important photoprotective mechanism in plants and algae. Although the process is extensively studied, little is known about its relationship with ultrastructural changes of the thylakoid membranes. In order to better understand this relationship, we studied th...

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Autores principales: Ünnep, Renáta, Paul, Suman, Zsiros, Ottó, Kovács, László, Székely, Noémi K., Steinbach, Gábor, Appavou, Marie-Sousai, Porcar, Lionel, Holzwarth, Alfred R., Garab, Győző, Nagy, Gergely
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7536078/
https://www.ncbi.nlm.nih.gov/pubmed/32931722
http://dx.doi.org/10.1098/rsob.200144
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author Ünnep, Renáta
Paul, Suman
Zsiros, Ottó
Kovács, László
Székely, Noémi K.
Steinbach, Gábor
Appavou, Marie-Sousai
Porcar, Lionel
Holzwarth, Alfred R.
Garab, Győző
Nagy, Gergely
author_facet Ünnep, Renáta
Paul, Suman
Zsiros, Ottó
Kovács, László
Székely, Noémi K.
Steinbach, Gábor
Appavou, Marie-Sousai
Porcar, Lionel
Holzwarth, Alfred R.
Garab, Győző
Nagy, Gergely
author_sort Ünnep, Renáta
collection PubMed
description Non-photochemical quenching (NPQ) is an important photoprotective mechanism in plants and algae. Although the process is extensively studied, little is known about its relationship with ultrastructural changes of the thylakoid membranes. In order to better understand this relationship, we studied the effects of illumination on the organization of thylakoid membranes in Monstera deliciosa leaves. This evergreen species is known to exhibit very large NPQ and to possess giant grana with dozens of stacked thylakoids. It is thus ideally suited for small-angle neutron scattering measurements (SANS)—a non-invasive technique, which is capable of providing spatially and statistically averaged information on the periodicity of the thylakoid membranes and their rapid reorganizations in vivo. We show that NPQ-inducing illumination causes a strong decrease in the periodic order of granum thylakoid membranes. Development of NPQ and light-induced ultrastructural changes, as well as the relaxation processes, follow similar kinetic patterns. Surprisingly, whereas NPQ is suppressed by diuron, it impedes only the relaxation of the structural changes and not its formation, suggesting that structural changes do not cause but enable NPQ. We also demonstrate that the diminishment of SANS peak does not originate from light-induced redistribution and reorientation of chloroplasts inside the cells.
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spelling pubmed-75360782020-10-09 Thylakoid membrane reorganizations revealed by small-angle neutron scattering of Monstera deliciosa leaves associated with non-photochemical quenching Ünnep, Renáta Paul, Suman Zsiros, Ottó Kovács, László Székely, Noémi K. Steinbach, Gábor Appavou, Marie-Sousai Porcar, Lionel Holzwarth, Alfred R. Garab, Győző Nagy, Gergely Open Biol Research Non-photochemical quenching (NPQ) is an important photoprotective mechanism in plants and algae. Although the process is extensively studied, little is known about its relationship with ultrastructural changes of the thylakoid membranes. In order to better understand this relationship, we studied the effects of illumination on the organization of thylakoid membranes in Monstera deliciosa leaves. This evergreen species is known to exhibit very large NPQ and to possess giant grana with dozens of stacked thylakoids. It is thus ideally suited for small-angle neutron scattering measurements (SANS)—a non-invasive technique, which is capable of providing spatially and statistically averaged information on the periodicity of the thylakoid membranes and their rapid reorganizations in vivo. We show that NPQ-inducing illumination causes a strong decrease in the periodic order of granum thylakoid membranes. Development of NPQ and light-induced ultrastructural changes, as well as the relaxation processes, follow similar kinetic patterns. Surprisingly, whereas NPQ is suppressed by diuron, it impedes only the relaxation of the structural changes and not its formation, suggesting that structural changes do not cause but enable NPQ. We also demonstrate that the diminishment of SANS peak does not originate from light-induced redistribution and reorientation of chloroplasts inside the cells. The Royal Society 2020-09-16 /pmc/articles/PMC7536078/ /pubmed/32931722 http://dx.doi.org/10.1098/rsob.200144 Text en © 2020 The Authors. http://creativecommons.org/licenses/by/4.0/ http://creativecommons.org/licenses/by/4.0/http://creativecommons.org/licenses/by/4.0/Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/, which permits unrestricted use, provided the original author and source are credited.
spellingShingle Research
Ünnep, Renáta
Paul, Suman
Zsiros, Ottó
Kovács, László
Székely, Noémi K.
Steinbach, Gábor
Appavou, Marie-Sousai
Porcar, Lionel
Holzwarth, Alfred R.
Garab, Győző
Nagy, Gergely
Thylakoid membrane reorganizations revealed by small-angle neutron scattering of Monstera deliciosa leaves associated with non-photochemical quenching
title Thylakoid membrane reorganizations revealed by small-angle neutron scattering of Monstera deliciosa leaves associated with non-photochemical quenching
title_full Thylakoid membrane reorganizations revealed by small-angle neutron scattering of Monstera deliciosa leaves associated with non-photochemical quenching
title_fullStr Thylakoid membrane reorganizations revealed by small-angle neutron scattering of Monstera deliciosa leaves associated with non-photochemical quenching
title_full_unstemmed Thylakoid membrane reorganizations revealed by small-angle neutron scattering of Monstera deliciosa leaves associated with non-photochemical quenching
title_short Thylakoid membrane reorganizations revealed by small-angle neutron scattering of Monstera deliciosa leaves associated with non-photochemical quenching
title_sort thylakoid membrane reorganizations revealed by small-angle neutron scattering of monstera deliciosa leaves associated with non-photochemical quenching
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7536078/
https://www.ncbi.nlm.nih.gov/pubmed/32931722
http://dx.doi.org/10.1098/rsob.200144
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