Pexophagy suppresses ROS-induced damage in leaf cells under high-intensity light

Pexophagy plays a pivotal role in the selective removal of ROS-generating peroxisomes, which protects plants from oxidative damage during photosynthesis under high-intensity light.

Bibliographic Details
Main Authors: Kazusato Oikawa, Shino Goto-Yamada, Yasuko Hayashi, Daisuke Takahashi, Yoshitaka Kimori, Michitaro Shibata, Kohki Yoshimoto, Atsushi Takemiya, Maki Kondo, Kazumi Hikino, Akira Kato, Keisuke Shimoda, Haruko Ueda, Matsuo Uemura, Keiji Numata, Yoshinori Ohsumi, Ikuko Hara-Nishimura, Shoji Mano, Kenji Yamada, Mikio Nishimura
Format: Article
Language:English
Published: Nature Portfolio 2022-12-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-022-35138-z
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author Kazusato Oikawa
Shino Goto-Yamada
Yasuko Hayashi
Daisuke Takahashi
Yoshitaka Kimori
Michitaro Shibata
Kohki Yoshimoto
Atsushi Takemiya
Maki Kondo
Kazumi Hikino
Akira Kato
Keisuke Shimoda
Haruko Ueda
Matsuo Uemura
Keiji Numata
Yoshinori Ohsumi
Ikuko Hara-Nishimura
Shoji Mano
Kenji Yamada
Mikio Nishimura
author_facet Kazusato Oikawa
Shino Goto-Yamada
Yasuko Hayashi
Daisuke Takahashi
Yoshitaka Kimori
Michitaro Shibata
Kohki Yoshimoto
Atsushi Takemiya
Maki Kondo
Kazumi Hikino
Akira Kato
Keisuke Shimoda
Haruko Ueda
Matsuo Uemura
Keiji Numata
Yoshinori Ohsumi
Ikuko Hara-Nishimura
Shoji Mano
Kenji Yamada
Mikio Nishimura
author_sort Kazusato Oikawa
collection DOAJ
description Pexophagy plays a pivotal role in the selective removal of ROS-generating peroxisomes, which protects plants from oxidative damage during photosynthesis under high-intensity light.
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spelling doaj.art-7e185e55c37f4471b2b89b2fbc5773d42022-12-22T04:19:25ZengNature PortfolioNature Communications2041-17232022-12-0113111710.1038/s41467-022-35138-zPexophagy suppresses ROS-induced damage in leaf cells under high-intensity lightKazusato Oikawa0Shino Goto-Yamada1Yasuko Hayashi2Daisuke Takahashi3Yoshitaka Kimori4Michitaro Shibata5Kohki Yoshimoto6Atsushi Takemiya7Maki Kondo8Kazumi Hikino9Akira Kato10Keisuke Shimoda11Haruko Ueda12Matsuo Uemura13Keiji Numata14Yoshinori Ohsumi15Ikuko Hara-Nishimura16Shoji Mano17Kenji Yamada18Mikio Nishimura19Department of Cell Biology, National Institute for Basic BiologyMalopolska Centre of Biotechnology, Jagiellonian UniversityDepartment of Science, Faculty of Science, Niigata UniversityUnited Graduate School of Agricultural Sciences, Iwate UniversityDepartment of Imaging Science, Center for Novel Science Initiatives, National Institutes of Natural SciencesRIKEN Center for Sustainable Resource ScienceDepartment of Life Sciences, School of AgricultureDepartment of Biology, Graduate School of Sciences and Technology for Innovation, Yamaguchi UniversityDepartment of Cell Biology, National Institute for Basic BiologyLaboratory of Organelle Regulation, National Institute for Basic BiologyDepartment of Science, Faculty of Science, Niigata UniversityDepartment of Science, Faculty of Science, Niigata UniversityFaculty of Science and Engineering, Konan UniversityUnited Graduate School of Agricultural Sciences, Iwate UniversityBiomacromolecules Research Team, RIKEN Center for Sustainable Resource ScienceCell Biology Center, Institute of Innovative Research, Tokyo Institute of TechnologyFaculty of Science and Engineering, Konan UniversityLaboratory of Organelle Regulation, National Institute for Basic BiologyMalopolska Centre of Biotechnology, Jagiellonian UniversityDepartment of Cell Biology, National Institute for Basic BiologyPexophagy plays a pivotal role in the selective removal of ROS-generating peroxisomes, which protects plants from oxidative damage during photosynthesis under high-intensity light.https://doi.org/10.1038/s41467-022-35138-z
spellingShingle Kazusato Oikawa
Shino Goto-Yamada
Yasuko Hayashi
Daisuke Takahashi
Yoshitaka Kimori
Michitaro Shibata
Kohki Yoshimoto
Atsushi Takemiya
Maki Kondo
Kazumi Hikino
Akira Kato
Keisuke Shimoda
Haruko Ueda
Matsuo Uemura
Keiji Numata
Yoshinori Ohsumi
Ikuko Hara-Nishimura
Shoji Mano
Kenji Yamada
Mikio Nishimura
Pexophagy suppresses ROS-induced damage in leaf cells under high-intensity light
Nature Communications
title Pexophagy suppresses ROS-induced damage in leaf cells under high-intensity light
title_full Pexophagy suppresses ROS-induced damage in leaf cells under high-intensity light
title_fullStr Pexophagy suppresses ROS-induced damage in leaf cells under high-intensity light
title_full_unstemmed Pexophagy suppresses ROS-induced damage in leaf cells under high-intensity light
title_short Pexophagy suppresses ROS-induced damage in leaf cells under high-intensity light
title_sort pexophagy suppresses ros induced damage in leaf cells under high intensity light
url https://doi.org/10.1038/s41467-022-35138-z
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