Serveur d'exploration sur la glutarédoxine

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Expression of a rice glutaredoxin in aleurone layers of developing and mature seeds: subcellular localization and possible functions in antioxidant defense.

Identifieur interne : 000557 ( Main/Exploration ); précédent : 000556; suivant : 000558

Expression of a rice glutaredoxin in aleurone layers of developing and mature seeds: subcellular localization and possible functions in antioxidant defense.

Auteurs : Shigeto Morita [Japon] ; Yuki Yamashita [Japon] ; Masayoshi Fujiki [Japon] ; Rie Todaka [Japon] ; Yuri Nishikawa [Japon] ; Ayaka Hosoki [Japon] ; Chisato Yabe [Japon] ; Jun'Ichi Nakamura [Japon] ; Kazuyoshi Kawamura [Japon] ; I Nengah Suwastika [Japon, Indonésie] ; Masa H. Sato [Japon] ; Takehiro Masumura [Japon] ; Yasunari Ogihara [Japon] ; Kunisuke Tanaka [Japon] ; Shigeru Satoh [Japon]

Source :

RBID : pubmed:26126957

Descripteurs français

English descriptors

Abstract

MAIN CONCLUSION

A rice glutaredoxin isoform (OsGrxC2;2) with antioxidant capacity is expressed abundantly in seed tissues and is localized to storage vacuoles in aleurone layers in developing and mature seeds. Seed tissues undergo drastic water loss at the late stage of seed development, and thus need to tolerate oxidative injuries associated with desiccation. We previously found a rice glutaredoxin isoform, OsGrxC2;2, as a gene expressed abundantly in developing seeds. Since glutaredoxin is involved in antioxidant defense, in the present study we investigated the subcellular localization and expression profile of OsGrxC2;2 and whether OsGrxC2;2 has a role in the defense against reactive oxygen species. Western blotting and immunohistochemistry revealed that the OsGrxC2;2 protein accumulated at a high level in the embryo and aleurone layers of developing and mature seeds. The OsGrxC2;2 in developing seeds was particularly localized to aleurone grains, which are storage organelles derived from vacuoles. Overexpression of OsGrxC2;2 resulted in an enhanced tolerance to menadione in yeast and methyl viologen in green leaves of transgenic rice plants. These results suggest that OsGrxC2;2 participates in the defense against oxidative stress in developing and mature seeds.


DOI: 10.1007/s00425-015-2354-9
PubMed: 26126957


Affiliations:


Links toward previous steps (curation, corpus...)


Le document en format XML

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<title xml:lang="en">Expression of a rice glutaredoxin in aleurone layers of developing and mature seeds: subcellular localization and possible functions in antioxidant defense.</title>
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<name sortKey="Morita, Shigeto" sort="Morita, Shigeto" uniqKey="Morita S" first="Shigeto" last="Morita">Shigeto Morita</name>
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<name sortKey="Yamashita, Yuki" sort="Yamashita, Yuki" uniqKey="Yamashita Y" first="Yuki" last="Yamashita">Yuki Yamashita</name>
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<name sortKey="Suwastika, I Nengah" sort="Suwastika, I Nengah" uniqKey="Suwastika I" first="I Nengah" last="Suwastika">I Nengah Suwastika</name>
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<name sortKey="Sato, Masa H" sort="Sato, Masa H" uniqKey="Sato M" first="Masa H" last="Sato">Masa H. Sato</name>
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<term>Antioxidants (metabolism)</term>
<term>Gene Expression Regulation, Plant (MeSH)</term>
<term>Glutaredoxins (metabolism)</term>
<term>Oryza (metabolism)</term>
<term>Oxidative Stress (physiology)</term>
<term>Seeds (metabolism)</term>
</keywords>
<keywords scheme="KwdFr" xml:lang="fr">
<term>Antioxydants (métabolisme)</term>
<term>Glutarédoxines (métabolisme)</term>
<term>Graines (métabolisme)</term>
<term>Oryza (métabolisme)</term>
<term>Régulation de l'expression des gènes végétaux (MeSH)</term>
<term>Stress oxydatif (physiologie)</term>
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<term>Antioxidants</term>
<term>Glutaredoxins</term>
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<term>Oryza</term>
<term>Seeds</term>
</keywords>
<keywords scheme="MESH" qualifier="métabolisme" xml:lang="fr">
<term>Antioxydants</term>
<term>Glutarédoxines</term>
<term>Graines</term>
<term>Oryza</term>
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<term>Stress oxydatif</term>
</keywords>
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<term>Oxidative Stress</term>
</keywords>
<keywords scheme="MESH" xml:lang="en">
<term>Gene Expression Regulation, Plant</term>
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<p>
<b>MAIN CONCLUSION</b>
</p>
<p>A rice glutaredoxin isoform (OsGrxC2;2) with antioxidant capacity is expressed abundantly in seed tissues and is localized to storage vacuoles in aleurone layers in developing and mature seeds. Seed tissues undergo drastic water loss at the late stage of seed development, and thus need to tolerate oxidative injuries associated with desiccation. We previously found a rice glutaredoxin isoform, OsGrxC2;2, as a gene expressed abundantly in developing seeds. Since glutaredoxin is involved in antioxidant defense, in the present study we investigated the subcellular localization and expression profile of OsGrxC2;2 and whether OsGrxC2;2 has a role in the defense against reactive oxygen species. Western blotting and immunohistochemistry revealed that the OsGrxC2;2 protein accumulated at a high level in the embryo and aleurone layers of developing and mature seeds. The OsGrxC2;2 in developing seeds was particularly localized to aleurone grains, which are storage organelles derived from vacuoles. Overexpression of OsGrxC2;2 resulted in an enhanced tolerance to menadione in yeast and methyl viologen in green leaves of transgenic rice plants. These results suggest that OsGrxC2;2 participates in the defense against oxidative stress in developing and mature seeds.</p>
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<AbstractText Label="MAIN CONCLUSION" NlmCategory="CONCLUSIONS">A rice glutaredoxin isoform (OsGrxC2;2) with antioxidant capacity is expressed abundantly in seed tissues and is localized to storage vacuoles in aleurone layers in developing and mature seeds. Seed tissues undergo drastic water loss at the late stage of seed development, and thus need to tolerate oxidative injuries associated with desiccation. We previously found a rice glutaredoxin isoform, OsGrxC2;2, as a gene expressed abundantly in developing seeds. Since glutaredoxin is involved in antioxidant defense, in the present study we investigated the subcellular localization and expression profile of OsGrxC2;2 and whether OsGrxC2;2 has a role in the defense against reactive oxygen species. Western blotting and immunohistochemistry revealed that the OsGrxC2;2 protein accumulated at a high level in the embryo and aleurone layers of developing and mature seeds. The OsGrxC2;2 in developing seeds was particularly localized to aleurone grains, which are storage organelles derived from vacuoles. Overexpression of OsGrxC2;2 resulted in an enhanced tolerance to menadione in yeast and methyl viologen in green leaves of transgenic rice plants. These results suggest that OsGrxC2;2 participates in the defense against oxidative stress in developing and mature seeds.</AbstractText>
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