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식물노화·수명연구단
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Concomitant Activation of OsNAS2 and OsNAS3 Contributes to the Enhanced Accumulation of Iron and Zinc in Rice

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dc.contributor.authorSichul Lee-
dc.contributor.authorRahman, Md Mizanor-
dc.contributor.authorNakanishi, Hiromi-
dc.contributor.authorNishizawa, Naoko K.-
dc.contributor.authorAn, Gynheung-
dc.contributor.authorHong Gil Nam-
dc.contributor.authorJeon, Jong-Seong-
dc.date.accessioned2023-07-05T22:01:09Z-
dc.date.available2023-07-05T22:01:09Z-
dc.date.created2023-04-28-
dc.date.issued2023-04-
dc.identifier.issn1661-6596-
dc.identifier.urihttps://pr.ibs.re.kr/handle/8788114/13580-
dc.description.abstractNicotianamine (NA) is produced by NA synthase (NAS), which contains three genes in rice and is responsible for chelating metals such as iron (Fe) and zinc (Zn), as well as preserving metal homeostasis. In this study, we generated a transgenic plant (23D) that shows simultaneous activation of OsNAS2 and OsNAS3 by crossing two previously identified activation-tagged mutants, OsNAS2-D1 (2D) and OsNAS3-D1 (3D). Concomitant activation of both genes resulted in the highest Fe and Zn concentrations in shoots and roots of the 23D plants grown under normal conditions and Fe and Zn limited growth conditions. Expression of genes for the biosynthesis of mugineic acid family phytosiderophores (MAs) and Fe and Zn uptake were enhanced in 23D roots. Additionally, 23D plants displayed superior growth to other plants at higher pH levels. Importantly, 23D seeds had NA and 2′-deoxymugineic acid (DMA) concentrations that were 50.6- and 10.0-fold higher than those of the WT. As a result, the mature grain Fe and Zn concentrations of the 23D plant were 4.0 and 3.5 times greater, respectively, than those of the WT. Furthermore, 23D plants exhibited the greatest resistance to excess metals. Our research suggests that simultaneous activation of OsNAS2 and OsNAS3 can enhance Fe and Zn accumulation in rice grains while also increasing plant tolerance to growing situations with metal deficiency and excess metal availability. © 2023 by the authors.-
dc.language영어-
dc.publisherMDPI-
dc.titleConcomitant Activation of OsNAS2 and OsNAS3 Contributes to the Enhanced Accumulation of Iron and Zinc in Rice-
dc.typeArticle-
dc.type.rimsART-
dc.identifier.wosid000970048900001-
dc.identifier.scopusid2-s2.0-85152311649-
dc.identifier.rimsid80665-
dc.contributor.affiliatedAuthorSichul Lee-
dc.contributor.affiliatedAuthorHong Gil Nam-
dc.identifier.doi10.3390/ijms24076568-
dc.identifier.bibliographicCitationInternational Journal of Molecular Sciences, v.24, no.7-
dc.relation.isPartOfInternational Journal of Molecular Sciences-
dc.citation.titleInternational Journal of Molecular Sciences-
dc.citation.volume24-
dc.citation.number7-
dc.type.docTypeArticle-
dc.description.journalClass1-
dc.description.journalClass1-
dc.description.isOpenAccessN-
dc.description.journalRegisteredClassscie-
dc.description.journalRegisteredClassscopus-
dc.relation.journalResearchAreaBiochemistry & Molecular Biology-
dc.relation.journalResearchAreaChemistry-
dc.relation.journalWebOfScienceCategoryBiochemistry & Molecular Biology-
dc.relation.journalWebOfScienceCategoryChemistry, Multidisciplinary-
dc.subject.keywordPlusMETAL-NICOTIANAMINE TRANSPORTER-
dc.subject.keywordPlusLONG-DISTANCE TRANSPORT-
dc.subject.keywordPlusSYNTHASE GENES-
dc.subject.keywordPlusENDOSPERM IRON-
dc.subject.keywordPlusACID-
dc.subject.keywordPlusTRANSLOCATION-
dc.subject.keywordPlusBIOSYNTHESIS-
dc.subject.keywordPlusCLONING-
dc.subject.keywordPlusOSYSL2-
dc.subject.keywordPlusPLANTS-
dc.subject.keywordAuthoractivation mutant-
dc.subject.keywordAuthorbiofortification-
dc.subject.keywordAuthoriron-
dc.subject.keywordAuthornicotianamine synthase-
dc.subject.keywordAuthorrice-
dc.subject.keywordAuthorzinc-
Appears in Collections:
Center for Plant Aging Research (식물 노화·수명 연구단) > 1. Journal Papers (저널논문)
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