The rice OsNAC6 transcription factor orchestrates multiple molecular mechanisms involving root structural adaptions and nicotianamine biosynthesis for drought tolerance
10.1111/pbi.12673
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sg-nus-scholar.10635-1812762025-01-11T03:03:12Z The rice OsNAC6 transcription factor orchestrates multiple molecular mechanisms involving root structural adaptions and nicotianamine biosynthesis for drought tolerance Lee, D.-K Chung, P.J Jeong, J.S Jang, G Bang, S.W Jung, H Kim, Y.S Ha, S.-H Choi, Y.D Kim, J.-K BIOCHEMISTRY azetidine 2 carboxylic acid nicotianamine plant protein transcription factor analogs and derivatives biotechnology drought gene expression regulation genetics genome-wide association study metabolism Oryza physiology plant root transgenic plant Azetidinecarboxylic Acid Biotechnology Droughts Gene Expression Regulation, Plant Genome-Wide Association Study Oryza Plant Proteins Plant Roots Plants, Genetically Modified Transcription Factors 10.1111/pbi.12673 Plant Biotechnology Journal 15 6 754-764 2020-10-27T10:26:00Z 2020-10-27T10:26:00Z 2017 Article Lee, D.-K, Chung, P.J, Jeong, J.S, Jang, G, Bang, S.W, Jung, H, Kim, Y.S, Ha, S.-H, Choi, Y.D, Kim, J.-K (2017). The rice OsNAC6 transcription factor orchestrates multiple molecular mechanisms involving root structural adaptions and nicotianamine biosynthesis for drought tolerance. Plant Biotechnology Journal 15 (6) : 754-764. ScholarBank@NUS Repository. https://doi.org/10.1111/pbi.12673 14677644 https://scholarbank.nus.edu.sg/handle/10635/181276 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Unpaywall 20201031 |
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azetidine 2 carboxylic acid nicotianamine plant protein transcription factor analogs and derivatives biotechnology drought gene expression regulation genetics genome-wide association study metabolism Oryza physiology plant root transgenic plant Azetidinecarboxylic Acid Biotechnology Droughts Gene Expression Regulation, Plant Genome-Wide Association Study Oryza Plant Proteins Plant Roots Plants, Genetically Modified Transcription Factors |
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azetidine 2 carboxylic acid nicotianamine plant protein transcription factor analogs and derivatives biotechnology drought gene expression regulation genetics genome-wide association study metabolism Oryza physiology plant root transgenic plant Azetidinecarboxylic Acid Biotechnology Droughts Gene Expression Regulation, Plant Genome-Wide Association Study Oryza Plant Proteins Plant Roots Plants, Genetically Modified Transcription Factors Lee, D.-K Chung, P.J Jeong, J.S Jang, G Bang, S.W Jung, H Kim, Y.S Ha, S.-H Choi, Y.D Kim, J.-K The rice OsNAC6 transcription factor orchestrates multiple molecular mechanisms involving root structural adaptions and nicotianamine biosynthesis for drought tolerance |
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10.1111/pbi.12673 |
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BIOCHEMISTRY |
author_facet |
BIOCHEMISTRY Lee, D.-K Chung, P.J Jeong, J.S Jang, G Bang, S.W Jung, H Kim, Y.S Ha, S.-H Choi, Y.D Kim, J.-K |
format |
Article |
author |
Lee, D.-K Chung, P.J Jeong, J.S Jang, G Bang, S.W Jung, H Kim, Y.S Ha, S.-H Choi, Y.D Kim, J.-K |
author_sort |
Lee, D.-K |
title |
The rice OsNAC6 transcription factor orchestrates multiple molecular mechanisms involving root structural adaptions and nicotianamine biosynthesis for drought tolerance |
title_short |
The rice OsNAC6 transcription factor orchestrates multiple molecular mechanisms involving root structural adaptions and nicotianamine biosynthesis for drought tolerance |
title_full |
The rice OsNAC6 transcription factor orchestrates multiple molecular mechanisms involving root structural adaptions and nicotianamine biosynthesis for drought tolerance |
title_fullStr |
The rice OsNAC6 transcription factor orchestrates multiple molecular mechanisms involving root structural adaptions and nicotianamine biosynthesis for drought tolerance |
title_full_unstemmed |
The rice OsNAC6 transcription factor orchestrates multiple molecular mechanisms involving root structural adaptions and nicotianamine biosynthesis for drought tolerance |
title_sort |
rice osnac6 transcription factor orchestrates multiple molecular mechanisms involving root structural adaptions and nicotianamine biosynthesis for drought tolerance |
publishDate |
2020 |
url |
https://scholarbank.nus.edu.sg/handle/10635/181276 |
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1821833155923935232 |