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The Role of Gibberellins in Regulation of Nitrogen Uptake and Physiological Traits in Maize Responding to Nitrogen Availability

Modified gibberellin (GA) signaling leads to semi-dwarfism with low nitrogen (N) use efficiency (NUE) in crops. An understanding of GA-mediated N uptake is essential for the development of crops with improved NUE. The function of GA in modulating N uptake capacity and nitrate (NO(3)(−)) transporters...

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Autores principales: Wang, Yubin, Yao, Qingqing, Zhang, Yushi, Zhang, Yuexia, Xing, Jiapeng, Yang, Benzhou, Mi, Guohua, Li, Zhaohu, Zhang, Mingcai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7084584/
https://www.ncbi.nlm.nih.gov/pubmed/32155833
http://dx.doi.org/10.3390/ijms21051824
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author Wang, Yubin
Yao, Qingqing
Zhang, Yushi
Zhang, Yuexia
Xing, Jiapeng
Yang, Benzhou
Mi, Guohua
Li, Zhaohu
Zhang, Mingcai
author_facet Wang, Yubin
Yao, Qingqing
Zhang, Yushi
Zhang, Yuexia
Xing, Jiapeng
Yang, Benzhou
Mi, Guohua
Li, Zhaohu
Zhang, Mingcai
author_sort Wang, Yubin
collection PubMed
description Modified gibberellin (GA) signaling leads to semi-dwarfism with low nitrogen (N) use efficiency (NUE) in crops. An understanding of GA-mediated N uptake is essential for the development of crops with improved NUE. The function of GA in modulating N uptake capacity and nitrate (NO(3)(−)) transporters (NRTs) was analyzed in the GA synthesis-deficient mutant zmga3ox grown under low (LN) and sufficient (SN) N conditions. LN significantly suppressed the production of GA(1), GA(3,) and GA(4), and the zmga3ox plants showed more sensitivity in shoots as well as LN stress. Moreover, the higher anthocyanin accumulation and the decrease of chlorophyll content were also recorded. The net NO(3)(−) fluxes and (15)N content were decreased in zmga3ox plants under both LN and SN conditions. Exogenous GA(3) could restore the NO(3)(−) uptake in zmga3ox plants, but uniconazole repressed NO(3)(−) uptake. Moreover, the transcript levels of ZmNRT2.1/2.2 were downregulated in zmga3ox plants, while the GA(3) application enhanced the expression level. Furthermore, the RNA-seq analyses identified several transcription factors that are involved in the GA-mediated transcriptional operation of NRTs related genes. These findings revealed that GAs influenced N uptake involved in the transcriptional regulation of NRTs and physiological responses in maize responding to nitrogen supply.
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spelling pubmed-70845842020-03-24 The Role of Gibberellins in Regulation of Nitrogen Uptake and Physiological Traits in Maize Responding to Nitrogen Availability Wang, Yubin Yao, Qingqing Zhang, Yushi Zhang, Yuexia Xing, Jiapeng Yang, Benzhou Mi, Guohua Li, Zhaohu Zhang, Mingcai Int J Mol Sci Article Modified gibberellin (GA) signaling leads to semi-dwarfism with low nitrogen (N) use efficiency (NUE) in crops. An understanding of GA-mediated N uptake is essential for the development of crops with improved NUE. The function of GA in modulating N uptake capacity and nitrate (NO(3)(−)) transporters (NRTs) was analyzed in the GA synthesis-deficient mutant zmga3ox grown under low (LN) and sufficient (SN) N conditions. LN significantly suppressed the production of GA(1), GA(3,) and GA(4), and the zmga3ox plants showed more sensitivity in shoots as well as LN stress. Moreover, the higher anthocyanin accumulation and the decrease of chlorophyll content were also recorded. The net NO(3)(−) fluxes and (15)N content were decreased in zmga3ox plants under both LN and SN conditions. Exogenous GA(3) could restore the NO(3)(−) uptake in zmga3ox plants, but uniconazole repressed NO(3)(−) uptake. Moreover, the transcript levels of ZmNRT2.1/2.2 were downregulated in zmga3ox plants, while the GA(3) application enhanced the expression level. Furthermore, the RNA-seq analyses identified several transcription factors that are involved in the GA-mediated transcriptional operation of NRTs related genes. These findings revealed that GAs influenced N uptake involved in the transcriptional regulation of NRTs and physiological responses in maize responding to nitrogen supply. MDPI 2020-03-06 /pmc/articles/PMC7084584/ /pubmed/32155833 http://dx.doi.org/10.3390/ijms21051824 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wang, Yubin
Yao, Qingqing
Zhang, Yushi
Zhang, Yuexia
Xing, Jiapeng
Yang, Benzhou
Mi, Guohua
Li, Zhaohu
Zhang, Mingcai
The Role of Gibberellins in Regulation of Nitrogen Uptake and Physiological Traits in Maize Responding to Nitrogen Availability
title The Role of Gibberellins in Regulation of Nitrogen Uptake and Physiological Traits in Maize Responding to Nitrogen Availability
title_full The Role of Gibberellins in Regulation of Nitrogen Uptake and Physiological Traits in Maize Responding to Nitrogen Availability
title_fullStr The Role of Gibberellins in Regulation of Nitrogen Uptake and Physiological Traits in Maize Responding to Nitrogen Availability
title_full_unstemmed The Role of Gibberellins in Regulation of Nitrogen Uptake and Physiological Traits in Maize Responding to Nitrogen Availability
title_short The Role of Gibberellins in Regulation of Nitrogen Uptake and Physiological Traits in Maize Responding to Nitrogen Availability
title_sort role of gibberellins in regulation of nitrogen uptake and physiological traits in maize responding to nitrogen availability
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7084584/
https://www.ncbi.nlm.nih.gov/pubmed/32155833
http://dx.doi.org/10.3390/ijms21051824
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