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Isolation and Functional Validation of Salinity and Osmotic Stress Inducible Promoter from the Maize Type-II H(+)-Pyrophosphatase Gene by Deletion Analysis in Transgenic Tobacco Plants

Salinity and drought severely affect both plant growth and productivity, making the isolation and characterization of salinity- or drought-inducible promoters suitable for genetic improvement of crop resistance highly desirable. In this study, a 1468-bp sequence upstream of the translation initiatio...

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Autores principales: Hou, Jiajia, Jiang, Pingping, Qi, Shoumei, Zhang, Ke, He, Qiuxia, Xu, Changzheng, Ding, Zhaohua, Zhang, Kewei, Li, Kunpeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4839719/
https://www.ncbi.nlm.nih.gov/pubmed/27101137
http://dx.doi.org/10.1371/journal.pone.0154041
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author Hou, Jiajia
Jiang, Pingping
Qi, Shoumei
Zhang, Ke
He, Qiuxia
Xu, Changzheng
Ding, Zhaohua
Zhang, Kewei
Li, Kunpeng
author_facet Hou, Jiajia
Jiang, Pingping
Qi, Shoumei
Zhang, Ke
He, Qiuxia
Xu, Changzheng
Ding, Zhaohua
Zhang, Kewei
Li, Kunpeng
author_sort Hou, Jiajia
collection PubMed
description Salinity and drought severely affect both plant growth and productivity, making the isolation and characterization of salinity- or drought-inducible promoters suitable for genetic improvement of crop resistance highly desirable. In this study, a 1468-bp sequence upstream of the translation initiation codon ATG of the promoter for ZmGAPP (maize Type-II H(+)-pyrophosphatase gene) was cloned. Nine 5´ deletion fragments (D1–D9) of different lengths of the ZmGAPP promoter were fused with the GUS reporter and translocated into tobacco. The deletion analysis showed that fragments D1–D8 responded well to NaCl and PEG stresses, whereas fragment D9 and CaMV 35S did not. The D8 segment (219 bp; -219 to -1 bp) exhibited the highest promoter activity of all tissues, with the exception of petals among the D1–D9 transgenic tobacco, which corresponds to about 10% and 25% of CaMV 35S under normal and NaCl or PEG stress conditions, respectively. As such, the D8 segment may confer strong gene expression in a salinity and osmotic stress inducible manner. A 71-bp segment (-219 to -148 bp) was considered as the key region regulating ZmGAPP response to NaCl or PEG stress, as transient transformation assays demonstrated that the 71-bp sequence was sufficient for the salinity or osmotic stress response. These results enhance our understanding of the molecular mechanisms regulating ZmGAPP expression, and that the D8 promoter would be an ideal candidate for moderating expression of drought and salinity response genes in transgenic plants.
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spelling pubmed-48397192016-04-29 Isolation and Functional Validation of Salinity and Osmotic Stress Inducible Promoter from the Maize Type-II H(+)-Pyrophosphatase Gene by Deletion Analysis in Transgenic Tobacco Plants Hou, Jiajia Jiang, Pingping Qi, Shoumei Zhang, Ke He, Qiuxia Xu, Changzheng Ding, Zhaohua Zhang, Kewei Li, Kunpeng PLoS One Research Article Salinity and drought severely affect both plant growth and productivity, making the isolation and characterization of salinity- or drought-inducible promoters suitable for genetic improvement of crop resistance highly desirable. In this study, a 1468-bp sequence upstream of the translation initiation codon ATG of the promoter for ZmGAPP (maize Type-II H(+)-pyrophosphatase gene) was cloned. Nine 5´ deletion fragments (D1–D9) of different lengths of the ZmGAPP promoter were fused with the GUS reporter and translocated into tobacco. The deletion analysis showed that fragments D1–D8 responded well to NaCl and PEG stresses, whereas fragment D9 and CaMV 35S did not. The D8 segment (219 bp; -219 to -1 bp) exhibited the highest promoter activity of all tissues, with the exception of petals among the D1–D9 transgenic tobacco, which corresponds to about 10% and 25% of CaMV 35S under normal and NaCl or PEG stress conditions, respectively. As such, the D8 segment may confer strong gene expression in a salinity and osmotic stress inducible manner. A 71-bp segment (-219 to -148 bp) was considered as the key region regulating ZmGAPP response to NaCl or PEG stress, as transient transformation assays demonstrated that the 71-bp sequence was sufficient for the salinity or osmotic stress response. These results enhance our understanding of the molecular mechanisms regulating ZmGAPP expression, and that the D8 promoter would be an ideal candidate for moderating expression of drought and salinity response genes in transgenic plants. Public Library of Science 2016-04-21 /pmc/articles/PMC4839719/ /pubmed/27101137 http://dx.doi.org/10.1371/journal.pone.0154041 Text en © 2016 Hou et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Hou, Jiajia
Jiang, Pingping
Qi, Shoumei
Zhang, Ke
He, Qiuxia
Xu, Changzheng
Ding, Zhaohua
Zhang, Kewei
Li, Kunpeng
Isolation and Functional Validation of Salinity and Osmotic Stress Inducible Promoter from the Maize Type-II H(+)-Pyrophosphatase Gene by Deletion Analysis in Transgenic Tobacco Plants
title Isolation and Functional Validation of Salinity and Osmotic Stress Inducible Promoter from the Maize Type-II H(+)-Pyrophosphatase Gene by Deletion Analysis in Transgenic Tobacco Plants
title_full Isolation and Functional Validation of Salinity and Osmotic Stress Inducible Promoter from the Maize Type-II H(+)-Pyrophosphatase Gene by Deletion Analysis in Transgenic Tobacco Plants
title_fullStr Isolation and Functional Validation of Salinity and Osmotic Stress Inducible Promoter from the Maize Type-II H(+)-Pyrophosphatase Gene by Deletion Analysis in Transgenic Tobacco Plants
title_full_unstemmed Isolation and Functional Validation of Salinity and Osmotic Stress Inducible Promoter from the Maize Type-II H(+)-Pyrophosphatase Gene by Deletion Analysis in Transgenic Tobacco Plants
title_short Isolation and Functional Validation of Salinity and Osmotic Stress Inducible Promoter from the Maize Type-II H(+)-Pyrophosphatase Gene by Deletion Analysis in Transgenic Tobacco Plants
title_sort isolation and functional validation of salinity and osmotic stress inducible promoter from the maize type-ii h(+)-pyrophosphatase gene by deletion analysis in transgenic tobacco plants
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4839719/
https://www.ncbi.nlm.nih.gov/pubmed/27101137
http://dx.doi.org/10.1371/journal.pone.0154041
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