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Overexpression of a New Zinc Finger Protein Transcription Factor OsCTZFP8 Improves Cold Tolerance in Rice

Cold stress is one of the most important abiotic stresses in rice. C(2)H(2) zinc finger proteins play important roles in response to abiotic stresses in plants. In the present study, we isolated and functionally characterized a new C(2)H(2) zinc finger protein transcription factor OsCTZFP8 in rice....

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Autores principales: Jin, Yong-Mei, Piao, Rihua, Yan, Yong-Feng, Chen, Mojun, Wang, Ling, He, Hongxia, Liu, Xiaoxiao, Gao, Xing-Ai, Jiang, Wenzhu, Lin, Xiu-Feng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5989172/
https://www.ncbi.nlm.nih.gov/pubmed/29951522
http://dx.doi.org/10.1155/2018/5480617
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author Jin, Yong-Mei
Piao, Rihua
Yan, Yong-Feng
Chen, Mojun
Wang, Ling
He, Hongxia
Liu, Xiaoxiao
Gao, Xing-Ai
Jiang, Wenzhu
Lin, Xiu-Feng
author_facet Jin, Yong-Mei
Piao, Rihua
Yan, Yong-Feng
Chen, Mojun
Wang, Ling
He, Hongxia
Liu, Xiaoxiao
Gao, Xing-Ai
Jiang, Wenzhu
Lin, Xiu-Feng
author_sort Jin, Yong-Mei
collection PubMed
description Cold stress is one of the most important abiotic stresses in rice. C(2)H(2) zinc finger proteins play important roles in response to abiotic stresses in plants. In the present study, we isolated and functionally characterized a new C(2)H(2) zinc finger protein transcription factor OsCTZFP8 in rice. OsCTZFP8 encodes a C(2)H(2) zinc finger protein, which contains a typical zinc finger motif, as well as a potential nuclear localization signal (NLS) and a leucine-rich region (L-box). Expression of OsCTZFP8 was differentially induced by several abiotic stresses and was strongly induced by cold stress. Subcellular localization assay and yeast one-hybrid analysis revealed that OsCTZFP8 was a nuclear protein and has transactivation activity. To characterize the function of OsCTZFP8 in rice, the full-length cDNA of OsCTZFP8 was isolated and transgenic rice with overexpression of OsCTZFP8 driven by the maize ubiquitin promoter was generated using Agrobacterium-mediated transformation. Among 46 independent transgenic lines, 6 single-copy homozygous overexpressing lines were selected by Southern blot analysis and Basta resistance segregation assay in both T(1) and T(2) generations. Transgenic rice overexpressing OsCTZFP8 exhibited cold tolerant phenotypes with significantly higher pollen fertilities and seed setting rates than nontransgenic control plants. In addition, yield per plant of OsCTZFP8-expressing lines was significantly (p < 0.01) higher than that of nontransgenic control plants under cold treatments. These results demonstrate that OsCTZFP8 was a C(2)H(2) zinc finger transcription factor that plays an important role in cold tolerance in rice.
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spelling pubmed-59891722018-06-27 Overexpression of a New Zinc Finger Protein Transcription Factor OsCTZFP8 Improves Cold Tolerance in Rice Jin, Yong-Mei Piao, Rihua Yan, Yong-Feng Chen, Mojun Wang, Ling He, Hongxia Liu, Xiaoxiao Gao, Xing-Ai Jiang, Wenzhu Lin, Xiu-Feng Int J Genomics Research Article Cold stress is one of the most important abiotic stresses in rice. C(2)H(2) zinc finger proteins play important roles in response to abiotic stresses in plants. In the present study, we isolated and functionally characterized a new C(2)H(2) zinc finger protein transcription factor OsCTZFP8 in rice. OsCTZFP8 encodes a C(2)H(2) zinc finger protein, which contains a typical zinc finger motif, as well as a potential nuclear localization signal (NLS) and a leucine-rich region (L-box). Expression of OsCTZFP8 was differentially induced by several abiotic stresses and was strongly induced by cold stress. Subcellular localization assay and yeast one-hybrid analysis revealed that OsCTZFP8 was a nuclear protein and has transactivation activity. To characterize the function of OsCTZFP8 in rice, the full-length cDNA of OsCTZFP8 was isolated and transgenic rice with overexpression of OsCTZFP8 driven by the maize ubiquitin promoter was generated using Agrobacterium-mediated transformation. Among 46 independent transgenic lines, 6 single-copy homozygous overexpressing lines were selected by Southern blot analysis and Basta resistance segregation assay in both T(1) and T(2) generations. Transgenic rice overexpressing OsCTZFP8 exhibited cold tolerant phenotypes with significantly higher pollen fertilities and seed setting rates than nontransgenic control plants. In addition, yield per plant of OsCTZFP8-expressing lines was significantly (p < 0.01) higher than that of nontransgenic control plants under cold treatments. These results demonstrate that OsCTZFP8 was a C(2)H(2) zinc finger transcription factor that plays an important role in cold tolerance in rice. Hindawi 2018-05-23 /pmc/articles/PMC5989172/ /pubmed/29951522 http://dx.doi.org/10.1155/2018/5480617 Text en Copyright © 2018 Yong-Mei Jin et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Jin, Yong-Mei
Piao, Rihua
Yan, Yong-Feng
Chen, Mojun
Wang, Ling
He, Hongxia
Liu, Xiaoxiao
Gao, Xing-Ai
Jiang, Wenzhu
Lin, Xiu-Feng
Overexpression of a New Zinc Finger Protein Transcription Factor OsCTZFP8 Improves Cold Tolerance in Rice
title Overexpression of a New Zinc Finger Protein Transcription Factor OsCTZFP8 Improves Cold Tolerance in Rice
title_full Overexpression of a New Zinc Finger Protein Transcription Factor OsCTZFP8 Improves Cold Tolerance in Rice
title_fullStr Overexpression of a New Zinc Finger Protein Transcription Factor OsCTZFP8 Improves Cold Tolerance in Rice
title_full_unstemmed Overexpression of a New Zinc Finger Protein Transcription Factor OsCTZFP8 Improves Cold Tolerance in Rice
title_short Overexpression of a New Zinc Finger Protein Transcription Factor OsCTZFP8 Improves Cold Tolerance in Rice
title_sort overexpression of a new zinc finger protein transcription factor osctzfp8 improves cold tolerance in rice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5989172/
https://www.ncbi.nlm.nih.gov/pubmed/29951522
http://dx.doi.org/10.1155/2018/5480617
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