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DkNAC7, a novel high-CO(2)/hypoxia-induced NAC transcription factor, regulates persimmon fruit de-astringency

Artificial high-CO(2) atmosphere (AHCA, 95% CO(2) and 1% O(2)) has been widely applied as a postharvest de-astringency treatment for persimmon fruit. AHCA increases expression of transcription factors, including ethylene response factors (DkERF), that target de-astringency genes. Here, the promoter...

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Autores principales: Jin, Rong, Zhu, Qing-gang, Shen, Xin-yue, Wang, Miao-miao, Jamil, Wajeeha, Grierson, Donald, Yin, Xue-ren, Chen, Kun-song
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5851633/
https://www.ncbi.nlm.nih.gov/pubmed/29538450
http://dx.doi.org/10.1371/journal.pone.0194326
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author Jin, Rong
Zhu, Qing-gang
Shen, Xin-yue
Wang, Miao-miao
Jamil, Wajeeha
Grierson, Donald
Yin, Xue-ren
Chen, Kun-song
author_facet Jin, Rong
Zhu, Qing-gang
Shen, Xin-yue
Wang, Miao-miao
Jamil, Wajeeha
Grierson, Donald
Yin, Xue-ren
Chen, Kun-song
author_sort Jin, Rong
collection PubMed
description Artificial high-CO(2) atmosphere (AHCA, 95% CO(2) and 1% O(2)) has been widely applied as a postharvest de-astringency treatment for persimmon fruit. AHCA increases expression of transcription factors, including ethylene response factors (DkERF), that target de-astringency genes. Here, the promoter of DkERF9, a previously characterized AHCA-inducible and de-astringency regulator, was utilized to screen a cDNA library by yeast one hybrid assay. A novel NAC transcription factor, named DkNAC7, was identified. Dual-luciferase assay indicated that DkNAC7 could not only trans-activate the promoter of DkERF9, but also activated the previously identified deastringency-related gene DkPDC2. Real-time PCR analysis showed that DkNAC7 was up-regulated by AHCA treatment, in concert with the removal of astringency from persimmon fruit and subcellular localization showed DkNAC7 was located in the nucleus. Thus, these results indicate that DkNAC7 is a putative transcriptional activator involved in regulating persimmon fruit deastringency by trans-activition on both DkERF9 and DkPDC2, which encodes pyruvate decarboxylase.
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spelling pubmed-58516332018-03-23 DkNAC7, a novel high-CO(2)/hypoxia-induced NAC transcription factor, regulates persimmon fruit de-astringency Jin, Rong Zhu, Qing-gang Shen, Xin-yue Wang, Miao-miao Jamil, Wajeeha Grierson, Donald Yin, Xue-ren Chen, Kun-song PLoS One Research Article Artificial high-CO(2) atmosphere (AHCA, 95% CO(2) and 1% O(2)) has been widely applied as a postharvest de-astringency treatment for persimmon fruit. AHCA increases expression of transcription factors, including ethylene response factors (DkERF), that target de-astringency genes. Here, the promoter of DkERF9, a previously characterized AHCA-inducible and de-astringency regulator, was utilized to screen a cDNA library by yeast one hybrid assay. A novel NAC transcription factor, named DkNAC7, was identified. Dual-luciferase assay indicated that DkNAC7 could not only trans-activate the promoter of DkERF9, but also activated the previously identified deastringency-related gene DkPDC2. Real-time PCR analysis showed that DkNAC7 was up-regulated by AHCA treatment, in concert with the removal of astringency from persimmon fruit and subcellular localization showed DkNAC7 was located in the nucleus. Thus, these results indicate that DkNAC7 is a putative transcriptional activator involved in regulating persimmon fruit deastringency by trans-activition on both DkERF9 and DkPDC2, which encodes pyruvate decarboxylase. Public Library of Science 2018-03-14 /pmc/articles/PMC5851633/ /pubmed/29538450 http://dx.doi.org/10.1371/journal.pone.0194326 Text en © 2018 Jin 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
Jin, Rong
Zhu, Qing-gang
Shen, Xin-yue
Wang, Miao-miao
Jamil, Wajeeha
Grierson, Donald
Yin, Xue-ren
Chen, Kun-song
DkNAC7, a novel high-CO(2)/hypoxia-induced NAC transcription factor, regulates persimmon fruit de-astringency
title DkNAC7, a novel high-CO(2)/hypoxia-induced NAC transcription factor, regulates persimmon fruit de-astringency
title_full DkNAC7, a novel high-CO(2)/hypoxia-induced NAC transcription factor, regulates persimmon fruit de-astringency
title_fullStr DkNAC7, a novel high-CO(2)/hypoxia-induced NAC transcription factor, regulates persimmon fruit de-astringency
title_full_unstemmed DkNAC7, a novel high-CO(2)/hypoxia-induced NAC transcription factor, regulates persimmon fruit de-astringency
title_short DkNAC7, a novel high-CO(2)/hypoxia-induced NAC transcription factor, regulates persimmon fruit de-astringency
title_sort dknac7, a novel high-co(2)/hypoxia-induced nac transcription factor, regulates persimmon fruit de-astringency
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5851633/
https://www.ncbi.nlm.nih.gov/pubmed/29538450
http://dx.doi.org/10.1371/journal.pone.0194326
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