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Involvement of DkTGA1 Transcription Factor in Anaerobic Response Leading to Persimmon Fruit Postharvest De-Astringency

Persimmon fruit are unique in accumulating proanthocyanidins (tannins) during development, which cause astringency in mature fruit. In ‘Mopanshi’ persimmon, astringency can be removed by treatment with 95% CO(2), which increases the concentrations of ethanol and acetaldehyde by glycolysis, and preci...

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Autores principales: Zhu, Qing-gang, Wang, Miao-miao, Gong, Zi-yuan, Fang, Fang, Sun, Ning-jing, Li, Xian, Grierson, Donald, Yin, Xue-ren, Chen, Kun-song
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4873192/
https://www.ncbi.nlm.nih.gov/pubmed/27196670
http://dx.doi.org/10.1371/journal.pone.0155916
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author Zhu, Qing-gang
Wang, Miao-miao
Gong, Zi-yuan
Fang, Fang
Sun, Ning-jing
Li, Xian
Grierson, Donald
Yin, Xue-ren
Chen, Kun-song
author_facet Zhu, Qing-gang
Wang, Miao-miao
Gong, Zi-yuan
Fang, Fang
Sun, Ning-jing
Li, Xian
Grierson, Donald
Yin, Xue-ren
Chen, Kun-song
author_sort Zhu, Qing-gang
collection PubMed
description Persimmon fruit are unique in accumulating proanthocyanidins (tannins) during development, which cause astringency in mature fruit. In ‘Mopanshi’ persimmon, astringency can be removed by treatment with 95% CO(2), which increases the concentrations of ethanol and acetaldehyde by glycolysis, and precipitates the soluble tannin. A TGA transcription factor, DkTGA1, belonging to the bZIP super family, was isolated from an RNA-seq database and real-time quantitative PCR indicated that DkTGA1 was up-regulated by CO(2) treatment, in concert with the removal of astringency from persimmon fruit. Dual-luciferase assay revealed that DkTGA1 had a small (less than 2-fold), but significant effect on the promoters of de-astringency-related genes DkADH1, DkPDC2 and DkPDC3, which encode enzymes catalyzing formation of acetaldehyde and ethanol. A combination of DkTGA1 and a second transcription factor, DkERF9, shown previously to be related to de-astringency, showed additive effects on the activation of the DkPDC2 promoter. Yeast one-hybrid assay showed that DkERF9, but not DkTGA1, could bind to the DkPDC2 promoter. Thus, although DkTGA1 expression is positively associated with persimmon fruit de-astringency, trans-activation analyses with DkPDC2 indicates it is likely to act by binding indirectly DkPDC2 promoter, might with helps of DkERF9.
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spelling pubmed-48731922016-06-09 Involvement of DkTGA1 Transcription Factor in Anaerobic Response Leading to Persimmon Fruit Postharvest De-Astringency Zhu, Qing-gang Wang, Miao-miao Gong, Zi-yuan Fang, Fang Sun, Ning-jing Li, Xian Grierson, Donald Yin, Xue-ren Chen, Kun-song PLoS One Research Article Persimmon fruit are unique in accumulating proanthocyanidins (tannins) during development, which cause astringency in mature fruit. In ‘Mopanshi’ persimmon, astringency can be removed by treatment with 95% CO(2), which increases the concentrations of ethanol and acetaldehyde by glycolysis, and precipitates the soluble tannin. A TGA transcription factor, DkTGA1, belonging to the bZIP super family, was isolated from an RNA-seq database and real-time quantitative PCR indicated that DkTGA1 was up-regulated by CO(2) treatment, in concert with the removal of astringency from persimmon fruit. Dual-luciferase assay revealed that DkTGA1 had a small (less than 2-fold), but significant effect on the promoters of de-astringency-related genes DkADH1, DkPDC2 and DkPDC3, which encode enzymes catalyzing formation of acetaldehyde and ethanol. A combination of DkTGA1 and a second transcription factor, DkERF9, shown previously to be related to de-astringency, showed additive effects on the activation of the DkPDC2 promoter. Yeast one-hybrid assay showed that DkERF9, but not DkTGA1, could bind to the DkPDC2 promoter. Thus, although DkTGA1 expression is positively associated with persimmon fruit de-astringency, trans-activation analyses with DkPDC2 indicates it is likely to act by binding indirectly DkPDC2 promoter, might with helps of DkERF9. Public Library of Science 2016-05-19 /pmc/articles/PMC4873192/ /pubmed/27196670 http://dx.doi.org/10.1371/journal.pone.0155916 Text en © 2016 Zhu 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
Zhu, Qing-gang
Wang, Miao-miao
Gong, Zi-yuan
Fang, Fang
Sun, Ning-jing
Li, Xian
Grierson, Donald
Yin, Xue-ren
Chen, Kun-song
Involvement of DkTGA1 Transcription Factor in Anaerobic Response Leading to Persimmon Fruit Postharvest De-Astringency
title Involvement of DkTGA1 Transcription Factor in Anaerobic Response Leading to Persimmon Fruit Postharvest De-Astringency
title_full Involvement of DkTGA1 Transcription Factor in Anaerobic Response Leading to Persimmon Fruit Postharvest De-Astringency
title_fullStr Involvement of DkTGA1 Transcription Factor in Anaerobic Response Leading to Persimmon Fruit Postharvest De-Astringency
title_full_unstemmed Involvement of DkTGA1 Transcription Factor in Anaerobic Response Leading to Persimmon Fruit Postharvest De-Astringency
title_short Involvement of DkTGA1 Transcription Factor in Anaerobic Response Leading to Persimmon Fruit Postharvest De-Astringency
title_sort involvement of dktga1 transcription factor in anaerobic response leading to persimmon fruit postharvest de-astringency
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4873192/
https://www.ncbi.nlm.nih.gov/pubmed/27196670
http://dx.doi.org/10.1371/journal.pone.0155916
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