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Two Novel Anoxia-Induced Ethylene Response Factors That Interact with Promoters of Deastringency-Related Genes from Persimmon

A hypoxic environment is generally undesirable for most plants and stimulates anaerobic metabolism. It is a beneficial treatment, however, for the removal of astringency from persimmon to improve the fruit quality after harvest. High soluble tannins (SCTs) content is one of most important causes of...

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Autores principales: Min, Ting, Fang, Fang, Ge, Hang, Shi, Yan-na, Luo, Zheng-rong, Yao, Yun-cong, Grierson, Donald, Yin, Xue-ren, Chen, Kun-song
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4013125/
https://www.ncbi.nlm.nih.gov/pubmed/24805136
http://dx.doi.org/10.1371/journal.pone.0097043
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author Min, Ting
Fang, Fang
Ge, Hang
Shi, Yan-na
Luo, Zheng-rong
Yao, Yun-cong
Grierson, Donald
Yin, Xue-ren
Chen, Kun-song
author_facet Min, Ting
Fang, Fang
Ge, Hang
Shi, Yan-na
Luo, Zheng-rong
Yao, Yun-cong
Grierson, Donald
Yin, Xue-ren
Chen, Kun-song
author_sort Min, Ting
collection PubMed
description A hypoxic environment is generally undesirable for most plants and stimulates anaerobic metabolism. It is a beneficial treatment, however, for the removal of astringency from persimmon to improve the fruit quality after harvest. High soluble tannins (SCTs) content is one of most important causes of astringency. High CO(2) (95%) treatment effectively reduced SCTs in both “Mopan” and “Gongcheng-shuishi” persimmon fruit by causing increases in acetaldehyde. Using RNA-seq and realtime PCR, twelve ethylene response factor genes (DkERF11-22) were isolated and characterized, to determine those responsive to high CO(2) treatment. Only two genes, DkERF19 and DkERF22, showed trans-activation effects on the promoters of deastringency-related genes pyruvate decarboxylase genes (DkPDC2 and DkPDC3) and the transcript levels of these genes was enhanced by hypoxia. Moreover, DkERF19 and the previously isolated DkERF9 had additive effects on activating the DkPDC2 promoter. Taken together, these results provide further evidence that transcriptome changes in the level of DkERF mRNAs regulate deastringency-related genes and their role in the mechanism of persimmon fruit deastringency is discussed.
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spelling pubmed-40131252014-05-09 Two Novel Anoxia-Induced Ethylene Response Factors That Interact with Promoters of Deastringency-Related Genes from Persimmon Min, Ting Fang, Fang Ge, Hang Shi, Yan-na Luo, Zheng-rong Yao, Yun-cong Grierson, Donald Yin, Xue-ren Chen, Kun-song PLoS One Research Article A hypoxic environment is generally undesirable for most plants and stimulates anaerobic metabolism. It is a beneficial treatment, however, for the removal of astringency from persimmon to improve the fruit quality after harvest. High soluble tannins (SCTs) content is one of most important causes of astringency. High CO(2) (95%) treatment effectively reduced SCTs in both “Mopan” and “Gongcheng-shuishi” persimmon fruit by causing increases in acetaldehyde. Using RNA-seq and realtime PCR, twelve ethylene response factor genes (DkERF11-22) were isolated and characterized, to determine those responsive to high CO(2) treatment. Only two genes, DkERF19 and DkERF22, showed trans-activation effects on the promoters of deastringency-related genes pyruvate decarboxylase genes (DkPDC2 and DkPDC3) and the transcript levels of these genes was enhanced by hypoxia. Moreover, DkERF19 and the previously isolated DkERF9 had additive effects on activating the DkPDC2 promoter. Taken together, these results provide further evidence that transcriptome changes in the level of DkERF mRNAs regulate deastringency-related genes and their role in the mechanism of persimmon fruit deastringency is discussed. Public Library of Science 2014-05-07 /pmc/articles/PMC4013125/ /pubmed/24805136 http://dx.doi.org/10.1371/journal.pone.0097043 Text en © 2014 Min 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Min, Ting
Fang, Fang
Ge, Hang
Shi, Yan-na
Luo, Zheng-rong
Yao, Yun-cong
Grierson, Donald
Yin, Xue-ren
Chen, Kun-song
Two Novel Anoxia-Induced Ethylene Response Factors That Interact with Promoters of Deastringency-Related Genes from Persimmon
title Two Novel Anoxia-Induced Ethylene Response Factors That Interact with Promoters of Deastringency-Related Genes from Persimmon
title_full Two Novel Anoxia-Induced Ethylene Response Factors That Interact with Promoters of Deastringency-Related Genes from Persimmon
title_fullStr Two Novel Anoxia-Induced Ethylene Response Factors That Interact with Promoters of Deastringency-Related Genes from Persimmon
title_full_unstemmed Two Novel Anoxia-Induced Ethylene Response Factors That Interact with Promoters of Deastringency-Related Genes from Persimmon
title_short Two Novel Anoxia-Induced Ethylene Response Factors That Interact with Promoters of Deastringency-Related Genes from Persimmon
title_sort two novel anoxia-induced ethylene response factors that interact with promoters of deastringency-related genes from persimmon
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4013125/
https://www.ncbi.nlm.nih.gov/pubmed/24805136
http://dx.doi.org/10.1371/journal.pone.0097043
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