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Hypersensitive Ethylene Signaling and ZMdPG1 Expression Lead to Fruit Softening and Dehiscence

‘Taishanzaoxia’ fruit rapid softening and dehiscence during ripening stage and this process is very sensitive to endogenous ethylene. In this study, we cloned five ethylene signal transcription factors (ZMdEIL1, ZMdEIL2, ZMdEIL3, ZMdERF1 and ZMdERF2) and one functional gene, ZMdPG1, encoding polygal...

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Detalles Bibliográficos
Autores principales: Li, Min, Zhang, Yanmin, Zhang, Zongying, Ji, Xiaohao, Zhang, Rui, Liu, Daliang, Gao, Liping, Zhang, Jing, Wang, Biao, Wu, Yusen, Wu, Shujing, Chen, Xiaoliu, Feng, Shouqian, Chen, Xuesen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3604122/
https://www.ncbi.nlm.nih.gov/pubmed/23527016
http://dx.doi.org/10.1371/journal.pone.0058745
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author Li, Min
Zhang, Yanmin
Zhang, Zongying
Ji, Xiaohao
Zhang, Rui
Liu, Daliang
Gao, Liping
Zhang, Jing
Wang, Biao
Wu, Yusen
Wu, Shujing
Chen, Xiaoliu
Feng, Shouqian
Chen, Xuesen
author_facet Li, Min
Zhang, Yanmin
Zhang, Zongying
Ji, Xiaohao
Zhang, Rui
Liu, Daliang
Gao, Liping
Zhang, Jing
Wang, Biao
Wu, Yusen
Wu, Shujing
Chen, Xiaoliu
Feng, Shouqian
Chen, Xuesen
author_sort Li, Min
collection PubMed
description ‘Taishanzaoxia’ fruit rapid softening and dehiscence during ripening stage and this process is very sensitive to endogenous ethylene. In this study, we cloned five ethylene signal transcription factors (ZMdEIL1, ZMdEIL2, ZMdEIL3, ZMdERF1 and ZMdERF2) and one functional gene, ZMdPG1, encoding polygalacturonase that could loose the cell connection which associated with fruit firmness decrease and fruit dehiscence to illustrate the reasons for this specific fruit phenotypic and physiological changes. Expression analysis showed that ZMdERF1 and ZMdEIL2 transcription were more abundant in ‘Taishanzaoxia’ softening fruit and dehiscent fruit and their expression was inhibited by an ethylene inhibitor 1-methylcyclopropene. Therefore, ZMdERF1 and ZMdEIL2 expression were responses to endogenous ethylene and associated with fruit softening and dehiscence. ZMdPG1 expression was induced when fruit softening and dehiscence but this induction can be blocked by 1-MCP, indicating that ZMdPG1 was essential for fruit softening and dehiscence and its expression was mediated by the endogenously occurred ethylene. ZMdPG1 overexpression in Arabidopsis led to silique early dehiscence while suppressing ZMdPG1 expression by antisense ZMdPG1 prevented silique naturally opening. The result also suggested that ZMdPG1 related with the connection between cells that contributed to fruit softening and dehiscence. ZMdERF1 was more closely related with ethylene signaling but it was not directly regulated the ZMdPG1, which might be regulated by the synergic pattern of ethylene transcription factors because of both the ZMdERF1 and ZMdERF2 could interact with ZMdEIL2.
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spelling pubmed-36041222013-03-22 Hypersensitive Ethylene Signaling and ZMdPG1 Expression Lead to Fruit Softening and Dehiscence Li, Min Zhang, Yanmin Zhang, Zongying Ji, Xiaohao Zhang, Rui Liu, Daliang Gao, Liping Zhang, Jing Wang, Biao Wu, Yusen Wu, Shujing Chen, Xiaoliu Feng, Shouqian Chen, Xuesen PLoS One Research Article ‘Taishanzaoxia’ fruit rapid softening and dehiscence during ripening stage and this process is very sensitive to endogenous ethylene. In this study, we cloned five ethylene signal transcription factors (ZMdEIL1, ZMdEIL2, ZMdEIL3, ZMdERF1 and ZMdERF2) and one functional gene, ZMdPG1, encoding polygalacturonase that could loose the cell connection which associated with fruit firmness decrease and fruit dehiscence to illustrate the reasons for this specific fruit phenotypic and physiological changes. Expression analysis showed that ZMdERF1 and ZMdEIL2 transcription were more abundant in ‘Taishanzaoxia’ softening fruit and dehiscent fruit and their expression was inhibited by an ethylene inhibitor 1-methylcyclopropene. Therefore, ZMdERF1 and ZMdEIL2 expression were responses to endogenous ethylene and associated with fruit softening and dehiscence. ZMdPG1 expression was induced when fruit softening and dehiscence but this induction can be blocked by 1-MCP, indicating that ZMdPG1 was essential for fruit softening and dehiscence and its expression was mediated by the endogenously occurred ethylene. ZMdPG1 overexpression in Arabidopsis led to silique early dehiscence while suppressing ZMdPG1 expression by antisense ZMdPG1 prevented silique naturally opening. The result also suggested that ZMdPG1 related with the connection between cells that contributed to fruit softening and dehiscence. ZMdERF1 was more closely related with ethylene signaling but it was not directly regulated the ZMdPG1, which might be regulated by the synergic pattern of ethylene transcription factors because of both the ZMdERF1 and ZMdERF2 could interact with ZMdEIL2. Public Library of Science 2013-03-20 /pmc/articles/PMC3604122/ /pubmed/23527016 http://dx.doi.org/10.1371/journal.pone.0058745 Text en © 2013 Li 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
Li, Min
Zhang, Yanmin
Zhang, Zongying
Ji, Xiaohao
Zhang, Rui
Liu, Daliang
Gao, Liping
Zhang, Jing
Wang, Biao
Wu, Yusen
Wu, Shujing
Chen, Xiaoliu
Feng, Shouqian
Chen, Xuesen
Hypersensitive Ethylene Signaling and ZMdPG1 Expression Lead to Fruit Softening and Dehiscence
title Hypersensitive Ethylene Signaling and ZMdPG1 Expression Lead to Fruit Softening and Dehiscence
title_full Hypersensitive Ethylene Signaling and ZMdPG1 Expression Lead to Fruit Softening and Dehiscence
title_fullStr Hypersensitive Ethylene Signaling and ZMdPG1 Expression Lead to Fruit Softening and Dehiscence
title_full_unstemmed Hypersensitive Ethylene Signaling and ZMdPG1 Expression Lead to Fruit Softening and Dehiscence
title_short Hypersensitive Ethylene Signaling and ZMdPG1 Expression Lead to Fruit Softening and Dehiscence
title_sort hypersensitive ethylene signaling and zmdpg1 expression lead to fruit softening and dehiscence
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3604122/
https://www.ncbi.nlm.nih.gov/pubmed/23527016
http://dx.doi.org/10.1371/journal.pone.0058745
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