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Gibberellin Promotes Bolting and Flowering via the Floral Integrators RsFT and RsSOC1-1 under Marginal Vernalization in Radish

Gibberellic acid (GA) is one of the factors that promotes flowering in radish (Raphanus Sativus L.), although the mechanism mediating GA activation of flowering has not been determined. To identify this mechanism in radish, we compared the effects of GA treatment on late-flowering (NH-JS1) and early...

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Autores principales: Jung, Haemyeong, Jo, Seung Hee, Jung, Won Yong, Park, Hyun Ji, Lee, Areum, Moon, Jae Sun, Seong, So Yoon, Kim, Ju-Kon, Kim, Youn-Sung, Cho, Hye Sun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7284574/
https://www.ncbi.nlm.nih.gov/pubmed/32392867
http://dx.doi.org/10.3390/plants9050594
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author Jung, Haemyeong
Jo, Seung Hee
Jung, Won Yong
Park, Hyun Ji
Lee, Areum
Moon, Jae Sun
Seong, So Yoon
Kim, Ju-Kon
Kim, Youn-Sung
Cho, Hye Sun
author_facet Jung, Haemyeong
Jo, Seung Hee
Jung, Won Yong
Park, Hyun Ji
Lee, Areum
Moon, Jae Sun
Seong, So Yoon
Kim, Ju-Kon
Kim, Youn-Sung
Cho, Hye Sun
author_sort Jung, Haemyeong
collection PubMed
description Gibberellic acid (GA) is one of the factors that promotes flowering in radish (Raphanus Sativus L.), although the mechanism mediating GA activation of flowering has not been determined. To identify this mechanism in radish, we compared the effects of GA treatment on late-flowering (NH-JS1) and early-flowering (NH-JS2) radish lines. GA treatment promoted flowering in both lines, but not without vernalization. NH-JS2 plants displayed greater bolting and flowering pathway responses to GA treatment than NH-JS1. This variation was not due to differences in GA sensitivity in the two lines. We performed RNA-seq analysis to investigate GA-mediated changes in gene expression profiles in the two radish lines. We identified 313 upregulated, differentially expressed genes (DEGs) and 207 downregulated DEGs in NH-JS2 relative to NH-JS1 in response to GA. Of these, 21 and 8 genes were identified as flowering time and GA-responsive genes, respectively. The results of RNA-seq and quantitative PCR (qPCR) analyses indicated that RsFT and RsSOC1-1 expression levels increased after GA treatment in NH-JS2 plants but not in NH-JS1. These results identified the molecular mechanism underlying differences in the flowering-time genes of NH-JS1 and NH-JS2 after GA treatment under insufficient vernalization conditions.
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spelling pubmed-72845742020-06-19 Gibberellin Promotes Bolting and Flowering via the Floral Integrators RsFT and RsSOC1-1 under Marginal Vernalization in Radish Jung, Haemyeong Jo, Seung Hee Jung, Won Yong Park, Hyun Ji Lee, Areum Moon, Jae Sun Seong, So Yoon Kim, Ju-Kon Kim, Youn-Sung Cho, Hye Sun Plants (Basel) Article Gibberellic acid (GA) is one of the factors that promotes flowering in radish (Raphanus Sativus L.), although the mechanism mediating GA activation of flowering has not been determined. To identify this mechanism in radish, we compared the effects of GA treatment on late-flowering (NH-JS1) and early-flowering (NH-JS2) radish lines. GA treatment promoted flowering in both lines, but not without vernalization. NH-JS2 plants displayed greater bolting and flowering pathway responses to GA treatment than NH-JS1. This variation was not due to differences in GA sensitivity in the two lines. We performed RNA-seq analysis to investigate GA-mediated changes in gene expression profiles in the two radish lines. We identified 313 upregulated, differentially expressed genes (DEGs) and 207 downregulated DEGs in NH-JS2 relative to NH-JS1 in response to GA. Of these, 21 and 8 genes were identified as flowering time and GA-responsive genes, respectively. The results of RNA-seq and quantitative PCR (qPCR) analyses indicated that RsFT and RsSOC1-1 expression levels increased after GA treatment in NH-JS2 plants but not in NH-JS1. These results identified the molecular mechanism underlying differences in the flowering-time genes of NH-JS1 and NH-JS2 after GA treatment under insufficient vernalization conditions. MDPI 2020-05-07 /pmc/articles/PMC7284574/ /pubmed/32392867 http://dx.doi.org/10.3390/plants9050594 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jung, Haemyeong
Jo, Seung Hee
Jung, Won Yong
Park, Hyun Ji
Lee, Areum
Moon, Jae Sun
Seong, So Yoon
Kim, Ju-Kon
Kim, Youn-Sung
Cho, Hye Sun
Gibberellin Promotes Bolting and Flowering via the Floral Integrators RsFT and RsSOC1-1 under Marginal Vernalization in Radish
title Gibberellin Promotes Bolting and Flowering via the Floral Integrators RsFT and RsSOC1-1 under Marginal Vernalization in Radish
title_full Gibberellin Promotes Bolting and Flowering via the Floral Integrators RsFT and RsSOC1-1 under Marginal Vernalization in Radish
title_fullStr Gibberellin Promotes Bolting and Flowering via the Floral Integrators RsFT and RsSOC1-1 under Marginal Vernalization in Radish
title_full_unstemmed Gibberellin Promotes Bolting and Flowering via the Floral Integrators RsFT and RsSOC1-1 under Marginal Vernalization in Radish
title_short Gibberellin Promotes Bolting and Flowering via the Floral Integrators RsFT and RsSOC1-1 under Marginal Vernalization in Radish
title_sort gibberellin promotes bolting and flowering via the floral integrators rsft and rssoc1-1 under marginal vernalization in radish
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7284574/
https://www.ncbi.nlm.nih.gov/pubmed/32392867
http://dx.doi.org/10.3390/plants9050594
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