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The SUMO E3 ligase, AtSIZ1, regulates flowering by controlling a salicylic acid-mediated floral promotion pathway and through affects on FLC chromatin structure

Loss-of-function siz1 mutations caused early flowering under short days. siz1 plants have elevated salicylic acid (SA) levels, which are restored to wild-type levels by expressing nahG, bacterial salicylate hydroxylase. The early flowering of siz1 was suppressed by expressing nahG, indicating that S...

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Autores principales: Jin, Jing Bo, Jin, Yin Hua, Lee, Jiyoung, Miura, Kenji, Yoo, Chan Yul, Kim, Woe-Yeon, Van Oosten, Michael, Hyun, Youbong, Somers, David E, Lee, Ilha, Yun, Dae-Jin, Bressan, Ray A, Hasegawa, Paul M
Formato: Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2254019/
https://www.ncbi.nlm.nih.gov/pubmed/18069938
http://dx.doi.org/10.1111/j.1365-313X.2007.03359.x
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author Jin, Jing Bo
Jin, Yin Hua
Lee, Jiyoung
Miura, Kenji
Yoo, Chan Yul
Kim, Woe-Yeon
Van Oosten, Michael
Hyun, Youbong
Somers, David E
Lee, Ilha
Yun, Dae-Jin
Bressan, Ray A
Hasegawa, Paul M
author_facet Jin, Jing Bo
Jin, Yin Hua
Lee, Jiyoung
Miura, Kenji
Yoo, Chan Yul
Kim, Woe-Yeon
Van Oosten, Michael
Hyun, Youbong
Somers, David E
Lee, Ilha
Yun, Dae-Jin
Bressan, Ray A
Hasegawa, Paul M
author_sort Jin, Jing Bo
collection PubMed
description Loss-of-function siz1 mutations caused early flowering under short days. siz1 plants have elevated salicylic acid (SA) levels, which are restored to wild-type levels by expressing nahG, bacterial salicylate hydroxylase. The early flowering of siz1 was suppressed by expressing nahG, indicating that SIZ1 represses the transition to flowering mainly through suppressing SA-dependent floral promotion signaling under short days. Previous results have shown that exogenous SA treatment does not suppress late flowering of autonomous pathway mutants. However, the siz1 mutation accelerated flowering time of an autonomous pathway mutant, luminidependens, by reducing the expression of FLOWERING LOCUS C (FLC), a floral repressor. This result suggests that SIZ1 promotes FLC expression, possibly through an SA-independent pathway. Evidence indicates that SIZ1 is required for the full activation of FLC expression in the late-flowering FRIGIDA background. Interestingly, increased FLC expression and late flowering of an autonomous pathway mutant, flowering locus d (fld), was not suppressed by siz1, suggesting that SIZ1 promotes FLC expression by repressing FLD. Consistent with this, SIZ1 facilitates sumoylation of FLD that can be suppressed by mutations in three predicted sumoylation motifs in FLD (i.e. FLDK3R). Furthermore, expression of FLDK3R in fld protoplasts strongly reduced FLC transcription compared with expression of FLD, and this affect was linked to reduced acetylation of histone 4 in FLC chromatin. Taken together, the results suggest that SIZ1 is a floral repressor that not only represses the SA-dependent pathway, but also promotes FLC expression by repressing FLD activity through sumoylation, which is required for full FLC expression in a FRIGIDA background.
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spelling pubmed-22540192008-03-10 The SUMO E3 ligase, AtSIZ1, regulates flowering by controlling a salicylic acid-mediated floral promotion pathway and through affects on FLC chromatin structure Jin, Jing Bo Jin, Yin Hua Lee, Jiyoung Miura, Kenji Yoo, Chan Yul Kim, Woe-Yeon Van Oosten, Michael Hyun, Youbong Somers, David E Lee, Ilha Yun, Dae-Jin Bressan, Ray A Hasegawa, Paul M Plant J Original Articles Loss-of-function siz1 mutations caused early flowering under short days. siz1 plants have elevated salicylic acid (SA) levels, which are restored to wild-type levels by expressing nahG, bacterial salicylate hydroxylase. The early flowering of siz1 was suppressed by expressing nahG, indicating that SIZ1 represses the transition to flowering mainly through suppressing SA-dependent floral promotion signaling under short days. Previous results have shown that exogenous SA treatment does not suppress late flowering of autonomous pathway mutants. However, the siz1 mutation accelerated flowering time of an autonomous pathway mutant, luminidependens, by reducing the expression of FLOWERING LOCUS C (FLC), a floral repressor. This result suggests that SIZ1 promotes FLC expression, possibly through an SA-independent pathway. Evidence indicates that SIZ1 is required for the full activation of FLC expression in the late-flowering FRIGIDA background. Interestingly, increased FLC expression and late flowering of an autonomous pathway mutant, flowering locus d (fld), was not suppressed by siz1, suggesting that SIZ1 promotes FLC expression by repressing FLD. Consistent with this, SIZ1 facilitates sumoylation of FLD that can be suppressed by mutations in three predicted sumoylation motifs in FLD (i.e. FLDK3R). Furthermore, expression of FLDK3R in fld protoplasts strongly reduced FLC transcription compared with expression of FLD, and this affect was linked to reduced acetylation of histone 4 in FLC chromatin. Taken together, the results suggest that SIZ1 is a floral repressor that not only represses the SA-dependent pathway, but also promotes FLC expression by repressing FLD activity through sumoylation, which is required for full FLC expression in a FRIGIDA background. Blackwell Publishing Ltd 2008-02 /pmc/articles/PMC2254019/ /pubmed/18069938 http://dx.doi.org/10.1111/j.1365-313X.2007.03359.x Text en © 2007 The Authors Journal compilation 2007 Blackwell Publishing Ltd https://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Creative Commons Deed, Attribution 2.5, which does not permit commercial exploitation.
spellingShingle Original Articles
Jin, Jing Bo
Jin, Yin Hua
Lee, Jiyoung
Miura, Kenji
Yoo, Chan Yul
Kim, Woe-Yeon
Van Oosten, Michael
Hyun, Youbong
Somers, David E
Lee, Ilha
Yun, Dae-Jin
Bressan, Ray A
Hasegawa, Paul M
The SUMO E3 ligase, AtSIZ1, regulates flowering by controlling a salicylic acid-mediated floral promotion pathway and through affects on FLC chromatin structure
title The SUMO E3 ligase, AtSIZ1, regulates flowering by controlling a salicylic acid-mediated floral promotion pathway and through affects on FLC chromatin structure
title_full The SUMO E3 ligase, AtSIZ1, regulates flowering by controlling a salicylic acid-mediated floral promotion pathway and through affects on FLC chromatin structure
title_fullStr The SUMO E3 ligase, AtSIZ1, regulates flowering by controlling a salicylic acid-mediated floral promotion pathway and through affects on FLC chromatin structure
title_full_unstemmed The SUMO E3 ligase, AtSIZ1, regulates flowering by controlling a salicylic acid-mediated floral promotion pathway and through affects on FLC chromatin structure
title_short The SUMO E3 ligase, AtSIZ1, regulates flowering by controlling a salicylic acid-mediated floral promotion pathway and through affects on FLC chromatin structure
title_sort sumo e3 ligase, atsiz1, regulates flowering by controlling a salicylic acid-mediated floral promotion pathway and through affects on flc chromatin structure
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2254019/
https://www.ncbi.nlm.nih.gov/pubmed/18069938
http://dx.doi.org/10.1111/j.1365-313X.2007.03359.x
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