Literature DB >> 22345509

SR1, a calmodulin-binding transcription factor, modulates plant defense and ethylene-induced senescence by directly regulating NDR1 and EIN3.

Haozhen Nie1, Chunzhao Zhao, Guangheng Wu, Yingying Wu, Yongfang Chen, Dingzhong Tang.   

Abstract

Plant defense responses are tightly controlled by many positive and negative regulators to cope with attacks from various pathogens. Arabidopsis (Arabidopsis thaliana) ENHANCED DISEASE RESISTANCE2 (EDR2) is a negative regulator of powdery mildew resistance, and edr2 mutants display enhanced resistance to powdery mildew (Golovinomyces cichoracearum). To identify components acting in the EDR2 pathway, we screened for edr2 suppressors and identified a gain-of-function mutation in SIGNAL RESPONSIVE1 (SR1), which encodes a calmodulin-binding transcription activator. The sr1-4D gain-of-function mutation suppresses all edr2-associated phenotypes, including powdery mildew resistance, mildew-induced cell death, and ethylene-induced senescence. The sr1-4D single mutant is more susceptible to a Pseudomonas syringae pv tomato DC3000 virulent strain and to avirulent strains carrying avrRpt2 or avrRPS4 than the wild type. We show that SR1 directly binds to the promoter region of NON-RACE-SPECIFIC DISEASE RESISTANCE1 (NDR1), a key component in RESISTANCE TO PSEUDOMONAS SYRINGAE2-mediated plant immunity. Also, the ndr1 mutation suppresses the sr1-1 null allele, which shows enhanced resistance to both P. syringae pv tomato DC3000 avrRpt2 and G. cichoracearum. In addition, we show that SR1 regulates ethylene-induced senescence by directly binding to the ETHYLENE INSENSITIVE3 (EIN3) promoter region in vivo. Enhanced ethylene-induced senescence in sr1-1 is suppressed by ein3. Our data indicate that SR1 plays an important role in plant immunity and ethylene signaling by directly regulating NDR1 and EIN3.

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Year:  2012        PMID: 22345509      PMCID: PMC3320190          DOI: 10.1104/pp.111.192310

Source DB:  PubMed          Journal:  Plant Physiol        ISSN: 0032-0889            Impact factor:   8.340


  57 in total

Review 1.  Contrasting mechanisms of defense against biotrophic and necrotrophic pathogens.

Authors:  Jane Glazebrook
Journal:  Annu Rev Phytopathol       Date:  2005       Impact factor: 13.078

2.  NDR1 interaction with RIN4 mediates the differential activation of multiple disease resistance pathways in Arabidopsis.

Authors:  Brad Day; Douglas Dahlbeck; Brian J Staskawicz
Journal:  Plant Cell       Date:  2006-09-29       Impact factor: 11.277

3.  ATG2, an autophagy-related protein, negatively affects powdery mildew resistance and mildew-induced cell death in Arabidopsis.

Authors:  Yiping Wang; Marc T Nishimura; Ting Zhao; Dingzhong Tang
Journal:  Plant J       Date:  2011-07-14       Impact factor: 6.417

4.  Isolation and characterization of powdery mildew-resistant Arabidopsis mutants.

Authors:  J Vogel; S Somerville
Journal:  Proc Natl Acad Sci U S A       Date:  2000-02-15       Impact factor: 11.205

5.  Brush and spray: a high-throughput systemic acquired resistance assay suitable for large-scale genetic screening.

Authors:  Beibei Jing; Shaohua Xu; Mo Xu; Yan Li; Shuxin Li; Jinmei Ding; Yuelin Zhang
Journal:  Plant Physiol       Date:  2011-09-07       Impact factor: 8.340

6.  NDR1, a pathogen-induced component required for Arabidopsis disease resistance.

Authors:  K S Century; A D Shapiro; P P Repetti; D Dahlbeck; E Holub; B J Staskawicz
Journal:  Science       Date:  1997-12-12       Impact factor: 47.728

7.  Overexpression of the plasma membrane-localized NDR1 protein results in enhanced bacterial disease resistance in Arabidopsis thaliana.

Authors:  Peter Coppinger; Peter P Repetti; Brad Day; Douglas Dahlbeck; Angela Mehlert; Brian J Staskawicz
Journal:  Plant J       Date:  2004-10       Impact factor: 6.417

8.  Enhanced transcription of the Arabidopsis disease resistance genes RPW8.1 and RPW8.2 via a salicylic acid-dependent amplification circuit is required for hypersensitive cell death.

Authors:  Shunyuan Xiao; Samantha Brown; Elaine Patrick; Charles Brearley; John G Turner
Journal:  Plant Cell       Date:  2003-01       Impact factor: 11.277

9.  Ca(2+)/calmodulin regulates salicylic-acid-mediated plant immunity.

Authors:  Liqun Du; Gul S Ali; Kayla A Simons; Jingguo Hou; Tianbao Yang; A S N Reddy; B W Poovaiah
Journal:  Nature       Date:  2009-01-04       Impact factor: 49.962

10.  Calmodulin-binding transcription activator (CAMTA) 3 mediates biotic defense responses in Arabidopsis.

Authors:  Yael Galon; Roy Nave; Joy M Boyce; Dikla Nachmias; Marc R Knight; Hillel Fromm
Journal:  FEBS Lett       Date:  2008-02-25       Impact factor: 4.124

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  60 in total

Review 1.  Recent advances in calcium/calmodulin-mediated signaling with an emphasis on plant-microbe interactions.

Authors:  B W Poovaiah; Liqun Du; Huizhong Wang; Tianbao Yang
Journal:  Plant Physiol       Date:  2013-09-06       Impact factor: 8.340

2.  Biotrophy at Its Best: Novel Findings and Unsolved Mysteries of the Arabidopsis-Powdery Mildew Pathosystem.

Authors:  Hannah Kuhn; Mark Kwaaitaal; Stefan Kusch; Johanna Acevedo-Garcia; Hongpo Wu; Ralph Panstruga
Journal:  Arabidopsis Book       Date:  2016-06-30

3.  ENHANCED DISEASE RESISTANCE4 associates with CLATHRIN HEAVY CHAIN2 and modulates plant immunity by regulating relocation of EDR1 in Arabidopsis.

Authors:  Guangheng Wu; Simu Liu; Yaofei Zhao; Wei Wang; Zhaosheng Kong; Dingzhong Tang
Journal:  Plant Cell       Date:  2015-03-06       Impact factor: 11.277

4.  BRASSINOSTEROID-SIGNALING KINASE1 Phosphorylates MAPKKK5 to Regulate Immunity in Arabidopsis.

Authors:  Haojie Yan; Yaofei Zhao; Hua Shi; Juan Li; Yingchun Wang; Dingzhong Tang
Journal:  Plant Physiol       Date:  2018-02-12       Impact factor: 8.340

Review 5.  Calcium signaling and biotic defense responses in plants.

Authors:  Lei Zhang; Liqun Du; B W Poovaiah
Journal:  Plant Signal Behav       Date:  2014

6.  The Calmodulin-Binding Protein IQM1 Interacts with CATALASE2 to Affect Pathogen Defense.

Authors:  Tianxiao Lv; Xiaoming Li; Tian Fan; Huiting Luo; Chuping Xie; Yuping Zhou; Chang-En Tian
Journal:  Plant Physiol       Date:  2019-09-23       Impact factor: 8.340

7.  BR-SIGNALING KINASE1 physically associates with FLAGELLIN SENSING2 and regulates plant innate immunity in Arabidopsis.

Authors:  Hua Shi; Qiujing Shen; Yiping Qi; Haojie Yan; Haozhen Nie; Yongfang Chen; Ting Zhao; Fumiaki Katagiri; Dingzhong Tang
Journal:  Plant Cell       Date:  2013-03-26       Impact factor: 11.277

Review 8.  Ethylene signaling and regulation in plant growth and stress responses.

Authors:  Feifei Wang; Xiankui Cui; Yue Sun; Chun-Hai Dong
Journal:  Plant Cell Rep       Date:  2013-03-23       Impact factor: 4.570

9.  Genomic analysis reveals MATH gene(s) as candidate(s) for Plum pox virus (PPV) resistance in apricot (Prunus armeniaca L.).

Authors:  Elena Zuriaga; José Miguel Soriano; Tetyana Zhebentyayeva; Carlos Romero; Chris Dardick; Joaquín Cañizares; Maria Luisa Badenes
Journal:  Mol Plant Pathol       Date:  2013-05-14       Impact factor: 5.663

10.  Phosphorylation of the CAMTA3 Transcription Factor Triggers Its Destabilization and Nuclear Export.

Authors:  Xiyuan Jiang; Wolfgang Hoehenwarter; Dierk Scheel; Justin Lee
Journal:  Plant Physiol       Date:  2020-08-07       Impact factor: 8.340

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