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1.
J Exp Bot ; 58(10): 2595-607, 2007.
Article in English | MEDLINE | ID: mdl-17545225

ABSTRACT

The A-type response regulator ARR4 is an element in the two-component signalling network of Arabidopsis. ARR4 interacts with the N-terminus of the red/far-red light photoreceptor phytochrome B (phyB) and functions as a modulator of photomorphogenesis. In concert with other A-type response regulators, ARR4 also participates in the modulation of the cytokinin response pathway. Here evidence is presented that ARR4 directly modulates the activity state of phyB in planta, not only under inductive but also under extended irradiation with red light. Mutation of the phosphorylatable aspartate to asparagine within the receiver domain creates a version of ARR4 that negatively affects photomorphogenesis. Additional evidence suggests that ARR4 activity is regulated by a phosphorelay mechanism that depends on the AHK family of cytokinin receptors. Accordingly, the ability of ARR4 to function on phyB is modified by exogenous application of cytokinin. These results implicate a cross-talk between cytokinin and light signalling mediated by ARR4. This cross-talk enables the plant to adjust light reponsiveness to endogenous requirements in growth and development.


Subject(s)
Arabidopsis Proteins/metabolism , Arabidopsis/metabolism , Phytochrome B/metabolism , Signal Transduction , Arabidopsis/genetics , Arabidopsis/radiation effects , Arabidopsis Proteins/genetics , Arabidopsis Proteins/physiology , Cytokinins/pharmacology , Light , Phosphorylation
2.
EMBO J ; 23(16): 3290-302, 2004 Aug 18.
Article in English | MEDLINE | ID: mdl-15282545

ABSTRACT

Hormones are important regulators of plant growth and development. In Arabidopsis, perception of the phytohormones ethylene and cytokinin is accomplished by a family of sensor histidine kinases including ethylene-resistant (ETR) 1 and cytokinin-response (CRE) 1. We identified the Arabidopsis response regulator 2 (ARR2) as a signalling component functioning downstream of ETR1 in ethylene signal transduction. Analyses of loss-of-function and ARR2-overexpressing lines as well as functional assays in protoplasts indicate an important role of ARR2 in mediating ethylene responses. Additional investigations indicate that an ETR1-initiated phosphorelay regulates the transcription factor activity of ARR2. This mechanism may create a novel signal transfer from endoplasmic reticulum-associated ETR1 to the nucleus for the regulation of ethylene-response genes. Furthermore, global expression profiling revealed a complex ARR2-involving two-component network that interferes with a multitude of different signalling pathways and thereby contributes to the highly integrated signal processing machinery in higher plants.


Subject(s)
Arabidopsis Proteins/metabolism , Arabidopsis/metabolism , DNA-Binding Proteins/metabolism , Ethylenes/metabolism , Plant Growth Regulators/metabolism , Signal Transduction , Transcription Factors/metabolism , Arabidopsis/genetics , Arabidopsis/growth & development , Arabidopsis Proteins/genetics , Aspartic Acid/genetics , Aspartic Acid/metabolism , Cytokinins/metabolism , DNA-Binding Proteins/deficiency , DNA-Binding Proteins/genetics , Gene Expression Regulation, Plant , Mutation/genetics , Phosphorylation , Transcription Factors/deficiency , Transcription Factors/genetics , Transcription, Genetic/genetics , Transcriptional Activation
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