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1.
J Exp Bot ; 67(13): 3793-807, 2016 06.
Article in English | MEDLINE | ID: mdl-27053718

ABSTRACT

To coordinate growth, development and responses to environmental stimuli, plant cells need to communicate the metabolic state between different sub-compartments of the cell. This requires signalling pathways, including protein kinases, secondary messengers such as Ca(2+) ions or reactive oxygen species (ROS) as well as metabolites and plant hormones. The signalling networks involved have been intensively studied over recent decades and have been elaborated more or less in detail. However, it has become evident that these signalling networks are also tightly interconnected and often merge at common targets such as a distinct group of transcription factors, most prominently ABI4, which are amenable to regulation by phosphorylation, potentially also in a Ca(2+)- or ROS-dependent fashion. Moreover, the signalling pathways connect several organelles or subcellular compartments, not only in functional but also in physical terms, linking for example chloroplasts to the nucleus or peroxisomes to chloroplasts thereby enabling physical routes for signalling by metabolite exchange or even protein translocation. Here we briefly discuss these novel findings and try to connect them in order to point out the remaining questions and emerging developments in plant organellar signalling.


Subject(s)
Organelles/physiology , Plant Physiological Phenomena , Signal Transduction , Cell Nucleus/metabolism , Plant Cells/metabolism , Stress, Physiological
2.
Trends Plant Sci ; 20(1): 3-11, 2015 Jan.
Article in English | MEDLINE | ID: mdl-25457110

ABSTRACT

Reactive oxygen species (ROS)- and calcium- dependent signaling pathways play well-established roles during plant innate immunity. Chloroplasts host major biosynthetic pathways and have central roles in energy production, redox homeostasis, and retrograde signaling. However, the organelle's importance in immunity has been somehow overlooked. Recent findings suggest that the chloroplast also has an unanticipated function as a hub for ROS- and calcium-signaling that affects immunity responses at an early stage after pathogen attack. In this opinion article, we discuss a chloroplastic calcium-ROS signaling branch of plant innate immunity. We propose that this chloroplastic branch acts as a light-dependent rheostat that, through the production of ROS, influences the severity of the immune response.


Subject(s)
Calcium/metabolism , Plant Immunity , Reactive Oxygen Species/metabolism , Signal Transduction , Chloroplasts/metabolism , Light
3.
FEBS Lett ; 585(24): 3935-40, 2011 Dec 15.
Article in English | MEDLINE | ID: mdl-22062157

ABSTRACT

Chloroplasts and mitochondria are central to crucial cellular processes in plants and contribute to a whole range of metabolic pathways. The use of calcium ions as a secondary messenger in and around organelles is increasingly appreciated as an important mediator of plant cell signaling, enabling plants to develop or to acclimatize to changing environmental conditions. Here, we have studied the four calcium-dependent mitochondrial carriers that are encoded in the Arabidopsis genome. An unknown substrate carrier, which was previously found to localize to chloroplasts, is proposed to present a calcium-dependent S-adenosyl methionine carrier. For three predicted ATP/phosphate carriers, we present experimental evidence that they can function as mitochondrial ATP-importers.


Subject(s)
Adenosine Triphosphate/metabolism , Arabidopsis/cytology , Arabidopsis/metabolism , Calcium-Binding Proteins/metabolism , Mitochondria/metabolism , Plastids/metabolism , S-Adenosylmethionine/metabolism , Amino Acid Sequence , Arabidopsis/genetics , Arabidopsis Proteins/chemistry , Arabidopsis Proteins/genetics , Arabidopsis Proteins/metabolism , Calcium/metabolism , Calcium Signaling , Calcium-Binding Proteins/chemistry , Calcium-Binding Proteins/genetics , EF Hand Motifs , Genome, Plant/genetics , Molecular Sequence Data , Phylogeny , Protein Transport , Substrate Specificity
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