The Calcineurin B-Like Calcium Sensors CBL1 and CBL9 Together with Their Interacting Protein Kinase CIPK26 Regulate the Arabidopsis NADPH Oxidase RBOHF
Maria M. Drerup,Kathrin Schlücking,Kenji Hashimoto,Prabha Manishankar,Leonie Steinhorst,Kazuyuki Kuchitsu,Jörg Kudla +6 more
TLDR
A direct interconnection between CBL-CIPK-mediated Ca(2+) signaling and ROS signaling in plants is identified and evidence for a synergistic activation of the NADPH oxidase RBOHF is provided by directCa(2+)-binding to its EF-hands and Ca( 2+)-induced phosphorylation by CBL1/9-C IPK26 complexes.About:
This article is published in Molecular Plant.The article was published on 2013-03-01 and is currently open access. It has received 327 citations till now. The article focuses on the topics: NADPH oxidase & Signal transduction.read more
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Salinity-Induced Cytosolic Alkaline Shifts in Arabidopsis Roots Require the SOS Pathway
TL;DR: In this paper , the authors analyzed the response of Arabidopsis roots expressing the genetically encoded ratiometric pH-sensor pHGFP fused to marker proteins for the recruitment of the sensor to the cytosolic side of the tonoplast and the plasma membrane.
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The captivating role of calcium in plant-microbe interaction
TL;DR: In this paper , the authors present a review of the role of calcium in plant immune response, including early sensing of calcium oscillation, signalling events, and comprehensive mechanistic roles of calcium within plants during pathogenic ingression.
Abscisic Acid Drives Stomatal Closure through Increases in Hydrogen Peroxide in Mitochondria
TL;DR: It is demonstrated that ABA elevates H2O2 accumulation in guard cell mitochondria, which is required to drive stomatal closure, and can be phenocopied with rotenone, which increased mitochondrial ROS.
References
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Genomic Libraries and a Host Strain Designed for Highly Efficient Two-Hybrid Selection in Yeast
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ROS signaling: the new wave?
Ron Mittler,Ron Mittler,Sandy Vanderauwera,Nobuhiro Suzuki,Gad Miller,Vanesa B. Tognetti,Klaas Vandepoele,Marty Gollery,Vladimir Shulaev,Frank Van Breusegem +9 more
TL;DR: This review will attempt to address several key questions related to the use of ROS as signaling molecules in cells, including the dynamics and specificity of ROS signaling, networking of ROS with other signaling pathways, ROS signaling within and across different cells, ROS waves and the evolution of the ROS gene network.
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NADPH oxidase AtrbohD and AtrbohF genes function in ROS‐dependent ABA signaling in Arabidopsis
June M. Kwak,Izumi C. Mori,Zhen-Ming Pei,Nathalie Leonhardt,Miguel Angel Torres,Jeffery L. Dangl,Rachel E. Bloom,Sara Bodde,Jonathan D. G. Jones,Julian I. Schroeder +9 more
TL;DR: Identification of two partially redundant Arabidopsis guard cell‐expressed NADPH oxidase catalytic subunit genes, AtrbohD and atrbohF, are reported, providing direct molecular genetic and cell biological evidence that ROS are rate‐limiting second messengers in ABA signaling, and that the AtrbOHD and AtrabohF NADPH oxidationases function in guard cell ABA signal transduction.
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Visualization of protein interactions in living plant cells using bimolecular fluorescence complementation.
Michael Walter,Christina Chaban,Katia Schütze,Oliver Batistič,Katrin Weckermann,Christian Näke,Dragica Blazevic,Christopher Grefen,Karin Schumacher,Claudia Oecking,Klaus Harter,Jörg Kudla +11 more
TL;DR: The implementation of a bimolecular fluorescence complementation technique for visualization of protein-protein interactions in plant cells revealed a remarkable signal fluorescence intensity of interacting protein complexes as well as a high reproducibility and technical simplicity of the method in different plant systems.
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Arabidopsis gp91phox homologues AtrbohD and AtrbohF are required for accumulation of reactive oxygen intermediates in the plant defense response
TL;DR: In this paper, the authors analyzed lines carrying dSpm insertions in the highly expressed AtrbohD and AtrabohF genes, which are required for full ROI production observed during incompatible interactions with the bacterial pathogen Pseudomonas syringae pv.