Reactive oxygen species and their role in plant defence and cell wall metabolism

被引:0
作者
Jose A. O’Brien
Arsalan Daudi
Vernon S. Butt
G. Paul Bolwell
机构
[1] University of London,School of Biological Sciences, Royal Holloway
[2] Vlaams Instituut voor Biotechnologie VIB,Department of Plant Systems Biology
[3] Ghent University,Department of Plant Biotechnology and Genetics
[4] University of California,Department of Plant Pathology
来源
Planta | 2012年 / 236卷
关键词
NADPH oxidase; Peroxidase; Metabolomics; Proteomics; MAMPs; Reactive oxygen species;
D O I
暂无
中图分类号
学科分类号
摘要
Harnessing the toxic properties of reactive oxygen species (ROS) to fight off invading pathogens can be considered a major evolutionary success story. All aerobic organisms have evolved the ability to regulate the levels of these toxic intermediates, whereas some have evolved elaborate signalling pathways to dramatically increase the levels of ROS and use them as weapons in mounting a defence response, a process commonly referred to as the oxidative burst. The balance between steady state levels of ROS and the exponential increase in these levels during the oxidative burst has begun to shed light on complex signalling networks mediated by these molecules. Here, we discuss the different sources of ROS that are present in plant cells and review their role in the oxidative burst. We further describe two well-studied ROS generating systems, the NADPH oxidase and apoplastic peroxidase proteins, and their role as the primary producers of ROS during pathogen invasion. We then discuss what is known about the metabolic and proteomic fluxes that occur in plant cells during the oxidative burst and after pathogen recognition, and try to highlight underlying biochemical processes that may provide more insight on the complex regulation of ROS in plants.
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页码:765 / 779
页数:14
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共 669 条
[1]  
Albenne CC(2009)Plant cell wall proteomics: mass spectrometry data, a trove for research on protein structure/function relationships Mol Plant 2 977-989
[2]  
Canut H(2010)Dual metabolomics: a novel approach to understanding plant–pathogen interactions Phytochemistry 71 590-597
[3]  
Boudart G(1998)Reactive oxygen intermediates mediate a systemic signal network in the establishment of plant immunity Cell 92 773-784
[4]  
Zhang Y(2004)Reactive oxygen species: metabolism, oxidative stress, and signal transduction Annu Rev Plant Biol 55 373-399
[5]  
San Clemente HLN(1989)Rapid stimulation of an oxidative burst during elicitation of cultured plant cells: role in defense and signal transduction Plant Physiol 90 109-116
[6]  
Pont-Lezica R(1993)Elicitor-induced changes in Ca Plant Physiol 103 407-412
[7]  
Jamet E(2009) influx, K Plant Physiol 151 2006-2017
[8]  
Allwood WJ(2005) efflux, and 4-hydroxybenzoic acid synthesis in protoplasts of Physiol Mol Plant Pathol 67 296-303
[9]  
Clarke A(1995) L Annu Rev Phytopathol 33 299-321
[10]  
Goodacre R(2000)An ABC transporter mutation alters root exudation of phytochemicals that provoke an overhaul of natural soil microbiota Physiol Mol Plant Pathol 57 159-167