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Reactive Oxygen Species
Citations 1-108 of 108 total displayed.
BIOCHEMICAL PROCESSES AND MACROMOLECULAR STRUCTURES
BIOENERGETICS AND PHOTOSYNTHESIS
BREAKTHROUGH TECHNOLOGIES
CELL BIOLOGY AND SIGNAL TRANSDUCTION
DEVELOPMENT AND HORMONE ACTION
EDITORIAL
ENVIRONMENTAL STRESS AND ADAPTATION
ENVIRONMENTAL STRESS AND ADAPTATION TO STRESS
PLANTS INTERACTING WITH OTHER ORGANISMS
RESEARCH ARTICLES
SCIENTIFIC CORRESPONDENCE
SYSTEMS BIOLOGY, MOLECULAR BIOLOGY, AND GENE REGULATION
UPDATE ON REACTIVE OXYGEN SPECIES ACTIVATION OF Ca2+ CHANNELS
UPDATES
BIOCHEMICAL PROCESSES AND MACROMOLECULAR STRUCTURES
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Thioredoxin-Linked Proteins Are Reduced during Germination of Medicago truncatula Seeds
- Fatima Alkhalfioui, Michelle Renard, William H. Vensel, Joshua Wong, Charlene K. Tanaka, William J. Hurkman, Bob B. Buchanan, and Françoise Montrichard
Plant Physiology 2007; 144: 1559-1579.
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Characterization of Lipid Rafts from Medicago truncatula Root Plasma Membranes: A Proteomic Study Reveals the Presence of a Raft-Associated Redox System
- Benoit Lefebvre, Fabienne Furt, Marie-Andrée Hartmann, Louise V. Michaelson, Jean-Pierre Carde, Françoise Sargueil-Boiron, Michel Rossignol, Johnathan A. Napier, Julie Cullimore, Jean-Jacques Bessoule, and Sébastien Mongrand
Plant Physiology 2007; 144: 402-418.
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Plant Glutathione Peroxidases Are Functional Peroxiredoxins Distributed in Several Subcellular Compartments and Regulated during Biotic and Abiotic Stresses
- Nicolas Navrot, Valérie Collin, José Gualberto, Eric Gelhaye, Masakazu Hirasawa, Pascal Rey, David B. Knaff, Emmanuelle Issakidis, Jean-Pierre Jacquot, and Nicolas Rouhier
Plant Physiology 2006; 142: 1364-1379.
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Chloroplasts as a Nitric Oxide Cellular Source. Effect of Reactive Nitrogen Species on Chloroplastic Lipids and Proteins
- Sebastián Jasid, Marcela Simontacchi, Carlos G. Bartoli, and Susana Puntarulo
Plant Physiology 2006; 142: 1246-1255.
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Stress-Induced Protein S-Glutathionylation in Arabidopsis
- David P. Dixon, Mark Skipsey, Nicholas M. Grundy, and Robert Edwards
Plant Physiology 2005; 138: 2233-2244.
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Alterations in Tocopherol Cyclase Activity in Transgenic and Mutant Plants of Arabidopsis Affect Tocopherol Content, Tocopherol Composition, and Oxidative Stress
- Marion Kanwischer, Svetlana Porfirova, Eveline Bergmüller, and Peter Dörmann
Plant Physiology 2005; 137: 713-723.
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RNAi-Mediated Tocopherol Deficiency Impairs Photoassimilate Export in Transgenic Potato Plants
- Daniel Hofius, Mohammad-Reza Hajirezaei, Michael Geiger, Henning Tschiersch, Michael Melzer, and Uwe Sonnewald
Plant Physiology 2004; 135: 1256-1268.
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BIOENERGETICS AND PHOTOSYNTHESIS
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Decrease in Manganese Superoxide Dismutase Leads to Reduced Root Growth and Affects Tricarboxylic Acid Cycle Flux and Mitochondrial Redox Homeostasis
- Megan J. Morgan, Martin Lehmann, Markus Schwarzländer, Charles J. Baxter, Agata Sienkiewicz-Porzucek, Thomas C.R. Williams, Nicolas Schauer, Alisdair R. Fernie, Mark D. Fricker, R. George Ratcliffe, Lee J. Sweetlove, and Iris Finkemeier
Plant Physiology 2008; 147: 101-114.
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Transgenic Tobacco Plants Overexpressing Chloroplastic Ferredoxin-NADP(H) Reductase Display Normal Rates of Photosynthesis and Increased Tolerance to Oxidative Stress
- Ramiro E. Rodriguez, Anabella Lodeyro, Hugo O. Poli, Matias Zurbriggen, Martin Peisker, Javier F. Palatnik, Vanesa B. Tognetti, Henning Tschiersch, Mohammad-Reza Hajirezaei, Estela M. Valle, and Néstor Carrillo
Plant Physiology 2007; 143: 639-649.
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A Proposed Mechanism for the Inhibitory Effects of Oxidative Stress on Rubisco Assembly and Its Subunit Expression
- Idan Cohen, Joel A. Knopf, Vered Irihimovitch, and Michal Shapira
Plant Physiology 2005; 137: 738-746.
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BREAKTHROUGH TECHNOLOGIES
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Expression and Characterization of a Redox-Sensing Green Fluorescent Protein (Reduction-Oxidation-Sensitive Green Fluorescent Protein) in Arabidopsis
- Keni Jiang, Christian Schwarzer, Elizabeth Lally, Shibo Zhang, Steven Ruzin, Terry Machen, S. James Remington, and Lewis Feldman
Plant Physiology 2006; 141: 397-403.
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Laser Photoacoustic Detection Allows in Planta Detection of Nitric Oxide in Tobacco following Challenge with Avirulent and Virulent Pseudomonas syringae Pathovars
- Luis A.J. Mur, I. Edi Santosa, Lucas J.J. Laarhoven, Nicholas J. Holton, Frans J.M. Harren, and Aileen R. Smith
Plant Physiology 2005; 138: 1247-1258.
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CELL BIOLOGY AND SIGNAL TRANSDUCTION
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Nitric Oxide and cGMP Signaling in Calcium-Dependent Development of Cell Polarity in Ceratopteris richardii
- Mari L. Salmi, Kacey E. Morris, Stanley J. Roux, and D. Marshall Porterfield
Plant Physiology 2007; 144: 94-104.
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MEKK1 Is Required for flg22-Induced MPK4 Activation in Arabidopsis Plants
- Maria Cristina Suarez-Rodriguez, Lori Adams-Phillips, Yidong Liu, Huachun Wang, Shih-Heng Su, Peter J. Jester, Shuqun Zhang, Andrew F. Bent, and Patrick J. Krysan
Plant Physiology 2007; 143: 661-669.
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Extracellular ATP Induces the Accumulation of Superoxide via NADPH Oxidases in Arabidopsis
- Charlotte J. Song, Iris Steinebrunner, Xuanzhi Wang, Stephen C. Stout, and Stanley J. Roux
Plant Physiology 2006; 140: 1222-1232.
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Nitric Oxide Mediates the Fungal Elicitor-Induced Hypericin Production of Hypericum perforatum Cell Suspension Cultures through a Jasmonic-Acid-Dependent Signal Pathway
- Mao-Jun Xu, Ju-Fang Dong, and Mu-Yuan Zhu
Plant Physiology 2005; 139: 991-998.
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A Copper Chaperone for Superoxide Dismutase That Confers Three Types of Copper/Zinc Superoxide Dismutase Activity in Arabidopsis
- Chiung-Chih Chu, Wen-Chi Lee, Wen-Yu Guo, Shu-Mei Pan, Lih-Jen Chen, Hsou-min Li, and Tsung-Luo Jinn
Plant Physiology 2005; 139: 425-436.
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A Sphingolipid Elicitor-Inducible Mitogen-Activated Protein Kinase Is Regulated by the Small GTPase OsRac1 and Heterotrimeric G-Protein in Rice
- Damien Lieberherr, Nguyen Phuong Thao, Ayako Nakashima, Kenji Umemura, Tsutomu Kawasaki, and Ko Shimamoto
Plant Physiology 2005; 138: 1644-1652.
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Cellular and Subcellular Localization of Endogenous Nitric Oxide in Young and Senescent Pea Plants
- Francisco J. Corpas, Juan B. Barroso, Alfonso Carreras, Miguel Quirós, Ana M. León, María C. Romero-Puertas, Francisco J. Esteban, Raquel Valderrama, José M. Palma, Luisa M. Sandalio, Manuel Gómez, and Luis A. del Río
Plant Physiology 2004; 136: 2722-2733.
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Oxidative Stress-Induced Calcium Signaling in Arabidopsis
- Maike C. Rentel and Marc R. Knight
Plant Physiology 2004; 135: 1471-1479.
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Down-Regulation of Metallothionein, a Reactive Oxygen Scavenger, by the Small GTPase OsRac1 in Rice
- Hann Ling Wong, Tsuyoshi Sakamoto, Tsutomu Kawasaki, Kenji Umemura, and Ko Shimamoto
Plant Physiology 2004; 135: 1447-1456.
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DEVELOPMENT AND HORMONE ACTION
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Patterns of Protein Oxidation in Arabidopsis Seeds and during Germination
- Claudette Job, Loïc Rajjou, Yoann Lovigny, Maya Belghazi, and Dominique Job
Plant Physiology 2005; 138: 790-802.
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Production of Reactive Oxygen Intermediates (O2·, H2O2, and ·OH) by Maize Roots and Their Role in Wall Loosening and Elongation Growth
- Anja Liszkay, Esther van der Zalm, and Peter Schopfer
Plant Physiology 2004; 136: 3114-3123.
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EDITORIAL
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The Roles of Reactive Oxygen Species in Plant Cells
- Julia Bailey-Serres and Ron Mittler
Plant Physiology 2006; 141: 311.
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ENVIRONMENTAL STRESS AND ADAPTATION
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Peroxisomal Monodehydroascorbate Reductase. Genomic Clone Characterization and Functional Analysis under Environmental Stress Conditions
- Marina Leterrier, Francisco J. Corpas, Juan B. Barroso, Luisa M. Sandalio, and Luis A. del Río
Plant Physiology 2005; 138: 2111-2123.
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Increasing Tolerance to Ozone by Elevating Foliar Ascorbic Acid Confers Greater Protection against Ozone Than Increasing Avoidance
- Zhong Chen and Daniel R. Gallie
Plant Physiology 2005; 138: 1673-1689.
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Functional Analysis of Arabidopsis Ethylene-Responsive Element Binding Protein Conferring Resistance to Bax and Abiotic Stress-Induced Plant Cell Death
- Taro Ogawa, Ling Pan, Maki Kawai-Yamada, Li-Hua Yu, Saburo Yamamura, Tomotsugu Koyama, Sakihito Kitajima, Masaru Ohme-Takagi, Fumihiko Sato, and Hirofumi Uchimiya
Plant Physiology 2005; 138: 1436-1445.
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Tocopherols Protect Synechocystis sp. Strain PCC 6803 from Lipid Peroxidation
- Hiroshi Maeda, Yumiko Sakuragi, Donald A. Bryant, and Dean DellaPenna
Plant Physiology 2005; 138: 1422-1435.
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The Arabidopsis Plastidic Methionine Sulfoxide Reductase B Proteins. Sequence and Activity Characteristics, Comparison of the Expression with Plastidic Methionine Sulfoxide Reductase A, and Induction by Photooxidative Stress
- Christina Vieira Dos Santos, Stéphan Cuiné, Nicolas Rouhier, and Pascal Rey
Plant Physiology 2005; 138: 909-922.
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Heat Stress Phenotypes of Arabidopsis Mutants Implicate Multiple Signaling Pathways in the Acquisition of Thermotolerance
- Jane Larkindale, Jennifer D. Hall, Marc R. Knight, and Elizabeth Vierling
Plant Physiology 2005; 138: 882-897.
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Ozone-Induced Programmed Cell Death in the Arabidopsis radical-induced cell death1 Mutant
- Kirk Overmyer, Mikael Brosché, Riikka Pellinen, Tero Kuittinen, Hannele Tuominen, Reetta Ahlfors, Markku Keinänen, Mart Saarma, Dierk Scheel, and Jaakko Kangasjärvi
Plant Physiology 2005; 137: 1092-1104.
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The Role of Aquaporins and Membrane Damage in Chilling and Hydrogen Peroxide Induced Changes in the Hydraulic Conductance of Maize Roots
- Ricardo Aroca, Gabriela Amodeo, Silvia Fernández-Illescas, Eliot M. Herman, François Chaumont, and Maarten J. Chrispeels
Plant Physiology 2005; 137: 341-353.
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A Novel cis-Element That Is Responsive to Oxidative Stress Regulates Three Antioxidant Defense Genes in Rice
- Shigefumi Tsukamoto, Shigeto Morita, Etsuko Hirano, Hideki Yokoi, Takehiro Masumura, and Kunisuke Tanaka
Plant Physiology 2005; 137: 317-327.
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Inhibition of Blue Light-Dependent H+ Pumping by Abscisic Acid through Hydrogen Peroxide-Induced Dephosphorylation of the Plasma Membrane H+-ATPase in Guard Cell Protoplasts
- Xiao Zhang, Hengbin Wang, Atsushi Takemiya, Chun-peng Song, Toshinori Kinoshita, and Ken-ichiro Shimazaki
Plant Physiology 2004; 136: 4150-4158.
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Investigations into the Role of the Plastidial Peptide Methionine Sulfoxide Reductase in Response to Oxidative Stress in Arabidopsis
- Hernán M. Romero, Barbara S. Berlett, Philip J. Jensen, Eva J. Pell, and Ming Tien
Plant Physiology 2004; 136: 3784-3794.
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LESION SIMULATING DISEASE 1 Is Required for Acclimation to Conditions That Promote Excess Excitation Energy
- Alfonso Mateo, Per Mühlenbock, Christine Rustérucci, Christine Chi-Chen Chang, Zbigniew Miszalski, Barbara Karpinska, Jane E. Parker, Philip M. Mullineaux, and Stanislaw Karpinski
Plant Physiology 2004; 136: 2818-2830.
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Transcriptome Profiling of the Response of Arabidopsis Suspension Culture Cells to Suc Starvation
- Anthony L. Contento, Sang-Jin Kim, and Diane C. Bassham
Plant Physiology 2004; 135: 2330-2347.
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The Salt-Stress Signal Transduction Pathway That Activates the gpx1 Promoter Is Mediated by Intracellular H2O2, Different from the Pathway Induced by Extracellular H2O2
- Orna Avsian-Kretchmer, Yardena Gueta-Dahan, Simcha Lev-Yadun, Rachel Gollop, and Gozal Ben-Hayyim
Plant Physiology 2004; 135: 1685-1696.
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Tomato Phospholipid Hydroperoxide Glutathione Peroxidase Inhibits Cell Death Induced by Bax and Oxidative Stresses in Yeast and Plants
- Shaorong Chen, Zarir Vaghchhipawala, Wei Li, Han Asard, and Martin B. Dickman
Plant Physiology 2004; 135: 1630-1641.
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ENVIRONMENTAL STRESS AND ADAPTATION TO STRESS
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Arabidopsis PPR40 Connects Abiotic Stress Responses to Mitochondrial Electron Transport
- Laura Zsigmond, Gábor Rigó, András Szarka, Gyöngyi Székely, Krisztina Ötvös, Zsuzsanna Darula, Katalin F. Medzihradszky, Csaba Koncz, Zsuzsa Koncz, and László Szabados
Plant Physiology 2008; 146: 1721-1737.
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Examining the Specific Contributions of Individual Arabidopsis Metallothioneins to Copper Distribution and Metal Tolerance
- Woei-Jiun Guo, Metha Meetam, and Peter B. Goldsbrough
Plant Physiology 2008; 146: 1697-1706.
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Identification of Negative cis-Acting Elements in Response to Copper in the Chloroplastic Iron Superoxide Dismutase Gene of the Moss Barbula unguiculata
- Miwa Nagae, Masaru Nakata, and Yohsuke Takahashi
Plant Physiology 2008; 146: 1687-1696.
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Cooperative Ethylene and Jasmonic Acid Signaling Regulates Selenite Resistance in Arabidopsis
- Masanori Tamaoki, John L. Freeman, and Elizabeth A.H. Pilon-Smits
Plant Physiology 2008; 146: 1219-1230.
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Complex Signaling Network in Regulation of Adenosine 5'-Phosphosulfate Reductase by Salt Stress in Arabidopsis Roots
- Anna Koprivova, Kathryn Anne North, and Stanislav Kopriva
Plant Physiology 2008; 146: 1408-1420.
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Involvement of Polyamine Oxidase in Wound Healing
- Riccardo Angelini, Alessandra Tisi, Giuseppina Rea, Martha M. Chen, Maurizio Botta, Rodolfo Federico, and Alessandra Cona
Plant Physiology 2008; 146: 162-177.
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Zeaxanthin Has Enhanced Antioxidant Capacity with Respect to All Other Xanthophylls in Arabidopsis Leaves and Functions Independent of Binding to PSII Antennae
- Michel Havaux, Luca Dall'Osto, and Roberto Bassi
Plant Physiology 2007; 145: 1506-1520.
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A Bacterial Transgene for Catalase Protects Translation of D1 Protein during Exposure of Salt-Stressed Tobacco Leaves to Strong Light
- Khaled Al-Taweel, Toshio Iwaki, Yukinori Yabuta, Shigeru Shigeoka, Norio Murata, and Akira Wadano
Plant Physiology 2007; 145: 258-265.
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The Arabidopsis BAP1 and BAP2 Genes Are General Inhibitors of Programmed Cell Death
- Huijun Yang, Shuhua Yang, Yongqing Li, Jian Hua, Huijun Yang, Shuhua Yang, Yongqing Li, and Jian Hua
Plant Physiology 2007; 145: 135-146.
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Genome-Wide Gene Expression Analysis Reveals a Critical Role for CRYPTOCHROME1 in the Response of Arabidopsis to High Irradiance
- Tatjana Kleine, Peter Kindgren, Catherine Benedict, Luke Hendrickson, and Åsa Strand
Plant Physiology 2007; 144: 1391-1406.
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Nitric Oxide Synthase-Dependent Nitric Oxide Production Is Associated with Salt Tolerance in Arabidopsis
- Min-Gui Zhao, Qiu-Ying Tian, and Wen-Hao Zhang
Plant Physiology 2007; 144: 206-217.
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Degradation of Oxidized Proteins by Autophagy during Oxidative Stress in Arabidopsis
- Yan Xiong, Anthony L. Contento, Phan Quang Nguyen, and Diane C. Bassham
Plant Physiology 2007; 143: 291-299.
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Interaction between Nitric Oxide and Ethylene in the Induction of Alternative Oxidase in Ozone-Treated Tobacco Plants
- Luisa Ederli, Roberta Morettini, Andrea Borgogni, Claus Wasternack, Otto Miersch, Lara Reale, Francesco Ferranti, Nicola Tosti, and Stefania Pasqualini
Plant Physiology 2006; 142: 595-608.
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Characterization of Transformed Arabidopsis with Altered Alternative Oxidase Levels and Analysis of Effects on Reactive Oxygen Species in Tissue
- Ann L. Umbach, Fabio Fiorani, and James N. Siedow
Plant Physiology 2005; 139: 1806-1820.
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The Alternative Oxidase of Plant Mitochondria Is Involved in the Acclimation of Shoot Growth at Low Temperature. A Study of Arabidopsis AOX1a Transgenic Plants
- Fabio Fiorani, Ann L. Umbach, and James N. Siedow
Plant Physiology 2005; 139: 1795-1805.
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The Diphenylether Herbicide Lactofen Induces Cell Death and Expression of Defense-Related Genes in Soybean
- Madge Y. Graham
Plant Physiology 2005; 139: 1784-1794.
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Protection against Photooxidative Injury of Tobacco Leaves by 2-Alkenal Reductase. Detoxication of Lipid Peroxide-Derived Reactive Carbonyls
- Jun'ichi Mano, Jun'ichi Mano, Enric Belles-Boix, Enric Belles-Boix, Elena Babiychuk, Elena Babiychuk, Dirk Inzé, Dirk Inzé, Yoshimitsu Torii, Yoshimitsu Torii, Eiji Hiraoka, Eiji Hiraoka, Koichi Takimoto, Koichi Takimoto, Luit Slooten, Luit Slooten, Kozi Asada, Kozi Asada, Sergei Kushnir, and Sergei Kushnir
Plant Physiology 2005; 139: 1773-1783.
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Ascorbic Acid Deficiency Activates Cell Death and Disease Resistance Responses in Arabidopsis
- Valeria Pavet, Valeria Pavet, Enrique Olmos, Enrique Olmos, Guy Kiddle, Guy Kiddle, Shaheen Mowla, Shaheen Mowla, Sanjay Kumar, Sanjay Kumar, John Antoniw, John Antoniw, María E. Alvarez, María E. Alvarez, Christine H. Foyer, and Christine H. Foyer
Plant Physiology 2005; 139: 1291-1303.
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The Zinc-Finger Protein Zat12 Plays a Central Role in Reactive Oxygen and Abiotic Stress Signaling in Arabidopsis
- Sholpan Davletova, Karen Schlauch, Jesse Coutu, and Ron Mittler
Plant Physiology 2005; 139: 847-856.
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Genome-Wide Analysis of Hydrogen Peroxide-Regulated Gene Expression in Arabidopsis Reveals a High Light-Induced Transcriptional Cluster Involved in Anthocyanin Biosynthesis
- Sandy Vanderauwera, Philip Zimmermann, Stéphane Rombauts, Steven Vandenabeele, Christian Langebartels, Wilhelm Gruissem, Dirk Inzé, and Frank Van Breusegem
Plant Physiology 2005; 139: 806-821.
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PLANTS INTERACTING WITH OTHER ORGANISMS
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MYB72 Is Required in Early Signaling Steps of Rhizobacteria-Induced Systemic Resistance in Arabidopsis
- Sjoerd Van der Ent, Bas W.M. Verhagen, Ronald Van Doorn, Daniel Bakker, Maarten G. Verlaan, Michiel J.C. Pel, Ruth G. Joosten, Marcel C.G. Proveniers, L.C. Van Loon, Jurriaan Ton, and Corné M.J. Pieterse
Plant Physiology 2008; 146: 1293-1304.
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Ascorbate and Homoglutathione Metabolism in Common Bean Nodules under Stress Conditions and during Natural Senescence
- Jorge Loscos, Manuel A. Matamoros, and Manuel Becana
Plant Physiology 2008; 146: 1282-1292.
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Metabolic Profiles of Lolium perenne Are Differentially Affected by Nitrogen Supply, Carbohydrate Content, and Fungal Endophyte Infection
- Susanne Rasmussen, Anthony J. Parsons, Karl Fraser, Hong Xue, and Jonathan A. Newman
Plant Physiology 2008; 146: 1440-1453.
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The Plant Defense Elicitor Cryptogein Stimulates Clathrin-Mediated Endocytosis Correlated with Reactive Oxygen Species Production in Bright Yellow-2 Tobacco Cells
- Nathalie Leborgne-Castel, Jeannine Lherminier, Christophe Der, Jérôme Fromentin, Valérie Houot, and Françoise Simon-Plas
Plant Physiology 2008; 146: 1255-1266.
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Hydrogen Peroxide Generation by the Pepper Extracellular Peroxidase CaPO2 Activates Local and Systemic Cell Death and Defense Response to Bacterial Pathogens
- Hyong Woo Choi, Young Jin Kim, Sung Chul Lee, Jeum Kyu Hong, and Byung Kook Hwang
Plant Physiology 2007; 145: 890-904.
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Ethylene Is One of the Key Elements for Cell Death and Defense Response Control in the Arabidopsis Lesion Mimic Mutant vad1
- Olivier Bouchez, Carine Huard, Séverine Lorrain, Dominique Roby, and Claudine Balagué
Plant Physiology 2007; 145: 465-477.
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AtNUDT7, a Negative Regulator of Basal Immunity in Arabidopsis, Modulates Two Distinct Defense Response Pathways and Is Involved in Maintaining Redox Homeostasis
- Xiaochun Ge, Guo-Jing Li, Sheng-Bing Wang, Huifen Zhu, Tong Zhu, Xun Wang, and Yiji Xia
Plant Physiology 2007; 145: 204-215.
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The Response of Carbon Metabolism and Antioxidant Defenses of Alfalfa Nodules to Drought Stress and to the Subsequent Recovery of Plants
- Loreto Naya, Ruben Ladrera, Javier Ramos, Esther M. González, Cesar Arrese-Igor, Frank R. Minchin, and Manuel Becana
Plant Physiology 2007; 144: 1104-1114.
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Vitamin B1-Induced Priming Is Dependent on Hydrogen Peroxide and the NPR1 Gene in Arabidopsis
- Il-Pyung Ahn, Soonok Kim, Yong-Hwan Lee, and Seok-Cheol Suh
Plant Physiology 2007; 143: 838-848.
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Polyamine Oxidase Is One of the Key Elements for Oxidative Burst to Induce Programmed Cell Death in Tobacco Cultured Cells
- Hiroshi Yoda, Yoshinobu Hiroi, and Hiroshi Sano
Plant Physiology 2006; 142: 193-206.
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Effects of Feeding Spodoptera littoralis on Lima Bean Leaves. III. Membrane Depolarization and Involvement of Hydrogen Peroxide
- Massimo E. Maffei, Axel Mithöfer, Gen-Ichiro Arimura, Hannes Uchtenhagen, Simone Bossi, Cinzia M. Bertea, Laura Starvaggi Cucuzza, Mara Novero, Veronica Volpe, Stefano Quadro, and Wilhelm Boland
Plant Physiology 2006; 140: 1022-1035.
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The Outcomes of Concentration-Specific Interactions between Salicylate and Jasmonate Signaling Include Synergy, Antagonism, and Oxidative Stress Leading to Cell Death
- Luis A.J. Mur, Paul Kenton, Rainer Atzorn, Otto Miersch, and Claus Wasternack
Plant Physiology 2006; 140: 249-262.
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Induction of Thioredoxin Is Required for Nodule Development to Reduce Reactive Oxygen Species Levels in Soybean Roots
- Mi-Young Lee, Ki-Hye Shin, Yun-Kyoung Kim, Ji-Yeon Suh, Young-Yun Gu, Mi-Ran Kim, Yoon-Sun Hur, Ora Son, Jin-Sun Kim, Eunsook Song, Myeong-Sok Lee, Kyoung Hee Nam, Keum Hee Hwang, Mi-Kyung Sung, Ho-Jung Kim, Jong-Yoon Chun, Miey Park, Tae-In Ahn, Choo Bong Hong, Suk-Ha Lee, Hong Jae Park, Jong-Sug Park, Desh Pal S. Verma, and Choong-Ill Cheon
Plant Physiology 2005; 139: 1881-1889.
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Cauliflower mosaic virus, a Compatible Pathogen of Arabidopsis, Engages Three Distinct Defense-Signaling Pathways and Activates Rapid Systemic Generation of Reactive Oxygen Species
- Andrew J. Love, Byung Wook Yun, Valérie Laval, Gary J. Loake, and Joel J. Milner
Plant Physiology 2005; 139: 935-948.
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Fatty Acid Hydroperoxides and H2O2 in the Execution of Hypersensitive Cell Death in Tobacco Leaves
- Jean-Luc Montillet, Sangpen Chamnongpol, Christine Rustérucci, James Dat, Brigitte van de Cotte, Jean-Pierre Agnel, Christine Battesti, Dirk Inzé, Frank Van Breusegem, and Christian Triantaphylidès
Plant Physiology 2005; 138: 1516-1526.
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The Mycorrhizal Fungus Gigaspora margarita Possesses a CuZn Superoxide Dismutase That Is Up-Regulated during Symbiosis with Legume Hosts
- Luisa Lanfranco, Mara Novero, and Paola Bonfante
Plant Physiology 2005; 137: 1319-1330.
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RESEARCH ARTICLES
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RNAi Silencing of Genes for Elicitation or Biosynthesis of 5-Deoxyisoflavonoids Suppresses Race-Specific Resistance and Hypersensitive Cell Death in Phytophthora sojae Infected Tissues
- Terrence L. Graham, Madge Y. Graham, Senthil Subramanian, and Oliver Yu
Plant Physiology 2007; 144: 728-740.
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A Symbiotic Plant Peroxidase Involved in Bacterial Invasion of the Tropical Legume Sesbania rostrata
- Jeroen Den Herder, Sam Lievens, Stephane Rombauts, Marcelle Holsters, and Sofie Goormachtig
Plant Physiology 2007; 144: 717-727.
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-Tocopherol Plays a Role in Photosynthesis and Macronutrient Homeostasis of the Cyanobacterium Synechocystis sp. PCC 6803 That Is Independent of Its Antioxidant Function
- Yumiko Sakuragi, Hiroshi Maeda, Dean DellaPenna, and Donald A. Bryant
Plant Physiology 2006; 141: 508-521.
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Regulation of Flowering in the Long-Day Grass Lolium temulentum by Gibberellins and the FLOWERING LOCUS T Gene
- Rod W. King, Thomas Moritz, Lloyd T. Evans, Jerome Martin, Claus H. Andersen, Cheryl Blundell, Igor Kardailsky, and Peter M. Chandler
Plant Physiology 2006; 141: 498-507.
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Double-Strand Break Repair in Plants Is Developmentally Regulated
- Alexander Boyko, Franz Zemp, Jody Filkowski, and Igor Kovalchuk
Plant Physiology 2006; 141: 488-497.
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Mitogen-Activated Protein Kinase Is Involved in Abscisic Acid-Induced Antioxidant Defense and Acts Downstream of Reactive Oxygen Species Production in Leaves of Maize Plants
- Aying Zhang, Mingyi Jiang, Jianhua Zhang, Mingpu Tan, and Xiuli Hu
Plant Physiology 2006; 141: 475-487.
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Chloroplastic NAD(P)H Dehydrogenase in Tobacco Leaves Functions in Alleviation of Oxidative Damage Caused by Temperature Stress
- Peng Wang, Wei Duan, Atsushi Takabayashi, Tsuyoshi Endo, Toshiharu Shikanai, Ji-Yu Ye, and Hualing Mi
Plant Physiology 2006; 141: 465-474.
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Inhibition of Brassinosteroid Biosynthesis by Either a dwarf4 Mutation or a Brassinosteroid Biosynthesis Inhibitor Rescues Defects in Tropic Responses of Hypocotyls in the Arabidopsis Mutant nonphototropic hypocotyl 4
- Daisuke Nakamoto, Akimitsu Ikeura, Tadao Asami, and Kotaro T. Yamamoto
Plant Physiology 2006; 141: 456-464.
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Maturation of Arabidopsis Seeds Is Dependent on Glutathione Biosynthesis within the Embryo
- Narelle G. Cairns, Maciej Pasternak, Andreas Wachter, Christopher S. Cobbett, and Andreas J. Meyer
Plant Physiology 2006; 141: 446-455.
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Transcriptomic Footprints Disclose Specificity of Reactive Oxygen Species Signaling in Arabidopsis
- Ilya Gadjev, Sandy Vanderauwera, Tsanko S. Gechev, Christophe Laloi, Ivan N. Minkov, Vladimir Shulaev, Klaus Apel, Dirk Inzé, Ron Mittler, and Frank Van Breusegem
Plant Physiology 2006; 141: 436-445.
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Ascorbate Oxidase-Dependent Changes in the Redox State of the Apoplast Modulate Gene Transcript Accumulation Leading to Modified Hormone Signaling and Orchestration of Defense Processes in Tobacco
- Cristina Pignocchi, Guy Kiddle, Iker Hernández, Simon J. Foster, Amparo Asensi, Tahar Taybi, Jeremy Barnes, and Christine H. Foyer
Plant Physiology 2006; 141: 423-435.
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Combined Transcript and Metabolite Profiling of Arabidopsis Leaves Reveals Fundamental Effects of the Thiol-Disulfide Status on Plant Metabolism
- Anna Kolbe, Sandra N. Oliver, Alisdair R. Fernie, Mark Stitt, Joost T. van Dongen, and Peter Geigenberger
Plant Physiology 2006; 141: 412-422.
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Nitric Oxide- and Hydrogen Peroxide-Responsive Gene Regulation during Cell Death Induction in Tobacco
- Elisa Zago, Stijn Morsa, James F. Dat, Philippe Alard, Alberto Ferrarini, Dirk Inzé, Massimo Delledonne, and Frank Van Breusegem
Plant Physiology 2006; 141: 404-411.
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SCIENTIFIC CORRESPONDENCE
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Extracellular ATP Induces Nitric Oxide Production in Tomato Cell Suspensions
- Noelia P. Foresi, Ana M. Laxalt, Claudia V. Tonón, Claudia A. Casalongué, and Lorenzo Lamattina
Plant Physiology 2007; 145: 589-592.
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A Role for ETR1 in Hydrogen Peroxide Signaling in Stomatal Guard Cells
- Radhika Desikan, John T. Hancock, Jo Bright, Judith Harrison, Iain Weir, Richard Hooley, and Steven J. Neill
Plant Physiology 2005; 137: 831-834.
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SYSTEMS BIOLOGY, MOLECULAR BIOLOGY, AND GENE REGULATION
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Down-Regulation of a SILENT INFORMATION REGULATOR2-Related Histone Deacetylase Gene, OsSRT1, Induces DNA Fragmentation and Cell Death in Rice
- Limin Huang, Qianwen Sun, Fujun Qin, Chen Li, Yu Zhao, and Dao-Xiu Zhou
Plant Physiology 2007; 144: 1508-1519.
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Dehydroascorbate Reductase Affects Leaf Growth, Development, and Function
- Zhong Chen and Daniel R. Gallie
Plant Physiology 2006; 142: 775-787.
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Desensitization of GSTF8 Induction by a Prior Chemical Treatment Is Long Lasting and Operates in a Tissue-Dependent Manner
- Rhonda C. Foley, Pia G. Sappl, Rafael Perl-Treves, A. Harvey Millar, and Karam B. Singh
Plant Physiology 2006; 142: 245-253.
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UPDATE ON REACTIVE OXYGEN SPECIES ACTIVATION OF Ca2+ CHANNELS
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Reactive Oxygen Species Activation of Plant Ca2+ Channels. A Signaling Mechanism in Polar Growth, Hormone Transduction, Stress Signaling, and Hypothetically Mechanotransduction
- Izumi C. Mori and Julian I. Schroeder
Plant Physiology 2004; 135: 702-708.
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UPDATES
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Unraveling the Tapestry of Networks Involving Reactive Oxygen Species in Plants
- Frank Van Breusegem, Julia Bailey-Serres, and Ron Mittler
Plant Physiology 2008; 147: 978-984.
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Production and Scavenging of Reactive Oxygen Species in Chloroplasts and Their Functions
- Kozi Asada
Plant Physiology 2006; 141: 391-396.
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Reactive Oxygen Species in Plant Cell Death
- Frank Van Breusegem and James F. Dat
Plant Physiology 2006; 141: 384-390.
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Cross Talk between Reactive Nitrogen and Oxygen Species during the Hypersensitive Disease Resistance Response
- Federica Zaninotto, Sylvain La Camera, Annalisa Polverari, and Massimo Delledonne
Plant Physiology 2006; 141: 379-383.
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Reactive Oxygen Species Signaling in Response to Pathogens
- Miguel Angel Torres, Jonathan D.G. Jones, Jeffery L. Dangl, Miguel Angel Torres, Jonathan D.G. Jones, and Jeffery L. Dangl
Plant Physiology 2006; 141: 373-378.
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Metabolic and Proteomic Markers for Oxidative Stress. New Tools for Reactive Oxygen Species Research
- Vladimir Shulaev, David J. Oliver, Vladimir Shulaev, and David J. Oliver
Plant Physiology 2006; 141: 367-372.
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Mitochondrial Reactive Oxygen Species. Contribution to Oxidative Stress and Interorganellar Signaling
- David M. Rhoads, David M. Rhoads, Ann L. Umbach, Ann L. Umbach, Chalivendra C. Subbaiah, Chalivendra C. Subbaiah, James N. Siedow, and James N. Siedow
Plant Physiology 2006; 141: 357-366.
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Mitogen-Activated Protein Kinases and Reactive Oxygen Species Signaling in Plants
- Andrea Pitzschke, Heribert Hirt, Andrea Pitzschke, and Heribert Hirt
Plant Physiology 2006; 141: 351-356.
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Spatial Dependence for Hydrogen Peroxide-Directed Signaling in Light-Stressed Plants
- Philip M. Mullineaux, Stanislaw Karpinski, Neil R. Baker, Philip M. Mullineaux, Stanislaw Karpinski, and Neil R. Baker
Plant Physiology 2006; 141: 346-350.
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Control of Plant Development by Reactive Oxygen Species
- Catherine Gapper and Liam Dolan
Plant Physiology 2006; 141: 341-345.
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Production of Reactive Oxygen Species by Plant NADPH Oxidases
- Moshe Sagi and Robert Fluhr
Plant Physiology 2006; 141: 336-340.
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Reactive Oxygen Species and Reactive Nitrogen Species in Peroxisomes. Production, Scavenging, and Role in Cell Signaling
- Luis A. del Río, Luisa M. Sandalio, Francisco J. Corpas, José M. Palma, Juan B. Barroso, Luis A. del Río, Luisa M. Sandalio, Francisco J. Corpas, José M. Palma, and Juan B. Barroso
Plant Physiology 2006; 141: 330-335.
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The Role of Reactive Oxygen Species in Hormonal Responses
- June M. Kwak, Vinh Nguyen, and Julian I. Schroeder
Plant Physiology 2006; 141: 323-329.
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Reactive Species and Antioxidants. Redox Biology Is a Fundamental Theme of Aerobic Life
- Barry Halliwell
Plant Physiology 2006; 141: 312-322.
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