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PMID: 12376637 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Changes in the antioxidant systems as part of the signaling pathway responsible for the programmed cell death activated by nitric oxide and reactive oxygen species in tobacco Bright-Yellow 2 cells.

Plant physiology ·Vol. 130 ·No. 2 ·2002-10-00 ·Pages 698-708

de Pinto MC, Tommasi F, De Gara L

Abstract

Nitric oxide (NO) has been postulated to be required, together with reactive oxygen species (ROS), for the activation of the hypersensitive reaction, a defense response induced in the noncompatible plant-pathogen interaction. However, its involvement in activating programmed cell death (PCD) in plant cells has been questioned. In this paper, the involvement of the cellular antioxidant metabolism in the signal transduction triggered by these bioactive molecules has been investigated. NO and ROS levels were singularly or simultaneously increased in tobacco (Nicotiana tabacum cv Bright-Yellow 2) cells by the addition to the culture medium of NO and/or ROS generators. The individual increase in NO or ROS had different effects on the studied parameters than the simultaneous increase in the two reactive species. NO generation did not cause an increase in phenylalanine ammonia-lyase (PAL) activity or induction of cellular death. It only induced minor changes in ascorbate (ASC) and glutathione (GSH) metabolisms. An increase in ROS induced oxidative stress in the cells, causing an oxidation of the ASC and GSH redox pairs; however, it had no effect on PAL activity and did not induce cell death when it was generated at low concentrations. In contrast, the simultaneous increase of NO and ROS activated a process of death with the typical cytological and biochemical features of hypersensitive PCD and a remarkable rise in PAL activity. Under the simultaneous generation of NO and ROS, the cellular antioxidant capabilities were also suppressed. The involvement of ASC and GSH as part of the transduction pathway leading to PCD is discussed.

MeSH Terms
Antioxidants/metabolism Apoptosis/drug effects,physiology Ascorbate Peroxidases Ascorbic Acid/metabolism Cell Line Cells, Cultured Glucose/pharmacology Glucose Oxidase/pharmacology Glutathione/metabolism Glutathione Disulfide/metabolism Glutathione Reductase/metabolism Hydrogen Peroxide/metabolism Immunity, Innate/drug effects Lipid Peroxidation/drug effects NADH, NADPH Oxidoreductases/metabolism Nitric Oxide/metabolism Nitroprusside/pharmacology Oxidation-Reduction/drug effects Oxidative Stress/drug effects Oxidoreductases/metabolism Peroxidases/metabolism Phenylalanine Ammonia-Lyase/metabolism Plant Diseases/microbiology Reactive Oxygen Species/metabolism Signal Transduction/physiology Tobacco/cytology,metabolism
Chemicals
Antioxidants Reactive Oxygen Species Nitroprusside Nitric Oxide Hydrogen Peroxide Oxidoreductases Glucose Oxidase Peroxidases Ascorbate Peroxidases NADH, NADPH Oxidoreductases monodehydroascorbate reductase (NADH) Glutathione Reductase glutathione dehydrogenase (ascorbate) Phenylalanine Ammonia-Lyase Glutathione Glucose Ascorbic Acid Glutathione Disulfide
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
de Pinto Maria Concetta
Dipartimento di Biologia e Patologia Vegetale, Via E. Orabona 4, I-70125 Bari, Italy.
Tommasi Franca
De Gara Laura
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Article Info
Journal
Plant physiology
Abbr.
Plant Physiol
ISSN
0032-0889
Published
2002-10-00
Pages
698-708
Language
English
Region
United States
NLM ID
0401224
PMCID
PMC166599
Subset
IM
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