Interaction between nitric oxide and ethylene in the induction of alternative oxidase in ozone-treated tobacco plants.

Abstract:

:The higher plant mitochondrial electron transport chain contains, in addition to the cytochrome chain, an alternative pathway that terminates with a single homodimeric protein, the alternative oxidase (AOX). We recorded temporary inhibition of cytochrome capacity respiration and activation of AOX pathway capacity in tobacco plants (Nicotiana tabacum L. cv BelW3) fumigated with ozone (O(3)). The AOX1a gene was used as a molecular probe to investigate its regulation by signal molecules such as hydrogen peroxide, nitric oxide (NO), ethylene (ET), salicylic acid, and jasmonic acid (JA), all of them reported to be involved in the O(3) response. Fumigation leads to accumulation of hydrogen peroxide in mitochondria and early accumulation of NO in leaf tissues. Although ET accumulation was high in leaf tissues 5 h after the start of O(3) fumigation, it declined during the recovery period. There were no differences in the JA and 12-oxo-phytodienoic acid levels of treated and untreated plants. NO, JA, and ET induced AOX1a mRNA accumulation. Using pharmacological inhibition of ET and NO, we demonstrate that both NO- and ET-dependent pathways are required for O(3)-induced up-regulation of AOX1a. However, only NO is indispensable for the activation of AOX1a gene expression.

journal_name

Plant Physiol

journal_title

Plant physiology

authors

Ederli L,Morettini R,Borgogni A,Wasternack C,Miersch O,Reale L,Ferranti F,Tosti N,Pasqualini S

doi

10.1104/pp.106.085472

subject

Has Abstract

pub_date

2006-10-01 00:00:00

pages

595-608

issue

2

eissn

0032-0889

issn

1532-2548

pii

pp.106.085472

journal_volume

142

pub_type

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