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Functional Replacement of Ferredoxin by a Cyanobacterial Flavodoxin in Tobacco Confers Broad-Range Stress Tolerance.

Authors :
Tognetti, Vanesa B.
Palatnik, Javier F.
Fillat, Maria F.
Melzer, Michael
Hajirezaei, Mohammad-Reza
Valle, Estela M.
Carrillo, Nestor
Source :
Plant Cell. Aug2006, Vol. 18 Issue 8, p2035-2050. 16p. 1 Diagram, 1 Chart, 8 Graphs.
Publication Year :
2006

Abstract

Chloroplast ferredoxin (Fd) plays a pivotal role in plant cell metabolism by delivering reducing equivalents to various essential oxidoreductive pathways. Fd levels decrease under adverse environmental conditions in many microorganisms, including cyanobaoteria, which share a common ancestor with chloroplasts. Conversely, stress situations induce the synthesis of flavodoxin (FId), an electron carrier flavoprotein not found in plants, which can efficiently replace Fd in most electron transfer processes. We report here that chloroplast Fd also declined in plants exposed to oxidants or stress conditions. A purified cyanobacterial FId was able to mediate plant Fd-dependent reactions in vitro, including NADP+ and thioredoxin reduction. Tobacco (Nicotiana tabacum) plants expressing FId in chloroplasts displayed increased tolerance to multiple sources of stress, including redox-cycling herbicides, extreme temperatures, high irradiation, water deficit, and UV radiation. Oxidant buildup and oxidative inactivation of thioredoxin-dependent plastidic enzymes were decreased in stressed plants expressing plastid-targeted FId, suggesting that development of the tolerant phenotype relied on productive interaction of this flavoprotein with Fd-dependent oxidoreductive pathways of the host, most remarkably, thioredoxin reduction. The use of FId provides new tools to investigate the requirements of photosynthesis in planta and to increase plant stress tolerance based on the introduction of a cyanobacterial product that is free from endogenous regulation in higher plants. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10404651
Volume :
18
Issue :
8
Database :
Academic Search Index
Journal :
Plant Cell
Publication Type :
Academic Journal
Accession number :
22252924
Full Text :
https://doi.org/10.1105/tpc.106.042424