The water-water cycle is essential for chloroplast protection in the absence of stress

被引:179
作者
Rizhsky, L
Liang, HJ
Mittler, R
机构
[1] Technion Israel Inst Technol, Dept Biol, IL-32000 Haifa, Israel
[2] Iowa State Univ, Inst Plant Sci, Dept Bot, Ames, IA 50011 USA
关键词
D O I
10.1074/jbc.M304987200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Maintaining electron flow through the photosynthetic apparatus, even in the absence of a sufficient amount of NADP(+) as an electron acceptor, is essential for chloroplast protection from photooxidative stress. At least two different pathways are thought to participate in this process, i.e. cyclic electron flow and the water-water cycle. Although the function of the water-water cycle was inferred from a number of biochemical and physiological studies, genetic evidence for the function of this cycle is very limited. Here we show that knockdown Arabidopsis plants with suppressed expression of the key water-water cycle enzyme, thylakoid-attached copper/zinc superoxide dismutase (KD-SOD), are suppressed in their growth and development. Chloroplast size, chlorophyll content, and photosynthetic activity were also reduced in KD-SOD plants. Microarray analysis of KD-SOD plants, grown under controlled conditions, revealed changes in transcript expression consistent with an acclimation response to light stress. Although a number of transcripts involved in the defense of plants from oxidative stress were induced in KD-SOD plants, and seedlings of KD-SOD plants were more tolerant to oxidative stress, these mechanisms were unable to compensate for the suppression of the water-water cycle in mature leaves. Thus, the localization of copper/zinc superoxide dismutase at the vicinity of photosystem I may be essential for its function. Our studies provide genetic evidence for the importance of the water-water cycle in protecting the photosynthetic apparatus of higher plants from photooxidative damage.
引用
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页码:38921 / 38925
页数:5
相关论文
共 24 条
[1]   The Arabidopsis immutans mutation affects plastid differentiation and the morphogenesis of white and green sectors in variegated plants [J].
Aluru, MR ;
Bae, H ;
Wu, DY ;
Rodermel, SR .
PLANT PHYSIOLOGY, 2001, 127 (01) :67-77
[2]   The water-water cycle in chloroplasts: Scavenging of active oxygens and dissipation of excess photons [J].
Asada, K .
ANNUAL REVIEW OF PLANT PHYSIOLOGY AND PLANT MOLECULAR BIOLOGY, 1999, 50 :601-639
[3]   Regulation of S-like ribonuclease levels in arabidopsis.: Antisense inhibition of RNS1 or RNS2 elevates anthocyanin accumulation [J].
Bariola, PA ;
MacIntosh, GC ;
Green, PJ .
PLANT PHYSIOLOGY, 1999, 119 (01) :331-342
[4]   Protein oxidation in aging, disease, and oxidative stress [J].
Berlett, BS ;
Stadtman, ER .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (33) :20313-20316
[5]   Chloroplast Cu/Zn-superoxide dismutase is a highly sensitive site in cucumber leaves chilled in the light [J].
Choi, SM ;
Jeong, SW ;
Jeong, WJ ;
Kwon, SY ;
Chow, WS ;
Park, YI .
PLANTA, 2002, 216 (02) :315-324
[6]   Reactive oxygen species produced by NADPH oxidase regulate plant cell growth [J].
Foreman, J ;
Demidchik, V ;
Bothwell, JHF ;
Mylona, P ;
Miedema, H ;
Torres, MA ;
Linstead, P ;
Costa, S ;
Brownlee, C ;
Jones, JDG ;
Davies, JM ;
Dolan, L .
NATURE, 2003, 422 (6930) :442-446
[7]   Imaging of photo-oxidative stress responses in leaves [J].
Fryer, MJ ;
Oxborough, K ;
Mullineaux, PM ;
Baker, NR .
JOURNAL OF EXPERIMENTAL BOTANY, 2002, 53 (372) :1249-1254
[8]   INCREASED RESISTANCE TO OXIDATIVE STRESS IN TRANSGENIC PLANTS THAT OVEREXPRESS CHLOROPLASTIC CU/ZN SUPEROXIDE-DISMUTASE [J].
GUPTA, AS ;
HEINEN, JL ;
HOLADAY, AS ;
BURKE, JJ ;
ALLEN, RD .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1993, 90 (04) :1629-1633
[9]   Protection of the photosynthetic apparatus against damage by excessive illumination in homoiohydric leaves and poikilohydric mosses and lichens [J].
Heber, U ;
Bukhov, NG ;
Shuvalov, VA ;
Kobayashi, Y ;
Lange, OL .
JOURNAL OF EXPERIMENTAL BOTANY, 2001, 52 (363) :1999-2006
[10]   DNA microarray analysis of cyanobacterial gene expression during acclimation to high light [J].
Hihara, Y ;
Kamei, A ;
Kanehisa, M ;
Kaplan, A ;
Ikeuchi, M .
PLANT CELL, 2001, 13 (04) :793-806