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2004小麦抗旱基因CAT的表达5.24
Drought controls on H2O2 accumulation, catalase (CAT)
activity and CAT gene expression in wheat
Celina M. Luna*, Gabriela M. Pastori, Simon Driscoll, Karin Groten, Stephanie Bernard
and Christine H. Foyer?
Crop Performance and Improvement Division, Rothamsted Research, Harpenden, Herts AL5 2JQ, UK
Received 27 May 2004; Accepted 24 September 2004
Abstract
Plants co-ordinate information derived from many di-
verse external and internal signals to ensure appropri-
ate control of gene expression under optimal and
stress conditions. In this work, the relationships be-
tween catalase (CAT) and H2O2 during drought in
wheat (Triticum aestivum L.) are studied. Drought-
induced H2O2 accumulation correlated with decreases
in soil water content and CO2 assimilation. Leaf H2O2
content increased even though total CAT activity
doubled under severe drought conditions. Diurnal regu-
lation of CAT1 and CAT2 mRNA abundance was ap-
parent in all conditions and day/night CAT1 and CAT2
expression patterns were modified by mild and severe
drought. The abundance of CAT1 transcripts was
regulated by circadian controls that persisted in con-
tinuous darkness, while CAT2 was modulated by light.
Drought decreased abundance, and modified the pat-
tern, of CAT1 and CAT2 mRNAs. It was concluded that
the complex regulation of CAT mRNA, particularly at
the level of translation, allows precise control of leaf
H2O2 accumulation.
Key words: Catalase, diurnal cycle, drought, hydrogen
peroxide, Triticum aestivum L.
Introduction
Drought stress is a complex syndrome involving not only
water deprivation but also nutrient limitation, salinity, and
oxidative stresses. Moreover, levels of light that are optimal
for photosynthesis in well-watered plants become excessive
in plants suffering water deprivation. Photosynthesis is
particularly sensitive to water deficit because the stomata
close to conserve water as available soil water declines.
Stomatal closure deprives the leaves of carbon dioxide and
photosynth
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