Release of reactive oxygen intermediates (superoxide radicals, hydrogen peroxide, and hydroxyl radicals) and peroxidase in germinating radish seeds controlled by light, gibberellin, and abscisic acid

被引:417
作者
Schopfer, P [1 ]
Plachy, C [1 ]
Frahry, G [1 ]
机构
[1] Univ Freiburg, Inst Biol 2, D-79104 Freiburg, Germany
关键词
D O I
10.1104/pp.125.4.1591
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Germination of radish (Raphanus sativus cv Eternal seeds can be inhibited by far-red light (high-irradiance reaction of phytochrome) or abscisic acid (ABA). Gibberellic acid (GA,) restores full germination under far-red light. This experimental system was used to investigate the release of reactive oxygen intermediates (ROI) by seed coats and embryos during germination, utilizing the apoplastic oxidation of 2',7'-dichlorofluorescin to fluorescent 2',7'-dichlorofluorescein as an in vivo assay. Germination in darkness is accompanied by a steep rise in ROI release originating from the seed coat (living aleurone layer) as well as the embryo. At the same time as the inhibition of germination, far-red light and ABA inhibit ROI release in both seed parts and GA, reverses this inhibition when initiating germination under far-red light. During the later stage of germination the seed coat also releases peroxidase with a time course affected by far-red light, ABA, and GA,. The participation of superoxide radicals, hydrogen peroxide, and hydroxyl radicals in ROI metabolism was demonstrated with specific in vivo assays. ROI production by germinating seeds represents an active, developmentally controlled physiological function, presumably for protecting the emerging seedling against attack by pathogens.
引用
收藏
页码:1591 / 1602
页数:12
相关论文
共 60 条
[1]   Use of a new tetrazolium-based assay to study the production of superoxide radicals by tobacco cell cultures challenged with avirulent zoospores of Phytophthora parasitica var nicotianae [J].
Able, AJ ;
Guest, DI ;
Sutherland, MW .
PLANT PHYSIOLOGY, 1998, 117 (02) :491-499
[2]   Two distinct sources of elicited reactive oxygen species in tobacco epidermal cells [J].
Allan, AC ;
Fluhr, R .
PLANT CELL, 1997, 9 (09) :1559-1572
[3]   Reactive oxygen intermediates mediate a systemic signal network in the establishment of plant immunity [J].
Alvarez, ME ;
Pennell, RI ;
Meijer, PJ ;
Ishikawa, A ;
Dixon, RA ;
Lamb, C .
CELL, 1998, 92 (06) :773-784
[4]   SENSITIVE METHOD FOR THE ESTIMATION OF HYDROGEN PEROXIDE IN BIOLOGICAL MATERIALS [J].
ANDREAE, WA .
NATURE, 1955, 175 (4463) :859-860
[5]  
[Anonymous], 1991, INT REV CYTOL
[6]   LETHAL HYDROXYL RADICAL PRODUCTION IN PARAQUAT-TREATED PLANTS [J].
BABBS, CF ;
PHAM, JA ;
COOLBAUGH, RC .
PLANT PHYSIOLOGY, 1989, 90 (04) :1267-1270
[7]   ACTIVE OXYGEN IN PLANT PATHOGENESIS [J].
BAKER, CJ ;
ORLANDI, EW .
ANNUAL REVIEW OF PHYTOPATHOLOGY, 1995, 33 :299-321
[8]  
BAKER MS, 1984, ARCH BIOCHEM BIOPHYS, V234, P258, DOI 10.1016/0003-9861(84)90348-5
[9]  
BASS DA, 1983, J IMMUNOL, V130, P1910
[10]   DIFFERENTIATION OF A FUNCTIONAL ALEURONE LAYER WITHIN THE SEED COAT OF SINAPIS-ALBA L [J].
BERGFELD, R ;
SCHOPFER, P .
ANNALS OF BOTANY, 1986, 57 (01) :25-33