Phototropic stimulation induces the conversion of glucosinolate to phototropism-regulating substances of radish hypocotyls

被引:51
作者
Hasegawa, T
Yamada, K
Kosemura, S
Yamamura, S
Hasegawa, K
机构
[1] Univ Tsukuba, Inst Appl Biochem, Tsukuba, Ibaraki 3058572, Japan
[2] Keio Univ, Fac Sci & Technol, Dept Chem, Yokohama, Kanagawa 2230061, Japan
关键词
Raphanus sativus; Cruciferae; radish hypocotyl; growth inhibitor; myrosinase; glucosinolate; raphanusanin; 3-(methylthio) methylene-2-pyrrolidinethione; 4-methylthio-3-butenyl isothiocyanate; phototropism;
D O I
10.1016/S0031-9422(00)00080-7
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
The distribution of natural growth inhibitors, the raphanusanins (isomers of 3-(methylthio)methylene 2-pyrrolidinethione) and their precursors (4-methylthio-3-butenyl glucosinolate (MTBG) and 4-methylthio-3-butenyl isothiocyanate (MTBI)), between illuminated and shaded halves of radish hypocotyls during phototropic curvature was analyzed using a physicochemical assay. Phototropic stimulation rapidly decreased MTBG content, and abruptly increased contents of MTBI and raphanusanins in the illuminated halves of radish hypocotyls within 30 min after the onset of unilateral illumination. Content in the shaded halves was similar to that in dark controls. When MTBG, MTBI, and raphanusanins at endogenous levels were applied unilaterally to etiolated hypocotyls, MTBI and raphanusanins caused hypocotyls to bend but MTBG showed no activity. Blue illumination promoted myrosinase (thioglucosidase) activity, which releases MTBI from MTBG, in hypocotyls after 10 min. although enzyme activity in dark controls did not change. These results suggest that phototropic stimulation promotes myrosinase activity in the illuminated side of radish hypocotyls, releasing bioactive MTBI from inactive MTBG and simultaneously producing bioactive raphanusanins. (C) 2000 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:275 / 279
页数:5
相关论文
共 22 条
[1]   PURIFICATION, CHARACTERIZATION AND PARTIAL AMINO-ACID SEQUENCING OF BETA-THIOGLUCOSIDASE FROM BRASSICA-NAPUS L [J].
BONES, A ;
SLUPPHAUG, G .
JOURNAL OF PLANT PHYSIOLOGY, 1989, 134 (06) :722-729
[2]   PHOTOTROPISM INVOLVES A LATERAL GRADIENT OF GROWTH-INHIBITORS, NOT OF AUXIN - A REVIEW [J].
BRUINSMA, J ;
HASEGAWA, K .
ENVIRONMENTAL AND EXPERIMENTAL BOTANY, 1989, 29 (01) :25-36
[3]   HORMONAL-REGULATION OF PHOTOTROPISM IN LIGHT-GROWN SUNFLOWER SEEDLING, HELIANTHUS-ANNUUS L - IMMOBILITY OF ENDOGENOUS INDOLEACETIC-ACID AND INHIBITION OF HYPOCOTYL GROWTH BY ILLUMINATED COTYLEDONS [J].
BRUINSMA, J ;
KARSSEN, CM ;
BENSCHOP, M ;
VANDORT, JB .
JOURNAL OF EXPERIMENTAL BOTANY, 1975, 26 (92) :411-418
[4]   A NEW THEORY OF PHOTOTROPISM - ITS REGULATION BY A LIGHT-INDUCED GRADIENT OF AUXIN-INHIBITING SUBSTANCES [J].
BRUINSMA, J ;
HASEGAWA, K .
PHYSIOLOGIA PLANTARUM, 1990, 79 (04) :700-704
[5]  
BRUINSMA J, 1988, PLANT GROWTH SUBSTAN, P450
[6]   IMMUNOLOGICAL ESTIMATION OF GROWTH-REGULATOR DISTRIBUTION IN PHOTOTROPICALLY REACTING SUNFLOWER SEEDLINGS [J].
FEYERABEND, M ;
WEILER, EW .
PHYSIOLOGIA PLANTARUM, 1988, 74 (01) :185-193
[7]   REVISION OF THE STRUCTURE OF RAPHANUSANINS, PHOTOTROPISM-REGULATING SUBSTANCES OF RADISH HYPOCOTYLS [J].
HARADA, N ;
HAGIWARA, H ;
ONO, H ;
UDA, H ;
OHBA, S ;
KUBOTA, M ;
NISHIYAMA, S ;
YAMAMURA, S ;
HASEGAWA, K ;
SAKODA, M .
TETRAHEDRON LETTERS, 1991, 32 (46) :6757-6760
[8]   PHOTOTROPISM IN HYPOCOTYLS OF RADISH .4. FLANK GROWTH AND LATERAL DISTRIBUTION OF CIS-RAPHANUSANINS AND TRANS-RAPHANUSANINS IN THE 1ST POSITIVE PHOTOTROPIC CURVATURE [J].
HASEGAWA, K ;
NOGUCHI, H ;
TANOUE, C ;
SANDO, S ;
TAKADA, M ;
SAKODA, M ;
HASHIMOTO, T .
PLANT PHYSIOLOGY, 1987, 85 (02) :379-382
[9]   REVISION OF THE THEORY OF PHOTOTROPISM IN PLANTS - A NEW INTERPRETATION OF A CLASSICAL EXPERIMENT [J].
HASEGAWA, K ;
SAKODA, M ;
BRUINSMA, J .
PLANTA, 1989, 178 (04) :540-544
[10]   AN AUXIN-INHIBITING SUBSTANCE FROM LIGHT-GROWN MAIZE SHOOTS [J].
HASEGAWA, K ;
TOGO, S ;
URASHIMA, M ;
MIZUTANI, J ;
KOSEMURA, S ;
YAMAMURA, S .
PHYTOCHEMISTRY, 1992, 31 (11) :3673-3676