ENDOGENOUS BIOSYNTHETIC PRECURSORS OF (+)-ABSCISIC ACID .2. INCORPORATION OF ISOTOPES FROM (+/-)-[H-2]ABSCISIC ALDEHYDE, O-18(2) AND (H2O)-O-18

被引:14
作者
NETTING, AG
MILBORROW, BV
机构
来源
AUSTRALIAN JOURNAL OF PLANT PHYSIOLOGY | 1994年 / 21卷 / 03期
关键词
D O I
10.1071/PP9940345
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Tomato shoots that had been (a) fed (+/-)-[H-2(9)]abscisic aldehyde via the xylem or (b) fed (H2O)-O-18 together with (+/-)-[H-2(9)]abscisic aldehyde via the xylem or (c) exposed to O-18(2) and fed (+/-)-[H-2(9)]abscisic aldehyde, were then wilted. The abscisic acid present was isolated, methylated and resolved into (+)- and (-)- methyl abscisate. These methyl abscisate samples were then examined by negative ion chemical ionisation (methane) gas chromatography/mass spectrometry. The undeuteriated (+)-abscisic acid contained no O-18 from (H2O)-O-18 but did contain one O-18 from O-18(2). No O-18 from either of these sources was present in the undeuteriated (-)-abscisic acid. It was not possible to discount the xanthophyll hypothesis for the origin of stress-induced abscisic acid on the basis of these experiments. Both (+)- and (-)- multiply deuteriated abscisic acid contained one and two O-18 atoms from (H2O)-O-18 but none from O-18(2). It is postulated that this multiply deuteriated (+/-)-abscisic acid is formed by a separate enzyme system from that which forms endogenous stress-induced (+)-abscisic acid. On the basis of the low incorporation of abscisic aldehyde into abscisic acid, it is suggested that the endogenous precursor of stress-induced abscisic acid is an as yet unidentified structure and that abscisic aldehyde competes with it.
引用
收藏
页码:345 / 357
页数:13
相关论文
共 17 条
[1]   INCORPORATION OF OXYGEN INTO ABSCISIC-ACID AND PHASEIC ACID FROM MOLECULAR-OXYGEN [J].
CREELMAN, RA ;
ZEEVAART, JAD .
PLANT PHYSIOLOGY, 1984, 75 (01) :166-169
[2]   ABSCISIC-ACID BIOSYNTHESIS IN LEAVES AND ROOTS OF XANTHIUM-STRUMARIUM [J].
CREELMAN, RA ;
GAGE, DA ;
STULTS, JT ;
ZEEVAART, JAD .
PLANT PHYSIOLOGY, 1987, 85 (03) :726-732
[3]   A POSITIVE ROOT-SOURCED SIGNAL AS AN INDICATOR OF SOIL DRYING IN APPLE, MALUS X DOMESTICA-BORKH [J].
GOWING, DJG ;
DAVIES, WJ ;
JONES, HG .
JOURNAL OF EXPERIMENTAL BOTANY, 1990, 41 (233) :1535-1540
[4]   ROLE OF MOLECULAR-OXYGEN IN FRAGMENTATION PROCESSES OF ABSCISIC-ACID METHYL-ESTER IN ELECTRON-CAPTURE NEGATIVE IONIZATION [J].
HEATH, TG ;
GAGE, DA ;
ZEEVAART, JAD ;
WATSON, JT .
ORGANIC MASS SPECTROMETRY, 1990, 25 (12) :655-663
[5]   2-TRANS-ABA ALCOHOL ACCUMULATION IN THE WILTY TOMATO MUTANTS FLACCA AND SITIENS [J].
LINFORTH, RST ;
BOWMAN, WR ;
GRIFFIN, DA ;
MARPLES, BA ;
TAYLOR, IB .
PLANT CELL AND ENVIRONMENT, 1987, 10 (07) :599-606
[6]  
MUNNS R, 1990, IMPORTANCE ROOT SHOO, P175
[7]   THE FRAGMENTATION OF METHYL ABSCISATE AND ITS 2E ISOMER IN METHANE POSITIVE AND NEGATIVE CHEMICAL IONIZATION MASS-SPECTROMETRY [J].
NETTING, AG ;
MILBORROW, BV ;
VAUGHAN, GT ;
LIDGARD, RO .
BIOMEDICAL AND ENVIRONMENTAL MASS SPECTROMETRY, 1988, 15 (07) :375-387
[8]   XANTHOXIN LEVELS AND METABOLISM IN THE WILD-TYPE AND WILTY MUTANTS OF TOMATO [J].
PARRY, AD ;
NEILL, SJ ;
HORGAN, R .
PLANTA, 1988, 173 (03) :397-404
[9]   ABSCISIC (ABA)-ALDEHYDE IS A PRECURSOR TO, AND 1',4'-TRANS-ABA-DIOL A CATABOLITE OF, ABA IN APPLE [J].
ROCK, CD ;
ZEEVAART, JAD .
PLANT PHYSIOLOGY, 1990, 93 (03) :915-923
[10]   XANTHOXIN METABOLISM IN CELL-FREE PREPARATIONS FROM WILD-TYPE AND WILTY MUTANTS OF TOMATO [J].
SINDHU, RK ;
WALTON, DC .
PLANT PHYSIOLOGY, 1988, 88 (01) :178-182