Rock C D, Zeevaart J A
Michigan State University-Department of Energy Plant Research Laboratory, Michigan State University, East Lansing, Michigan 48824-1312.
Plant Physiol. 1990 Jul;93(3):915-23. doi: 10.1104/pp.93.3.915.
Previous (18)O labeling studies of abscisic acid (ABA) have shown that apple (Malus domestica Borkh. cv Granny Smith) fruits synthesize a majority of [(18)O]ABA with the label incorporated in the 1'-hydroxyl position and unlabeled in the carboxyl group (JAD Zeevaart, TG Heath, DA Gage [1989] Plant Physiol 91: 1594-1601). It was proposed that exchange of (18)O in the side chain with the medium occurred at an aldehyde intermediate stage of ABA biosynthesis. We have isolated ABA-aldehyde and 1'-4'-trans-ABA-diol (ABA-trans-diol) from (18)O-labeled apple fruit tissue and measured the extent and position of (18)O incorporation by tandem mass spectrometry. (18)O-Labeling patterns of ABA-aldehyde, ABA-trans-diol, and ABA indicate that ABA-aldehyde is a precursor to, and ABA-trans-diol a catabolite of, ABA. Exchange of (18)O in the carbonyl of ABA-aldehyde can be the cause of loss of (18)O from the side chain of [(18)O]ABA. Results of feeding experiments with deuterated substrates provide further support for the precursor-product relationship of ABA-aldehyde --> ABA --> ABA-trans-diol. The ABA-aldehyde and ABA-trans-diol contents of fruits and leaves were low, approximately 1 and 0.02 nanograms per gram fresh weight for ABA-aldehyde and ABA-trans-diol, respectively, while ABA levels in fruits ranged from 10 to 200 nanograms per gram fresh weight. ABA biosynthesis was about 10-fold lower in fruits than in leaves. In fruits, the majority of ABA was conjugated to beta-d-glucopyranosyl abscisate, whereas in leaves ABA was mainly hydroxylated to phaseic acid. Parallel pathways for ABA and trans-ABA biosynthesis and conjugation in fruits and leaves are proposed.
先前对脱落酸(ABA)进行的(18(18)O标记研究表明,苹果(Malus domestica Borkh. cv澳洲青苹)果实合成的大部分[(18)O]ABA的标记位于1'-羟基位置,而羧基未被标记(JAD·泽瓦特、TG·希思、DA·盖奇[1989]《植物生理学》91: 1594 - 1601)。有人提出,ABA生物合成的醛中间阶段会发生侧链中(18)O与介质的交换。我们从(18)O标记的苹果果实组织中分离出了ABA - 醛和1'-4'-反式 - ABA - 二醇(ABA - 反式二醇),并通过串联质谱法测定了(18)O掺入的程度和位置。ABA - 醛、ABA - 反式二醇和ABA的(18)O标记模式表明,ABA - 醛是ABA的前体,而ABA - 反式二醇是ABA的分解代谢产物。ABA - 醛羰基中(18)O的交换可能是[(18)O]ABA侧链中(18)O损失的原因。用氘代底物进行的饲喂实验结果进一步支持了ABA - 醛→ABA→ABA - 反式二醇的前体 - 产物关系。果实和叶片中ABA - 醛和ABA - 反式二醇的含量较低,ABA - 醛和ABA - 反式二醇的含量分别约为每克鲜重1纳克和0.02纳克,而果实中ABA的水平为每克鲜重10至200纳克。果实中ABA的生物合成比叶片中低约10倍。在果实中,大部分ABA与β - D - 吡喃葡萄糖基脱落酸结合,而在叶片中ABA主要羟基化为阶段酸。本文提出了果实和叶片中ABA和反式ABA生物合成及结合的平行途径。