Grantz D A, Ho T H, Uknes S J, Cheeseman J M, Boyer J S
United States Department of Agriculture/Agricultural Research Service, University of Illinois, Urbana, Illinois 61801.
Plant Physiol. 1985 May;78(1):51-6. doi: 10.1104/pp.78.1.51.
Metabolism of abscisic acid (ABA) was investigated in isolated guard cells and in mesophyll tissue of Vicia faba L. and Commelina communis L. After incubation in buffer containing [G-(3)H]+/-ABA, the tissue was extracted by grinding and the metabolites separated by thin layer chromatography. Guard cells of Commelina metabolized ABA to phaseic acid (PA), dihydrophaseic acid (DPA), and alkali labile conjugates. Guard cells of Vicia formed only the conjugates. Mesophyll cells of Commelina accumulated DPA while mesophyll cells of Vicia accumulated PA. Controls showed that the observed metabolism was not due to extracellular enzyme contaminants nor to bacterial action.Metabolism of ABA in guard cells suggests a mechanism for removal of ABA, which causes stomatal closure of both species, from the stomatal complex. Conversion to metabolites which are inactive in stomatal regulation, within the cells controlling stomatal opening, might precede detectable changes in levels of ABA in bulk leaf tissue. The differences observed between Commelina and Vicia in metabolism of ABA in guard cells, and in the accumulation product in the mesophyll, may be related to differences in stomatal sensitivity to PA which have been reported for these species.
在蚕豆和鸭跖草的分离保卫细胞及叶肉组织中研究了脱落酸(ABA)的代谢。在含有[G-(3)H]+/-ABA的缓冲液中孵育后,通过研磨提取组织,并通过薄层色谱法分离代谢产物。鸭跖草的保卫细胞将ABA代谢为相酸(PA)、二氢相酸(DPA)和碱不稳定共轭物。蚕豆的保卫细胞仅形成共轭物。鸭跖草的叶肉细胞积累DPA,而蚕豆的叶肉细胞积累PA。对照表明,观察到的代谢不是由于细胞外酶污染物或细菌作用。保卫细胞中ABA的代谢表明了一种从气孔复合体中去除导致两种植物气孔关闭的ABA的机制。在控制气孔开放的细胞内,转化为在气孔调节中无活性的代谢产物可能先于叶片组织中ABA水平的可检测变化。在保卫细胞中ABA代谢以及叶肉中积累产物方面,鸭跖草和蚕豆之间观察到的差异可能与这些物种中已报道的对PA的气孔敏感性差异有关。