Department of Environmental Horticulture, University of California, Davis, California 95616.
Plant Physiol. 1976 Jan;57(1):98-100. doi: 10.1104/pp.57.1.98.
Kinetin-8-(14)C degraded rapidly upon drying on living or inert surfaces. However, when care was exercised to avoid taking solutions to dryness during fractionation of plant extracts containing (14)C-kinetin and before partitioning by thin layer chromatography, little degradation occurred. A procedure for 24-hour ethyl acetate partitioning, using a continuous liquid-liquid extractor, which permits nearly complete removal of kinetin from aqueous solutions, is herein described. High natural light intensities in the greenhouse or from fluorescent/incandescent sources greatly enhanced nonmetabolic degradation of kinetin on leaf (Bougainvillea) or glass surfaces, which indicated that this may be a confounding factor in analyzing metabolism of kinetin in plant tissues. One of the degradation products is probably adenine.
在活体或惰性表面干燥时,激动素-8-(14)C 迅速降解。然而,在含有(14)C-激动素的植物提取物进行分步分离和薄层层析前,小心避免溶液变干时,降解很少发生。本文描述了一种使用连续液-液萃取器进行 24 小时乙酸乙酯分配的方法,该方法几乎可以将激动素从水溶液中完全去除。温室或荧光/白炽光源中的高强度自然光大大增强了激动素在叶片(九重葛)或玻璃表面的非代谢降解,这表明这可能是分析植物组织中激动素代谢的一个混杂因素。其中一种降解产物可能是腺嘌呤。