Cambridge Laboratory, AFRC-IPSR, Maris Lane Trumpington, CB2 2LQ, Cambridge, UK.
Planta. 1988 Mar;173(3):330-9. doi: 10.1007/BF00401020.
A monoclonal antibody produced to abscisic acid (ABA) has been characterised and the development of a radioimmunoassay (RIA) for ABA using the antibody is described. The antibody had a high selectivity for the free acid of (S)-cis, trans-ABA. Using the antibody, ABA could be assayed reliably in the RIA over a range from 100 to 4000 pg (0.4 to 15 pmol) ABA per assay vial. As methanol and acetone affected ABA-antibody binding, water was used to extract ABA from leaves. Water was as effective as aqueous methanol and acetone in extracting the ABA present. Crude aqueous extracts of wheat, maize and lupin leaves could be analysed without serious interference from other immunoreactive material. This was shown by measuring the distribution of immunoreactivity in crude extracts separated by thin-layer chromatography (TLC) and high-performance liquid chromatography (HPLC), or by comparing the assay with physicochemical methods of analysis. Analysis of crude extracts by RIA and either, after TLC purification, by gas chromatography using an electron-capture detector or, after HPLC purification, by combined gas chromatography-mass spectrometry (GC-MS) gave very similar ABA concentrations in the initial leaf samples. However, RIA analysis of crude aqueous extracts of pea seeds resulted in considerable overestimation of the amount of ABA present. Determinations of ABA content by GC-MS and RIA were similar after pea seed extracts had been purified by HPLC. Although the RIA could not be used to analyse ABA in crude extracts of pea seeds, it is likely that crude extracts of leaves of several other species may be assayed successfully.
一种针对脱落酸(ABA)的单克隆抗体已被鉴定,并描述了使用该抗体建立的 ABA 放射免疫分析(RIA)。该抗体对(S)-顺式,反式-ABA 的游离酸具有很高的选择性。使用该抗体,可以在 RIA 中可靠地测定 ABA,其范围为 100 至 4000 pg(0.4 至 15 pmol)/每个测定小瓶的 ABA。由于甲醇和丙酮会影响 ABA-抗体结合,因此用水从叶片中提取 ABA。水与水甲醇和丙酮一样有效,可提取存在的 ABA。小麦,玉米和羽扇豆叶片的粗水提取物可以在没有其他免疫反应性物质严重干扰的情况下进行分析。通过测量薄层层析(TLC)和高效液相色谱(HPLC)分离的粗提取物中的免疫反应性分布,或通过与物理化学分析方法进行比较,可以证明这一点。通过 RIA 分析粗提取物,或在 TLC 纯化后,通过电子俘获检测器的气相色谱法,或在 HPLC 纯化后,通过气相色谱-质谱联用(GC-MS)进行分析,均可在初始叶片样品中获得非常相似的 ABA 浓度。但是,RIA 分析粗豌豆种子的水提取物会导致存在的 ABA 数量的严重高估。通过 HPLC 纯化豌豆种子提取物后,GC-MS 和 RIA 对 ABA 含量的测定相似。尽管 RIA 不能用于分析粗豌豆种子提取物中的 ABA,但其他几种叶片的粗提取物可能可以成功进行测定。