Yip W K, Yang S F
Department of Vegetable Crops, University of California, Davis, California 95616.
Plant Physiol. 1986 Feb;80(2):515-9. doi: 10.1104/pp.80.2.515.
Cytokinins are known to stimulate ethylene production in mungbean hypocotyls synergistically with indoleacetic acid (IAA), in mungbean hypocotyls synergistically with Ca(2+), and in wilted wheat leaves. Thidiazuron, a substituted urea compound, mimicked the effect of benzyladenine (BA) in all three systems. In the Ca(2+) + cytokinin system and the IAA + cytokinin systems of mungbean hypocotyls, thiadiazuron was slightly more active than BA at equimolar concentration. In mungbean hypocotyls exogenously applied IAA was rapidly conjugated into IAA asparate, and this conjugation process was effectively inhibited by thidiazuron, as by cytokinins. In the wilted wheat leaves system, 10 micromolar thidiazuron exerted stress ethylene production equal to that exerted by 1 millimolar BA, indicating that thidiazuron is more active than BA by two orders. The structure-activity relationship of thidiazuron and its thiadiazolylurea analogs in stimulating Ca(2+)-dependent ethylene production in mungbean hypocotyls was found to agree well with the structure-activity relationship of these derivatives in promoting the growth of callus tissues. These results indicate that thidiazuron and its derivatives are highly active to mimic the adenine-type cytokinin responses in promoting ethylene production and that the structure-activity relationship in promoting the growth of callus and in promoting ethylene production is similar.
已知细胞分裂素能与吲哚乙酸(IAA)协同刺激绿豆下胚轴中的乙烯生成,能与Ca(2+)协同刺激绿豆下胚轴中的乙烯生成,还能刺激萎蔫小麦叶片中的乙烯生成。噻苯隆,一种取代脲化合物,在所有这三个体系中都模拟了苄基腺嘌呤(BA)的作用。在绿豆下胚轴的Ca(2+) + 细胞分裂素体系和IAA + 细胞分裂素体系中,等摩尔浓度下噻苯隆比BA的活性略高。在绿豆下胚轴中,外源施加的IAA会迅速缀合为IAA天冬氨酸,而这一缀合过程会像被细胞分裂素抑制一样被噻苯隆有效抑制。在萎蔫小麦叶片体系中,10微摩尔的噻苯隆产生的胁迫乙烯量与1毫摩尔BA产生的胁迫乙烯量相当,这表明噻苯隆的活性比BA高两个数量级。研究发现,噻苯隆及其噻二唑基脲类似物在刺激绿豆下胚轴中Ca(2+)依赖的乙烯生成方面的构效关系,与这些衍生物在促进愈伤组织生长方面的构效关系非常吻合。这些结果表明,噻苯隆及其衍生物在促进乙烯生成方面高度活跃,能够模拟腺嘌呤型细胞分裂素的反应,并且在促进愈伤组织生长和促进乙烯生成方面的构效关系相似。