Fachrichtung Botanik, Universität des Saarlandes, D-6600, Saarbrücken, Federal Republic of Germany.
Planta. 1976 Jan;131(3):285-91. doi: 10.1007/BF00385428.
Diffusates from flower buds, flower fruits, and scape segments, and extracts of flower stalks of Narcissus pseudonarcissus contain an auxin active in the Avena geo-curvature test. The auxin behaved like indole-3-acetic acid (IAA) in thin-layer chromatography (TLC) with neutral and basic solvents on different adsorbents. After TLC, the auxin of the extracts showed chromogenic reactions identical with those of IAA; in gas-liquid chromatography on two different columns, the purified substance, after methylation, appeared at the retention time of IAA methyl ester. The auxin content of the extracts has been estimated to be equivalent to ca. 10 μg IAA kg(-1) fresh weight. Diffusates, collected at the basal end of excised flowering apices and of scape segments at different developmental stages, showed highest auxin activity when collected from old buds and young flowers, and from the basal, rapidly elongating scape regions. The diffusible auxin obtained from scape segments was very likely produced by the segments themselves. Thus, the shoot of Narcissus appears to possess two different sites of auxin production, namely, the apical region represented by the flower bud, the flower or the fruit, and the scape.
从水仙花芽、花和花葶节的分泌物以及花梗提取物中分离出一种在燕麦弯曲生长测定中具有活性的生长素。该生长素在薄层层析(TLC)中用中性和碱性溶剂在不同吸附剂上的行为与吲哚-3-乙酸(IAA)相似。TLC 后,提取物中的生长素显示出与 IAA 相同的显色反应;在两种不同柱子上的气液色谱中,经甲基化后,纯化物质在 IAA 甲酯的保留时间处出现。提取物中的生长素含量估计相当于约 10μg IAA kg(-1)鲜重。从切下的开花顶端和不同发育阶段的花葶节的基部收集的分泌物显示,从老芽和幼花以及从基部快速伸长的花葶区收集的分泌物具有最高的生长素活性。从花葶节获得的可扩散生长素很可能是由节段本身产生的。因此,水仙的茎似乎具有两个不同的生长素产生部位,即代表芽、花或果实的顶端区域和花葶。