Department of Biochemistry, Royal Holloway College (University of London), Egham Hill, TW20 OEX, Egham, Surrey, UK.
Planta. 1981 Mar;151(3):272-80. doi: 10.1007/BF00395180.
The induction of L-phenylalanine ammonialyase (PAL, EC 4.3.1.5) and flavanone synthase in French bean cell suspension cultures in response to heat-released elicitor from cell walls of the phytopathogenic fungus Colletotrichum lindemuthianum is highly dependent upon elicitor concentration. The elicitor dose-response curve for PAL induction shows two maxima at around 17.5 and 50 μg elicitor carbohydrate per ml culture, whereas the flavanone synthase response shows one maximum at around 100 μg ml(-1). The PAL response is independent of the elicitor concentration present during the lag phase of enzyme induction; if the initial elicitor concentration is increased after 2 h by addition of extra elicitor, or decreased by dilution of the cultures, the dose response curves obtained reflect the concentration of elicitor present at the time of harvest. PAL induction is not prevented by addition of methyl sugar derivatives to the cultures; α-methyl-D-glucoside, itself a weak elicitor of PAL activity, elicits a multiphasic PAL response when increasing concentrations are added in the presence of Colletotrichum elicitor. Eight fractions with different monosaccharide compositions, obtained from the crude elicitor by gel-filtration, each elicit different dose-responses for PAL induction; the response to unfractionated elicitor is not the sum of the response to the isolated fractions. There is no correlation between the ability of the fractions to induce PAL in the cultures and their ability to act as elicitors of isoflavonoid phytoalexin accumulation in bean hypocotyls.
法国豆细胞悬浮培养物中 L-苯丙氨酸氨裂解酶(PAL,EC 4.3.1.5)和类黄酮合酶的诱导,对来自植物病原真菌胶孢炭疽菌细胞壁的热释放激发子的反应高度依赖于激发子浓度。PAL 诱导的激发子剂量反应曲线在约 17.5 和 50μg 激发子碳水化合物/ml 培养物时显示出两个最大值,而类黄酮合酶的反应在约 100μg/ml 时显示出一个最大值。PAL 反应与诱导酶的滞后阶段中存在的激发子浓度无关;如果在 2 小时后通过添加额外的激发子增加初始激发子浓度,或者通过稀释培养物降低激发子浓度,则获得的剂量反应曲线反映了收获时存在的激发子浓度。向培养物中添加甲基糖衍生物并不能阻止 PAL 诱导;α-甲基-D-吡喃葡萄糖苷本身是 PAL 活性的弱激发子,当在胶孢炭疽菌激发子存在下添加递增浓度时,会引发多相 PAL 反应。从粗激发子通过凝胶过滤获得的 8 个具有不同单糖组成的级分,每个级分对 PAL 诱导都有不同的剂量反应;未分级激发子的反应不是分离级分反应的总和。级分在培养物中诱导 PAL 的能力与它们作为豆类下胚轴异黄酮植物抗毒素积累的激发子的能力之间没有相关性。