Plant Cell Culture Group, AFRC Institute of Food Research, Norwich Laboratory, Colney Lane, Norwich, NR4 7UA, U.K.
Planta Med. 1987 Aug;53(4):367-72. doi: 10.1055/s-2006-962740.
A culture of CINCHONA LEDGERIANA, transformed with AGROBACTERLUM TUMEFACIENS A6 capable of growing and producing quinoline alkaloids in medium free of exogenous phytohormones has been obtained. Unlike the untransformed culture of this species, addition of ZR in combination with either IAA or IBA to medium did not affect alkaloid production. Growing the transformed culture in the dark, however, produced a marked enhancement of alkaloid accumulation, up to 50 times that of cultures grown in the light. This dark-dependent accumulation was not confined to any particular time in the growth cycle, although the extent of the stimulatory effect increased the longer cultures were kept in darkness. Blue light was detrimental to alkaloid accumulation but in red or green light the level of accumulation was equivalent to that in the dark. Alternating cultures for several 28-day periods between light and dark conditions resulted in alternate periods of low and higfralkaloid productivity, indicating this was not an adaption effect. These findings correlate to previously reported differences in key enzymes from the biosynthetic pathway. Increasing the phosphate or nitrate concentration above that of Gamborg B5, increasing sucrose above 2% (w/v), replacing sucrose with glucose or adding tryptophan or casamino acids to the medium resuited in lower alkaloid yields by dark-grown cultures of the transformed line.
已经获得了一种能够在不含外源植物激素的培养基中生长和产生喹啉生物碱的转化的金鸡纳 Ledgeriana 培养物。与该物种的未转化培养物不同,添加 ZR 与 IAA 或 IBA 组合到培养基中不会影响生物碱的产生。然而,在黑暗中培养转化的培养物会导致生物碱积累显著增加,最高可达光培养物的 50 倍。这种依赖于黑暗的积累不仅限于生长周期中的任何特定时间,尽管随着培养物在黑暗中保持的时间延长,刺激效应的程度会增加。蓝光对生物碱积累有害,但在红光或绿光下,积累水平与黑暗中相同。在光和暗条件之间交替进行几个 28 天的培养周期会导致生物碱生产力的交替低和高时期,表明这不是适应效应。这些发现与先前报道的生物合成途径中关键酶的差异相关。将磷酸盐或硝酸盐浓度增加到 Gamborg B5 以上,将蔗糖浓度增加到 2%(w/v)以上,用葡萄糖代替蔗糖,或向培养基中添加色氨酸或氨基酸,都会导致转化系的暗培养物的生物碱产量降低。