Kanegae T, Kajiya H, Amano Y, Hashimoto T, Yamada Y
Department of Agricultural Chemistry, Faculty of Agriculture, Kyoto University, Japan.
Plant Physiol. 1994 Jun;105(2):483-90. doi: 10.1104/pp.105.2.483.
The tropane alkaloid scopolamine is synthesized in the pericycle of branch roots in certain species of the Solanaceae. The enzyme responsible for the synthesis of scopolamine from hyoscyamine is hyoscyamine 6 beta-hydroxylase (H6H). The gene for H6H was isolated from Hyoscyamus niger. It has an exon/intron organization very similar to those for ethylene-forming enzymes, suggesting a common evolutionary origin. The 827-bp 5' flanking region of the H6H gene was fused to the beta-glucuronidase (GUS) reporter gene and transferred to three solanaceous species by Agrobacterium-mediated transformation systems: H. niger and belladonna (Atropa belladonna), which have high and low levels, respectively, of H6H mRNA in the root, and tobacco (Nicotiana tabacum), which has no endogenous H6H gene. Histochemical analysis showed that GUS expression occurred in the pericycle and at the root meristem of transgenic H. niger hairy roots, but only at the root meristem of transgenic H. niger hairy roots, but only at the root meristem of hairy roots and plants of transgenic tobacco. In transgenic hairy roots and regenerated plants of belladonna, the root meristem was stained with GUS activity, except for a few transformants in which the vascular cylinder was also stained. These studies indicate that the cell-specific expression of the H6H gene is controlled by some genetic regulation specific to scopolamine-producing plants.
托烷生物碱东莨菪碱是在茄科某些物种的侧根中柱鞘合成的。负责将莨菪碱合成东莨菪碱的酶是莨菪碱6β-羟化酶(H6H)。H6H基因是从黑种草中分离出来的。它的外显子/内含子结构与乙烯形成酶的非常相似,这表明它们有共同的进化起源。H6H基因827bp的5'侧翼区与β-葡萄糖醛酸酶(GUS)报告基因融合,并通过农杆菌介导的转化系统导入三种茄科植物:黑种草和颠茄(Atropa belladonna),它们根中H6H mRNA水平分别较高和较低,以及烟草(Nicotiana tabacum),它没有内源性H6H基因。组织化学分析表明,GUS表达出现在转基因黑种草毛状根的中柱鞘和根分生组织中,但只出现在转基因烟草毛状根和植株的根分生组织中。在转基因颠茄毛状根和再生植株中,根分生组织被GUS活性染色,除了少数几个转化体中维管束也被染色。这些研究表明,H6H基因的细胞特异性表达受一些特定于产生东莨菪碱植物的遗传调控。