Department of Biotechnology, Bioenergy Research Center, Chonnam National University, Gwangju, Korea.
J Pineal Res. 2014 Sep;57(2):147-54. doi: 10.1111/jpi.12151. Epub 2014 Jun 28.
Ectopic overexpression of melatonin biosynthetic genes of animal origin has been used to generate melatonin-rich transgenic plants to examine the functional roles of melatonin in plants. However, the subcellular localization of these proteins expressed in the transgenic plants remains unknown. We studied the localization of sheep (Ovis aries) serotonin N-acetyltransferase (OaSNAT) and a translational fusion of a rice SNAT transit peptide to OaSNAT (TS:OaSNAT) in plants. Laser confocal microscopy analysis revealed that both OaSNAT and TS:OaSNAT proteins were localized to the cytoplasm even with the addition of the transit sequence to OaSNAT. Transgenic rice plants overexpressing the TS:OaSNAT fusion transgene exhibited high SNAT enzyme activity relative to untransformed wild-type plants, but lower activity than transgenic rice plants expressing the wild-type OaSNAT gene. Melatonin levels in both types of transgenic rice plant corresponded well with SNAT enzyme activity levels. The TS:OaSNAT transgenic lines exhibited increased seminal root growth relative to wild-type plants, but less than in the OaSNAT transgenic lines, confirming that melatonin promotes root growth. Seed-specific OaSNAT expression under the control of a rice prolamin promoter did not confer high levels of melatonin production in transgenic rice seeds compared with seeds from transgenic plants expressing OaSNAT under the control of the constitutive maize ubiquitin promoter.
动物来源的褪黑素生物合成基因的异位过表达已被用于生成富含褪黑素的转基因植物,以研究褪黑素在植物中的功能作用。然而,这些在转基因植物中表达的蛋白质的亚细胞定位仍然未知。我们研究了绵羊(Ovis aries) 5-羟色胺 N-乙酰转移酶(OaSNAT)和水稻 SNAT 转运肽与 OaSNAT 的翻译融合物(TS:OaSNAT)在植物中的定位。激光共聚焦显微镜分析显示,即使向 OaSNAT 添加转运序列,OaSNAT 和 TS:OaSNAT 蛋白都定位于细胞质中。过表达 TS:OaSNAT 融合转基因的转基因水稻植物的 SNAT 酶活性相对未转化的野生型植物高,但低于表达野生型 OaSNAT 基因的转基因水稻植物。这两种类型的转基因水稻植物中的褪黑素水平与 SNAT 酶活性水平很好地对应。TS:OaSNAT 转基因系的初生根生长相对于野生型植物增加,但低于 OaSNAT 转基因系,证实褪黑素促进根生长。在水稻醇溶蛋白启动子的控制下,种子特异性 OaSNAT 表达并没有在转基因水稻种子中产生与在组成型玉米泛素启动子控制下表达 OaSNAT 的转基因植物种子中一样高的褪黑素产量。