New Zealand Forest Research Institute, Private Bag 3020, Rotorua, New Zealand.
Plant Cell Rep. 1994 Dec;14(2-3):69-74. doi: 10.1007/BF00233764.
The biolistic® particle delivery system was used for the delivery of DNA into embryogenic tissue culture cells of Pinus radiata D. Don. Several experiments with varying parameters were performed to increase the delivery efficiency. Six different controlling elements were cloned upstream of the ß-glucuronidase coding sequence (gusA reporter gene) and transient expression of the gusA reporter gene was compared three days after bombardment. The results clearly indicate a decrease in transient expression as follows: pEmu-derivatives with the ocs-enhancer-element > 2x CaMV 35S (with Kozak consensus-sequence) > 2x CaMV 35S (without Kozak consensus sequence) > CaMV 35S (with Kozak consensus-sequence) > CaMV 35S (without Kozak consensus sequence). Time course experiments monitoring gusA expression showed a significant decrease in the number of blue spots 10-14 days after bombardment. A few blue clumps however, were still detected 35 days after shooting. Embryo initials expressing the gusA gene in all cells were also detected. The results suggest that it will be possible to develop a reliable biolistic protocol for stable integration of genes into Pinus radiata embryogenic cultures which are capable of plant regeneration.
弹道式®粒子传递系统被用于将 DNA 递送至辐射松胚胎组织培养细胞。进行了几项不同参数的实验,以提高传递效率。将 6 个不同的调控元件克隆到β-葡聚糖酶编码序列(gusA 报告基因)的上游,在轰击后 3 天比较 gusA 报告基因的瞬时表达。结果清楚地表明瞬时表达的下降如下:ocs 增强子元件的 pEmu 衍生物>2x CaMV 35S(带有 Kozak 一致序列)>2x CaMV 35S(不带 Kozak 一致序列)>CaMV 35S(带有 Kozak 一致序列)>CaMV 35S(不带 Kozak 一致序列)。监测 gusA 表达的时间进程实验表明,轰击后 10-14 天蓝色斑点的数量显著减少。然而,在射击后 35 天仍检测到一些蓝色团块。在所有细胞中表达 gusA 基因的胚胎初始细胞也被检测到。结果表明,有可能为能够进行植物再生的辐射松胚胎培养物中基因的稳定整合开发出可靠的弹道式传递协议。