Movahedi Ali, Zhang Jiaxin, Amirian Rasoul, Zhuge Qiang
The Cooperative Innovation Center of Southern Modern Forestry, Nanjing Forestry University, Nanjing 210037, China.
Department of Genomics, Agricultural Biotechnology Research Institute, Central Region of Iran (ABRICI), Najafabad Road, Isfahan 85135-487, Iran.
Int J Mol Sci. 2014 Jun 13;15(6):10780-93. doi: 10.3390/ijms150610780.
Poplar is a model system for the regeneration and genetic transformation of woody plants. To shorten the time required for studies of transgenic poplar, efforts have been made to optimize transformation methods that use Agrobacterium tumefaciens. In this study, an Agrobacterium infective suspension was treated at 4 °C for at least 10 h before infecting explants. By transforming the Populus hybrid clone "Nanlin895" (Populus deltoides×P. euramericana) with Agrobacterium harboring the PBI121:CarNAC6 binary vector, we showed that the transformation efficiency was improved significantly by multiple independent factors, including an Agrobacterium infective suspension with an OD600 of 0.7, an Agrobacterium infection for 120 min, an Agrobacterium infective suspension at a pH of 5.0, an acetosyringone concentration of 200 µM, a cocultivation at 28 °C, a cocultivation for 72 h and a sucrose concentration of 30 g/L in the cocultivation medium. We also showed that preculture of wounded leaf explants for two days increased the regeneration rate. The integration of the desired gene into transgenic poplars was detected using selective medium containing kanamycin, followed by southern blot analysis. The expression of the transgene in the transgenic lines was confirmed by northern blot analysis.
杨树是木本植物再生和遗传转化的模式系统。为了缩短转基因杨树研究所需的时间,人们已努力优化利用根癌农杆菌的转化方法。在本研究中,根癌农杆菌感染性悬浮液在感染外植体前于4℃处理至少10小时。通过用携带PBI121:CarNAC6双元载体的根癌农杆菌转化杨树杂交克隆“南林895”(美洲黑杨×欧美杨),我们发现多个独立因素显著提高了转化效率,这些因素包括OD600为0.7的根癌农杆菌感染性悬浮液、120分钟的农杆菌感染、pH为5.0的根癌农杆菌感染性悬浮液、200μM的乙酰丁香酮浓度、28℃的共培养、72小时的共培养以及共培养基中30g/L的蔗糖浓度。我们还表明,受伤叶片外植体预培养两天可提高再生率。使用含卡那霉素的选择培养基检测所需基因在转基因杨树中的整合情况,随后进行Southern杂交分析。通过Northern杂交分析证实转基因在转基因株系中的表达。