Tark-Dame Mariliis, Weber Blaise, de Sain Mara, Anggoro Damar Tri, Bader Rechien, Walmsley Aimee, Oka Rurika, Stam Maike
Swammerdam Institute for Life Sciences, University of Amsterdam;
Swammerdam Institute for Life Sciences, University of Amsterdam.
J Vis Exp. 2018 Mar 28(133):57295. doi: 10.3791/57295.
When generating transgenic plants, generally the objective is to have stable expression of a transgene. This requires a single, intact integration of the transgene, as multi-copy integrations are often subjected to gene silencing. The Gateway-compatible binary vector based on bacterial artificial chromosomes (pBIBAC-GW), like other pBIBAC derivatives, allows the insertion of single-copy transgenes with high efficiency. As an improvement to the original pBIBAC, a Gateway cassette has been cloned into pBIBAC-GW, so that the sequences of interest can now be easily incorporated into the vector transfer DNA (T-DNA) by Gateway cloning. Commonly, the transformation with pBIBAC-GW results in an efficiency of 0.2-0.5%, whereby half of the transgenics carry an intact single-copy integration of the T-DNA. The pBIBAC-GW vectors are available with resistance to Glufosinate-ammonium or DsRed fluorescence in seed coats for selection in plants, and with resistance to kanamycin as a selection in bacteria. Here, a series of protocols is presented that guide the reader through the process of generating transgenic plants using pBIBAC-GW: starting from recombining the sequences of interest into the pBIBAC-GW vector of choice, to plant transformation with Agrobacterium, selection of the transgenics, and testing the plants for intactness and copy number of the inserts using DNA blotting. Attention is given to designing a DNA blotting strategy to recognize single- and multi-copy integrations at single and multiple loci.
在培育转基因植物时,一般目标是使转基因稳定表达。这需要转基因进行单一、完整的整合,因为多拷贝整合常常会导致基因沉默。基于细菌人工染色体的Gateway兼容二元载体(pBIBAC-GW),与其他pBIBAC衍生物一样,能够高效插入单拷贝转基因。作为对原始pBIBAC的改进,一个Gateway盒已被克隆到pBIBAC-GW中,这样现在通过Gateway克隆就可以将感兴趣的序列轻松整合到载体转移DNA(T-DNA)中。通常,用pBIBAC-GW进行转化的效率为0.2 - 0.5%,其中一半的转基因携带完整的单拷贝T-DNA整合。pBIBAC-GW载体有对草铵膦的抗性或种皮中的DsRed荧光用于植物筛选,以及对卡那霉素的抗性用于细菌筛选。在此,给出了一系列方案,引导读者完成使用pBIBAC-GW培育转基因植物的过程:从将感兴趣的序列重组到所选的pBIBAC-GW载体,到用农杆菌进行植物转化、筛选转基因,以及使用DNA印迹法检测植物中插入片段的完整性和拷贝数。重点关注设计一种DNA印迹策略,以识别单一位点和多个位点的单拷贝和多拷贝整合。