Giancaspro Angelica, Gadaleta Agata, Blanco Antonio
Department of Environmental and Territorial Sciences, University of Bari "Aldo Moro", Via Amendola 165/A, 70126, Bari, Italy.
Department of Soil, Plant and Food Sciences, University of Bari "Aldo Moro", Via G. Amendola 165/A, 70126, Bari, Italy.
Methods Mol Biol. 2017;1679:251-257. doi: 10.1007/978-1-4939-7337-8_15.
Despite the unceasing advances in genetic transformation techniques, the success of common delivery methods still lies on the behavior of the integrated transgenes in the host genome. Stability and expression of the introduced genes are influenced by several factors such as chromosomal location, transgene copy number and interaction with the host genotype. Such factors are traditionally characterized by Southern blot analysis, which can be time-consuming, laborious, and often unable to detect the exact copy number of rearranged transgenes. Recent research in crop field suggests real-time PCR as an effective and reliable tool for the precise quantification and characterization of transgene loci. This technique overcomes most problems linked to phenotypic segregation analysis and can analyze hundreds of samples in a day, making it an efficient method for estimating a gene copy number integrated in a transgenic line. This protocol describes the use of real-time PCR for the detection of transgene copy number in durum wheat transgenic lines by means of two different chemistries (SYBR Green I dye and TaqMan probes).
尽管基因转化技术不断进步,但常见导入方法的成功仍取决于整合的转基因在宿主基因组中的行为。导入基因的稳定性和表达受多种因素影响,如染色体位置、转基因拷贝数以及与宿主基因型的相互作用。这些因素传统上通过Southern印迹分析来表征,该方法可能耗时、费力,且常常无法检测到重排转基因的确切拷贝数。作物领域的最新研究表明,实时荧光定量PCR是精确量化和表征转基因位点的有效且可靠的工具。该技术克服了与表型分离分析相关的大多数问题,并且一天内可分析数百个样本,使其成为估算转基因系中整合基因拷贝数的有效方法。本方案描述了通过两种不同的化学方法(SYBR Green I染料和TaqMan探针),利用实时荧光定量PCR检测硬粒小麦转基因系中转基因拷贝数的方法。