Ye Xing, Tian Yuan-Yuan, Gao Feng-Ying
Pearl River Fishery Research Institute, Chinese academy of fisheries sciences, Guangzhou 510380, China.
Yi Chuan. 2011 May;33(5):494-503. doi: 10.3724/sp.j.1005.2011.00494.
Transgenic technique provides a new way for fish breeding. Stable lines of growth hormone gene transfer carps, salmon and tilapia, as well as fluorescence protein gene transfer zebra fish and white cloud mountain minnow have been produced. The fast growth characteristic of GH gene transgenic fish will be of great importance to promote aquaculture production and economic efficiency. This paper summarized the progress in transgenic fish research and ecological assessments. Microinjection is still the most common used method, but often resulted in multi-site and multi-copies integration. Co-injection of transposon or meganuclease will greatly improve the efficiency of gene transfer and integration. "All fish" gene or "auto gene" should be considered to produce transgenic fish in order to eliminate misgiving on food safety and to benefit expression of the transferred gene. Environmental risk is the biggest obstacle for transgenic fish to be commercially applied. Data indicates that transgenic fish have inferior fitness compared with the traditional domestic fish. However, be-cause of the genotype-by-environment effects, it is difficult to extrapolate simple phenotypes to the complex ecological interactions that occur in nature based on the ecological consequences of the transgenic fish determined in the laboratory. It is critical to establish highly naturalized environments for acquiring reliable data that can be used to evaluate the environ-mental risk. Efficacious physical and biological containment strategies remain to be crucial approaches to ensure the safe application of transgenic fish technology.
转基因技术为鱼类育种提供了一条新途径。现已培育出稳定的生长激素基因转移鲤鱼、鲑鱼和罗非鱼品系,以及荧光蛋白基因转移斑马鱼和白云金丝鱼品系。生长激素基因转基因鱼的快速生长特性对于提高水产养殖产量和经济效益具有重要意义。本文综述了转基因鱼研究进展及生态评估情况。显微注射仍是最常用的方法,但常导致多位点和多拷贝整合。共注射转座子或巨核酸酶将大大提高基因转移和整合效率。为消除对食品安全的疑虑并有利于转入基因的表达,在培育转基因鱼时应考虑使用“全鱼”基因或“自身基因”。环境风险是转基因鱼商业化应用的最大障碍。数据表明,转基因鱼与传统养殖鱼类相比适应性较差。然而,由于基因型与环境的相互作用,很难根据实验室中确定的转基因鱼的生态后果,将简单的表型外推到自然界中发生的复杂生态相互作用。建立高度自然化的环境对于获取可用于评估环境风险的可靠数据至关重要。有效的物理和生物遏制策略仍然是确保转基因鱼技术安全应用的关键方法。