Hernández O, Guillén I, Estrada M P, Cabrera E, Pimentel R, Piña J C, Abad Z, Sánchez V, Hidalgo Y, Martínez R, Lleonart R, de la Fuente J
Centro de Ingeniería Geńtica y Biotecnologia, Camaguey, Cuba.
Mol Mar Biol Biotechnol. 1997 Dec;6(4):364-75.
The transfer of growth hormone (GH) genes has opened new possibilities for the manipulation of growth in economically important fish species. However, the ectopic GH levels to optimize growth acceleration in fish, and specially in tilapia, are not known and must be determined experimentally. The tilapia GH (tiGH) cDNA was used to construct chimeric genes expressing different levels of tiGH in vitro and in vivo. These constructs were used to generate four lines of transgenic tilapia by microinjection into one-cell embryos. Different patterns and levels of ectopic expression of tiGH and IGF were detected in organs of transgenic tilapia by RNA or protein analysis. The two lines with lower ectopic tiGH mRNA levels were the only ones showing growth acceleration, suggesting that the expression of ectopic tiGH promoted growth only at low expression levels. The effect of higher ectopic tiGH levels resembled the physiologic situation of low condition factor and permitted us to postulate a model for growth acceleration in transgenic tilapia expressing ectopic tiGH.
生长激素(GH)基因的转移为调控经济价值重大的鱼类生长开辟了新的可能性。然而,尚不清楚在鱼类尤其是罗非鱼中优化生长加速所需的异位GH水平,必须通过实验来确定。罗非鱼生长激素(tiGH)cDNA被用于构建在体外和体内表达不同水平tiGH的嵌合基因。通过显微注射到单细胞胚胎中,利用这些构建体培育出了四系转基因罗非鱼。通过RNA或蛋白质分析,在转基因罗非鱼的器官中检测到了tiGH和IGF不同的异位表达模式和水平。只有两条异位tiGH mRNA水平较低的品系出现了生长加速,这表明异位tiGH仅在低表达水平时才促进生长。较高异位tiGH水平的影响类似于低条件因子的生理状况,这使我们能够推测出一个表达异位tiGH的转基因罗非鱼生长加速模型。