Duncker B P, Davies P L, Walker V K
Department of Biology, Queen's University, Kingston, Ontario, Canada.
Transgenic Res. 1999 Feb;8(1):45-50. doi: 10.1023/a:1008873906177.
One of the principal environmental adaptations of certain fishes inhabiting polar and northern coastal waters is the synthesis of antifreeze proteins (AFPs). AFPs bind to and prevent the growth of nascent ice crystals, thus depressing the serum freezing point. The transgenic expression of AFP holds great promise for conferring freeze resistance to commercially important plant and animal species. Since fish at the greatest risk of freezing have multiple AFP gene copies in order to synthesize higher levels of this protein, we have evaluated this evolutionary strategy as a way to maximize AFP expression in a model transgenic host, the fruit fly Drosophila melanogaster. A construct in which AFP genes of the Atlantic wolffish are fused to the Drosophila yolk protein 1,2 promoter/enhancer region was transferred to flies through P-element mediated transformation. Several independent transgenic fly lines were used in genetic crosses to obtain multi-insert lines. Haemolymph freezing point depression (thermal hysteresis) was greater in homozygotes relative to heterozygotes for a given insert. Similarly, multi-insert lines consistently displayed greater haemolymph AFP activity than the single insert lines from which they were derived. The thermal hysteresis value obtained with a fly line harboring 8 AFP gene copies, 0.43 degree C, represents the highest such value to date recorded in a transgenic host, and is even higher than the levels found in some AFP-producing fish.
某些栖息在极地和北部沿海水域的鱼类的主要环境适应性之一是合成抗冻蛋白(AFP)。AFP与新生冰晶结合并阻止其生长,从而降低血清冰点。AFP的转基因表达有望赋予商业上重要的植物和动物物种抗冻能力。由于处于最大冷冻风险的鱼类具有多个AFP基因拷贝以合成更高水平的这种蛋白质,我们评估了这种进化策略,作为在模型转基因宿主果蝇中最大化AFP表达的一种方法。将大西洋狼鱼的AFP基因与果蝇卵黄蛋白1、2启动子/增强子区域融合的构建体通过P元件介导的转化转移到果蝇中。几个独立的转基因果蝇品系用于遗传杂交以获得多插入品系。对于给定的插入片段,纯合子的血淋巴冰点降低(热滞)比杂合子更大。同样,多插入品系始终显示出比其衍生的单插入品系更高的血淋巴AFP活性。一个含有8个AFP基因拷贝的果蝇品系获得的热滞值为0.43℃,代表了迄今为止在转基因宿主中记录的最高此类值,甚至高于一些产生AFP的鱼类中的水平。