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Gene transfer for targeted modification of salmonid fish metabolism.

机译:基因转移用于靶向修饰鲑鱼的新陈代谢。

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The reviewed studies addressed the possibility of using gene transfer for correction of L-ascorbic acid biosynthesis and carbohydrate utilization in rainbow trout. Analyses of enzymatic activities in the L-AAB pathway indicated that reasons for the lack of L-AA production can be common in fish and scurvy-prone animals. Rat gulonolactone oxidase cDNA was transferred into trout. Regardless of the fact that rGLO transcription occurred in embryos, neither GLO protein, nor enzyme activity were detected. There was no production of L-AA in transgenic fish raised on vitamin C-free diets or injected with L-gulonolactone. These results indicated that the conditions required for translation or stability of rGLO were not present in trout tissues. To augment carbohydrates utilization, human glucose transporter 1 and rat hexokinase II cDNAs were tested. In the transfected embryos. HK activity, rates of hexose uptake and glucose oxidation were increased. The effect of hGLUT1 on glucose metabolism was greater than that of rHKII. Trout carrying hGLUT1 and rHKII with viral or piscine promoters were created. Though interpretation of the metabolic effects of the transgenes was complicated with mosaicism, a tendency to improved carbohydrate utilization was revealed in some of the transgenic individuals.
机译:审查的研究解决了使用基因转移校正虹鳟鱼中L-抗坏血酸的生物合成和碳水化合物利用的可能性。 L-AAB途径中酶活性的分析表明,缺乏L-AA产生的原因在鱼类和易患坏血病的动物中可能很常见。将大鼠古洛内酯氧化酶cDNA转移到鳟鱼中。无论rGLO转录发生在胚胎中的事实如何,均未检测到GLO蛋白或酶活性。在无维生素C饮食或注射L-古洛内酯的转基因鱼中没有L-AA的产生。这些结果表明,鳟鱼组织中不存在rGLO翻译或稳定性所需的条件。为了提高碳水化合物的利用率,测试了人葡萄糖转运蛋白1和大鼠己糖激酶II cDNA。在转染的胚胎中。 HK活性,己糖摄取率和葡萄糖氧化增加。 hGLUT1对葡萄糖代谢的影响大于rHKII。创建了带有hGLUT1和rHKII以及病毒或鱼类启动子的鳟鱼。尽管对转基因代谢作用的解释与镶嵌复杂,但在某些转基因个体中发现了改善碳水化合物利用的趋势。

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