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Growth of growth hormone transgenic coho salmon Oncorhynchus kisutch is influenced by construct promoter type and family line.

机译:生长激素转基因银鲑 Oncorhynchus kisutch 的生长受构建体启动子类型和家族系的影响。

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Several different transgenic growth hormone (GH) gene constructs have been used to obtain accelerated growth in salmonids. However, there have been limited direct comparisons of these constructs in terms of the ability to achieve maximal growth in fish. We examined the effect of promoter type (sockeye salmon metallothionein-B or histone 3) fused to a growth hormone-1 coding region from the same species (OnMTGH1 and OnH3GH1 constructs respectively) on growth and plasma growth hormone (GH) and insulin-like growth factor-I (IGF-I) in multiple strains of GH transgenic coho salmon (Oncorhynchus kisutch). Salmon transgenic for the OnMTGH1 construct had consistently greater overall weight than those containing the OnH3GH1 construct, although both groups possessed greatly accelerated growth over non-transgenic fish. However, there were strong strain effects, where some OnH3GH1 strains had similar weight to OnMTGH1 strains while others did not. Triploidy diminished growth acceleration and decreased condition factors in both a fast growing MT strain and slower growing H3 strain. Plasma GH levels did not correlate to weight in transgenic strains, and all but one transgenic strain had plasma GH levels similar to equal sized non-transgenic fish. In contrast, plasma IGF-I content correlated well to size in transgenic strains. The mechanism by which accelerated growth in transgenic fish is obtained appears to be due in part to an upregulation of GH action through increased circulating IGF-I levels, and promoter-type appears to influence potential for growth.
机译:几种不同的转基因生长激素(GH)基因构建体已用于获得鲑鱼的加速生长。但是,就实现鱼类最大生长的能力而言,对这些结构的直接比较有限。我们研究了与相同物种(分别为OnMTGH1和OnH3GH1构建体)的生长激素-1编码区融合的启动子类型(鲑鱼金属硫蛋白B或组蛋白3)对生长,血浆生长激素(GH)和类胰岛素的影响生长激素-转基因银鲑鱼( Oncorhynchus kisutch )多株中的生长因子-I(IGF-I)。 OnMTGH1构建体的转基因鲑鱼总重量始终高于包含OnH3GH1构建体的鲑鱼总重量,尽管两组均比非转基因鱼具有极大的加速生长。但是,有很强的菌株效应,其中某些OnH3GH1菌株的重量与OnMTGH1菌株相似,而其他的则没有。在快速生长的MT菌株和生长较慢的H3菌株中,三倍体减少了生长加速和条件因子的降低。血浆GH水平与转基因品系中的体重不相关,除一个转基因品系外,其他所有品系的血浆GH水平均与同等大小的非转基因鱼相似。相反,血浆IGF-I含量与转基因菌株中的大小密切相关。在转基因鱼中获得加速生长的机制似乎部分归因于循环IGF-I水平升高导致的GH作用上调,而启动子类型似乎会影响其生长潜力。

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