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Growth-Enhanced Transgenic Coho Salmon (Oncorhynchus kisutch) Strains Have Varied Success in Simulated Streams: Implications for Risk Assessment

机译:生长增强的转基因银大麻哈鱼(Oncorhynchus kisutch)菌株在模拟流中获得了不同的成功:对风险评估的意义

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摘要

Growth hormone (GH) transgenic fish have accelerated growth and could improve production efficiency in aquaculture. However, concern exists regarding potential environmental risks of GH transgenic fish should they escape rearing facilities. While environmental effects have been examined in some GH transgenic models, there is a lack of information on whether effects differ among different constructs or strains of transgenic fish. We compared growth and survival of wild-type coho salmon (Oncorhynchus kisutch) fry, a fast-growing GH transgenic strain containing a metallothionein promoter (TMT), and three lines/strains containing a reportedly weaker histone-3 promoter (TH3) in hatchery conditions and semi-natural stream tanks with varying levels of natural food and predators. Rank order of genotype size and survival differed with varying environmental conditions, both within and among experiments. Despite accelerated growth in hatchery conditions, TMT fry gained little or no growth enhancement in stream conditions, had enhanced survival when food was limiting, and inconsistent survival under other conditions. Rank growth was inconsistent in TH3 strains, with one strain having highest, and two strains having the lowest growth in stream conditions, although all TH3 strains had consistently poor survival. These studies demonstrate the importance of determining risk estimates for each unique transgenic model independent of other models.
机译:生长激素(GH)转基因鱼可加速生长,并可提高水产养殖的生产效率。然而,人们担心如果GH转基因鱼脱离饲养设施,可能会带来环境风险。虽然已经在某些GH转基因模型中检查了环境影响,但缺乏关于转基因鱼的不同构建体或品系之间的影响是否不同的信息。我们比较了孵化场中野生型银大麻哈鱼(Oncorhynchus kisutch)鱼苗的生长和存活情况,该鱼是快速生长的GH转基因菌株,含有金属硫蛋白启动子(TMT),还有三株品系,其中据说含有较弱的组蛋白3启动子(TH3)。条件和半天然溪流水箱,其中天然食物和捕食者的水平各不相同。在实验内和实验之间,基因型大小和存活的等级顺序随环境条件的变化而不同。尽管孵化场条件下生长加快,TMT鱼苗在溪流条件下几乎没有或没有增长,在食物有限的情况下存活率提高了,在其他条件下生存率不一致。尽管所有TH3菌株的存活率始终很差,但TH3菌株的秩生长却不一致,其中一株菌株的最高生长,而两株菌株的水流条件下的生长最低。这些研究证明了确定独立于其他模型的每个独特转基因模型风险估计的重要性。

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