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Production of reproductively sterile fish by a non-transgenic gene silencing technology

机译:通过非转基因基因沉默技术生产生殖不育鱼

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We developed a novel bath-immersion technology to produce large numbers of infertile fish. As seafood consumption shifts from fishery harvests towards artificially propagated species, optimization of aquaculture practices will be necessary to maximize food production and minimize ecological impact. Farming infertile fish is the most effective genetic-containment strategy to support the development of environmentally-responsible aquaculture. We discovered that a molecular transporter, Vivo , can effectively carry the Morpholino oligomer (MO) across the chorion, enter the embryo and reach target cells. Vivo -conjugated MO against zebrafish deadend ( dnd -MO- Vivo ) effectively caused primordial germ cell mis-migration and differentiation into somatic cells, which resulted in generation of infertile fish. Optimal conditions were achieved when embryos, immediately after fertilization, were immersed with dnd -MO- Vivo at the initial concentration of either 60 or 40?μM followed by a lower serially diluted concentration. Under these conditions, 100% induced sterility was achieved even when the total immersion time was reduced from 24 to 5?hours. In 8 independent experiments, 736 adults developed from these conditions were all found to be infertile fish that possessed minimally-developed gonads that lacked any gametes. The results demonstrate that dnd -MO- Vivo bath immersion is an effective strategy to produce infertile fish without introducing transgenic modifications.
机译:我们开发了一种新颖的浸浴技术来生产大量不育鱼。随着海产品消费从渔业收成转向人工繁殖的种类,有必要优化水产养殖方法,以最大限度地提高粮食产量和生态影响。养殖不育鱼类是支持对环境负责的水产养殖发展的最有效的遗传控制策略。我们发现分子转运蛋白Vivo可以有效地将Morpholino低聚物(MO)跨过绒毛膜,进入胚胎并到达靶细胞。抗斑马鱼死皮的体内共轭MO有效地引起了原始生殖细胞的迁移和分化为体细胞,从而导致了不育鱼的产生。当受精后立即将dnd -MO- Vivo浸入初始浓度为60或40?μM的溶液中,然后以较低的系列稀释浓度浸入,即可达到最佳条件。在这些条件下,即使总浸入时间从24小时减少到5小时,仍可获得100%的无菌性。在8个独立的实验中,从这些条件发展而来的736头成年鱼全部是不育鱼,具有最少发育的性腺,没有任何配子。结果表明,dnd -MO- Vivo浴浸没法是生产不育鱼而不引入转基因修饰的有效策略。

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