首页> 外文期刊>North American Journal of Aquaculture >Production of a YY Male Brook Trout Broodstock for Potential Eradication of Undesired Brook Trout Populations
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Production of a YY Male Brook Trout Broodstock for Potential Eradication of Undesired Brook Trout Populations

机译:生产YY雄性鳟鱼亲虾,以潜在铲除不想要的鳟鱼种群

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Brook Trout Salvelinus fontinalis introduced outside of their native range often negatively impact native aquatic fauna or provide marginal fisheries and are frequently targeted for manual or piscicide removal in lakes and streams. Unfortunately, complete eradication of exotic Brook Trout populations via these methods is rarely achieved; new approaches are needed. A potential alternative is a Trojan Y Chromosome (TYC) program in which hatchery-produced genetically YY male fish would be regularly released into an undesired population over time, skewing the population towards 100% males, theoretically resulting in wild population extirpation. We developed two genetic sex markers for Brook Trout and employed juvenile sex reversal methods commonly used in commercial aquaculture to develop a YY broodstock that can produce offspring for possible future use as biological control agents. Our search for genetic sex markers proved successful, with genotypic sex determination for two assays matching the observed phenotype for 90 out of 90 individuals. In the first phase of the program, estradiol-infused feed readily feminized genetic XY males into neofemales (FXY fish) at a high rate (99.6%; n = 224). Survival of progeny from such egg-laying FXY fish averaged 88% to eye-up and 91% from eye-up to ponding, values similar to untreated Brook Trout reared at the same facility. In the second program phase, we cultured both sperm-and egg-producing supermales (YY fish), a vital step towards development of TYC technology on a large aquaculture scale. Results showed that, in the hatchery, estradiol treatment does not reduce Brook Trout growth. This study demonstrates that hatchery production of a YY Brook Trout broodstock is feasible, modest in cost (less than US$10,000), and can be completed in 4 years. Although several hurdles remain before a full-scale stocking program could occur, we believe that future work on the TYC strategy for Brook Trout is warranted.
机译:在其本地范围以外引进的溪鳟Salvelinus fontinalis通常会对本地水生动物产生不利影响或提供边缘渔业,并且经常成为在湖泊和溪流中手动或杀农药的目标。不幸的是,通过这些方法彻底消除外来的布鲁克鳟鱼种群很少。需要新的方法。可能的替代方法是特洛伊Y染色体(TYC)程序,其中孵化场生产的遗传YY雄性鱼会随着时间的流逝定期释放到不需要的种群中,使种群偏向100%雄性,理论上导致野生种群灭绝。我们为布鲁克鳟鱼开发了两种遗传性别标记,并采用了商业性水产养殖中普遍使用的少年性逆转方法来开发YY亲本,从而产生后代,以备将来用作生物防治剂。我们对遗传性别标记的搜索被证明是成功的,通过对90种个体中90种与观察到的表型相匹配的两种测定进行了基因型性别测定。在该计划的第一阶段,注入雌二醇的饲料很容易以高比率(99.6%; n = 224)将遗传化的XY雄性女性化为新雌性(FXY鱼)。从这种产卵的FXY鱼的后代存活率平均到上眼是88%,从上眼到池塘是91%,其值与在同一工厂饲养的未经处理的布鲁克鳟鱼相似。在第二阶段,我们养殖了精子和产卵的超级雄鱼(YY鱼),这是向大规模水产养殖发展TYC技术的重要一步。结果表明,在孵化场中,雌二醇处理不会降低布鲁克鳟鱼的生长。这项研究表明,YY布鲁克鳟鱼亲虾的孵化场生产是可行的,成本适中(不到10,000美元),并且可以在4年内完成。尽管在进行全面的库存计划之前仍存在一些障碍,但我们认为,将来有必要在Brook Trout的TYC战略上开展工作。

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