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Can interbreeding of wild and artificially propagated animals be prevented by using broodstock selected for a divergent life history?

机译:是否可以通过使用因生活史不同而选择的亲鱼来防止野生动物与人工繁殖动物的杂交?

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摘要

Two strategies have been proposed to avoid negative genetic effects of artificially propagated individuals on wild populations: (i) integration of wild and captive populations to minimize domestication selection and (ii) segregation of released individuals from the wild population to minimize interbreeding. We tested the efficacy of the strategy of segregation by divergent life history in a steelhead trout, Oncorhynchus mykiss, system, where hatchery fish were selected to spawn months earlier than the indigenous wild population. The proportion of wild ancestry smolts and adults declined by 10–20% over the three generations since the hatchery program began. Up to 80% of the naturally produced steelhead in any given year were hatchery/wild hybrids. Regression model selection analysis showed that the proportion of hatchery ancestry smolts was lower in years when stream discharge was high, suggesting a negative effect of flow on reproductive success of early-spawning hatchery fish. Furthermore, proportions of hybrid smolts and adults were higher in years when the number of naturally spawning hatchery-produced adults was higher. Divergent life history failed to prevent interbreeding when physical isolation was ineffective, an inadequacy that is likely to prevail in many other situations.
机译:已经提出了两种策略来避免人工繁殖的个体对野生种群的负面遗传影响:(i)野生和圈养种群的融合以最小化驯化选择;以及(ii)从野生种群中分离释放的个体以最小化杂交。我们根据生活史不同的硬头鳟鱼Oncorhynchus mykiss系统测试了隔离策略的效果,在该系统中,孵化鱼的选择比本地野生种群早产几个月。自孵化计划开始以来的三代人中,野生祖先mol和成年adults的比例下降了10–20%。在任何给定的年份中,孵化场/野生杂种中高达80%的自然生产的硬头动物。回归模型选择分析表明,当溪流排放量高时,孵化场祖先的比例降低,这表明水流对早期孵化场孵化鱼的繁殖成功产生负面影响。此外,当自然产卵的孵化场生产的成年人数量较高时,杂种和成人的比例更高。当物理隔离无效时,不同的生活史无法防止杂交,这种不足可能在许多其他情况下普遍存在。

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