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Examining the Causes and Consequences of Hybridization During Chinook Salmon Reintroductions: Using the San Joaquin River as a Restoration Case Study of Management Options

机译:检查奇努克鲑鱼再引入过程中杂交的原因和后果:以圣华金河为管理方案的恢复案例研究

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Successful salmonid restoration efforts depend upon an understanding of the evolutionary processes that historically shaped population diversity, as well as the realities of currently available, altered river systems. Habitat alterations over the past century have dramatically changed the ecological forces that shaped salmonid speciation and evolution, bringing formerly separate and distinct populations into contact and in some cases leading to hybridization. Hybridization can threaten the genetic diversity within salmonid species and may affect the outcomes of restoration efforts. Here we use the San Joaquin River Restoration as a case study to discuss some of the genetic challenges of Chinook salmon restoration in a newly reopened habitat. We discuss a range of genetic management strategies—from passive reintroduction to tightly managed, active reintroduction—and the strengths and weaknesses of each approach.
机译:成功的鲑鱼恢复工作取决于对历史上影响人口多样性的进化过程的了解,以及对当前可用的,已改变的河流系统的现实认识。在过去的一个世纪中,生境的变化极大地改变了塑造鲑鱼物种形成和进化的生态力量,使原先彼此独立的种群相互接触,并在某些情况下导致了杂交。杂交会威胁鲑鱼物种内的遗传多样性,并可能影响恢复工作的结果。在这里,我们以圣华金河恢复为例,讨论在新开放的栖息地中的奇努克鲑鱼恢复所面临的一些遗传挑战。我们讨论了一系列遗传管理策略-从被动重新引入到严格管理的主动重新引入-以及每种方法的优缺点。

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