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Unnatural selection of salmon life histories in a modified riverscape

机译:修改的rierscape中鲑鱼生活历史的不自然选择

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摘要

Altered river flows and fragmented habitats often simplify riverine communities and favor non-native fishes, but their influence on life-history expression and survival is less clear. Here, we quantified the expression and ultimate success of diverse salmon emigration behaviors in an anthropogenically altered California river system. We analyzed two decades of Chinook salmon monitoring data to explore the influence of regulated flows on juvenile emigration phenology, abundance, and recruitment. We then followed seven cohorts into adulthood using otolith (ear stone) chemical archives to identify patterns in time- and size-selective mortality along the migratory corridor. Suppressed winter flow cues were associated with delayed emigration timing, particularly in warm, dry years, which was also when selection against late migrants was the most extreme. Lower, less variable flows were also associated with reduced juvenile and adult production, highlighting the importance of streamflow for cohort success in these southernmost populations. While most juveniles emigrated from the natal stream as fry or smolts, the survivors were dominated by the rare few that left at intermediate sizes and times, coinciding with managed flows released before extreme summer temperatures. The consistent selection against early (small) and late (large) migrants counters prevailing ecological theory that predicts different traits to be favored under varying environmental conditions. Yet, even with this weakened portfolio, maintaining a broad distribution in migration traits still increased adult production and reduced variance. In years exhibiting large fry pulses, even marginal increases in their survival would have significantly boosted recruitment. However, management actions favoring any single phenotype could have negative evolutionary and demographic consequences, potentially reducing adaptability and population stability. To recover fish populations and support viable fisheries in a warming and increasingly unpredictable climate, coordinating flow and habitat management within and among watersheds will be critical to balance trait optimization versus diversification.
机译:改变的河流流动和碎片栖息地常常简化河滨社区,并有利于非本土鱼类,但它们对生命历史表达和生存的影响不太清楚。在这里,我们量化了在人为改变的加州河流系统中不同鲑鱼移民行为的表达和最终成功。我们分析了二十年的奇努克鲑鱼监测数据,以探讨规范流动对少年移民候选,丰富和招聘的影响。然后,我们将七个队伍排入到Adulthood使用欧替尔(耳石)化学档案,以沿着迁徙走廊识别时间和大小选择性地死亡的模式。抑制冬季流量提示与延迟的移除时机相关,特别是在温暖,干燥年份,这也是在对晚期移民的选择最极端的时候。较低,可变的流量较少也与减少的少年和成人生产相关,突出了这些最南端群体在队列成功的流出的重要性。虽然大多数少年从Natal Stream移植到Fry或Smolts中,但幸存者以罕见的少数人占据了中间尺寸和时代的稀有少数,而幸存者则占据了罕见的少数。持续的选择和晚期(大)普遍的生态学理论的持续选择,以在不同的环境条件下预测不同的特征。然而,即使这种弱化的组合,也保持迁移特征的广泛分布仍然增加成人的生产和方差降低。多年来,展现大乳色脉冲,其生存率的甚至边际增加会升高招募。然而,有利于任何单一表型的管理行动可能具有负面的进化和人口统计,可能降低适应性和人口稳定性。为了恢复捕捞渔民,并在温暖和日益不可预测的气候中支撑可行的渔业,流域内部和流域内部的协调流动和栖息地管理对平衡特性优化与多样化至关重要。

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