首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Large-scale frequency dynamics of alternative male phenotypes in natural populations of coho salmon (Oncorhynchus kisutch): patterns, processes, and implications
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Large-scale frequency dynamics of alternative male phenotypes in natural populations of coho salmon (Oncorhynchus kisutch): patterns, processes, and implications

机译:ho鲑自然种群中替代雄性表型的大规模频率动力学:模式,过程和意义

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摘要

Using over 20 years of annual spawner survey data collected from 46 natural populations of coastal Oregon coho salmon (Oncorhynchus kisutch), we examined large-scale spatial and temporal dynamics of alternative male pheno types (age-3 hooknoses and age-2 jacks). Fluctuations in jack and hooknose abundance were synchronous among populations (i.e., region-wide synchrony), similar to patterns seen previously in Oregon hatchery populations and indicative of oceanic processes operating at large spatial and temporal scales. By contrast, regional-scale synchrony in the ratio of jack to hooknose males was likely attributable to the influences of the freshwater environment. Moreover, within-population variation in phenotype ratio was lower by brood year than by return year (i.e., weak cohort relationship), contrary to previous patterns in hatchery populations. The spatial and temporal patterns of phenotype ratio observed in natural populations but not in hatchery populations, where freshwater effects were statistically controlled, indicate that the frequency dynamics of coho male alternative phenotypes are influenced more strongly by freshwater than by marine processes. The environmentally induced variability in phenotype ratio suggests that there may be constant perturbations of fitness functions for alternative phenotypes, such that the system should be less stable than predicted from the status-dependent selection model with fixed fitness functions.
机译:我们利用从俄勒冈州沿海银大麻哈鱼(Oncorhynchus kisutch)的46个自然种群中收集的20年以上的年度产卵调查数据,研究了其他雄性表型(3岁钩尾鱼和2岁千斤顶)的大规模时空动态。种群之间千斤顶和钩鼻丰度的波动是同步的(即区域范围内的同步性),类似于以前在俄勒冈州孵化场种群中观察到的模式,表明海洋过程在较大的时空尺度上运转。相比之下,千斤顶与钩鼻公成比例的区域尺度同步可能归因于淡水环境的影响。此外,与孵化场种群以前的模式相反,育雏年份的种群内表型比例差异要比返乡年份低(即弱群群关系)。在自然种群中观察到的表型比率的时空格局在孵化种群中没有观察到,因为孵化种群在统计学上控制了淡水的影响,这表明对ho鱼雄性替代表型的频率动态受淡水的影响比受海洋过程的影响更大。环境诱导的表型比例变异性表明,适应性函数可能会对其他表型产生持续的扰动,因此系统的稳定性应不及具有固定适应性函数的状态依赖选择模型所预测的稳定性。

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