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Can migrants escape from density dependence?

机译:移民是否可以逃离密度依赖性?

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AbstractMigration is thought to maximize growth by enabling individuals to escape from density dependence, but this has rarely been tested at the individual level in natural populations. We employed linear mixed modeling of the spacing between consecutive scale growth rings to reconstruct individual growth profiles of a paradigmatic fish migrant, the sea trout (Salmo trutta) and related these to estimates of year class strength over a 13-year period. Variation in scale growth was 1.3 times greater among individuals than within individuals in freshwater and 10 times greater at sea. Scale growth was inversely related to year class strength, both in freshwater (before migration) and at sea (after migration). Competition for patchily distributed resources is the most plausible explanation of the negative density-dependent growth observed in freshwater and, to a lesser extent, in the marine environment. Our study provides some of the strongest evidence for a role of density dependence in determining partial migrations because although migrants can maximize growth by moving into the sea, they do not appear to become free from density dependence constraints completely. This has implications for conservation and suggests that sea trout and other anadromous fish displaying partial migrations may not be best managed on a river by river basis, but rather from a broader, coastal perspective.
机译:旨在通过使个人逃避密度依赖性来最大限度地提高增长,但这很少在自然群体中的个人水平上进行测试。我们采用了连续刻度增长环之间的间距的线性混合建模,以重建牧场移民,海鳟(Salmo Trutta)的个体生长型材,并在13年内将其相关的估计阶级实力估算。在淡水中的个体内,规模增长的变化比淡水中的个体均为1.3倍,海上10倍。规模增长与淡水(移徙前)和海上(移民后)的级别级别与年级别相关联。普通地分布式资源的竞争是对淡水中观察到的负密度依赖性生长的最合理的解释,并在较小程度上进行海洋环境。我们的研究为密度依赖的作用提供了一些最强大的证据,因为虽然移民可以通过进入大海来最大化增长,但它们并未完全从密度依赖约束中最大化增长。这对保护具有影响,并提出了展示部分迁徙的海鳟和其他阿拉基什鱼类可以在河流上最佳管理,而是从更广泛的沿海角度来看。

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