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首页> 外文期刊>Hydrobiologia >Influences of life history and environment on lake trout (Salvelinus namaycush) growth and longevity in the Husky Lakes of the Western Canadian Arctic
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Influences of life history and environment on lake trout (Salvelinus namaycush) growth and longevity in the Husky Lakes of the Western Canadian Arctic

机译:生命历史与环境对西加拿大北极哈斯奇湖泊鳟鱼(Salvelinus Namaycush)生长和长寿的影响

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摘要

The interaction between an organism and its environment is a major determinant of an individual's growth rate, longevity, and fitness. Such interactions and resultant variation in growth is particularly prevalent in salmonids where a diversity of life history types and morphotypes can be observed within a single ecosystem. Lake trout, Salvelinus namaycush, are typically considered freshwater residents. However, three life history types within the Husky Lakes estuary and connected lakes, NWT were recently documented, including semi-anadromous, brackish-water resident, and freshwater resident. To understand how use of brackish-water environments influences growth and longevity in lake trout, we assessed otolith increment widths, as a proxy for annual fish growth, and age-at- capture among life history types. Assessment of increments indicated that growth increased in brackish water for semi-anadromous lake trout, and that growth was faster for semi-anadromous and brackish-water residents than for freshwater residents (70 mm larger on average at age 15). In addition, age at capture was significantly older in brackish-water residents (3.8 years older) when compared to the other life histories. Together these results indicate that life in brackish water can have positive effects on growth and longevity for lake trout.
机译:生物体与其环境之间的相互作用是个人增长率,长寿和健身的主要决定因素。这种相互作用和产生的生长变化在鲑鱼中特别普遍普遍,其中可以在单一生态系统内观察到生命历史类型和Mor型型的多样性。鳟鱼湖,Salvelinus Namaycush通常被认为是淡水居民。然而,最近记录了赫斯基湖泊河口和连通湖泊内的三种生命历史类型,包括半赤散,咸水居民和淡水居民。要了解如何使用咸水环境,影响湖泊鳟鱼的生长和长寿,我们评估了偏离偏振宽度,作为年鱼增长的代理,以及终身历史类型之间的年龄。增量评估表明,半赤料湖鳟鱼的咸水中的增长增加,半赤锤和咸水居民的生长比淡水居民(平均为50毫米较大)更快。此外,与其他生命历史相比,饮料年龄在咸水居民(年龄3.8岁)的年龄明显老。这些结果表明,咸水中的生命可能对湖泊鳟鱼的生长和长寿产生积极影响。

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