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From top to bottom: Do Lake Trout diversify along a depth gradient in Great Bear Lake NT Canada?

机译:从上到下:鳟鱼湖在加拿大新界大熊湖的深度梯度上是否多样化?

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摘要

Depth is usually considered the main driver of Lake Trout intraspecific diversity across lakes in North America. Given that Great Bear Lake is one of the largest and deepest freshwater systems in North America, we predicted that Lake Trout intraspecific diversity to be organized along a depth axis within this system. Thus, we investigated whether a deep-water morph of Lake Trout co-existed with four shallow-water morphs previously described in Great Bear Lake. Morphology, neutral genetic variation, isotopic niches, and life-history traits of Lake Trout across depths (0–150 m) were compared among morphs. Due to the propensity of Lake Trout with high levels of morphological diversity to occupy multiple habitat niches, a novel multivariate grouping method using a suite of composite variables was applied in addition to two other commonly used grouping methods to classify individuals. Depth alone did not explain Lake Trout diversity in Great Bear Lake; a distinct fifth deep-water morph was not found. Rather, Lake Trout diversity followed an ecological continuum, with some evidence for adaptation to local conditions in deep-water habitat. Overall, trout caught from deep-water showed low levels of genetic and phenotypic differentiation from shallow-water trout, and displayed higher lipid content (C:N ratio) and occupied a higher trophic level that suggested an potential increase of piscivory (including cannibalism) than the previously described four morphs. Why phenotypic divergence between shallow- and deep-water Lake Trout was low is unknown, especially when the potential for phenotypic variation should be high in deep and large Great Bear Lake. Given that variation in complexity of freshwater environments has dramatic consequences for divergence, variation in the complexity in Great Bear Lake (i.e., shallow being more complex than deep), may explain the observed dichotomy in the expression of intraspecific phenotypic diversity between shallow- vs. deep-water habitats. The ambiguity surrounding mechanisms driving divergence of Lake Trout in Great Bear Lake should be seen as reflective of the highly variable nature of ecological opportunity and divergent natural selection itself.
机译:在北美,通常认为深度是鳟鱼种内物种多样性的主要驱动力。鉴于大熊湖是北美最大和最深的淡水系统之一,我们预测鳟鱼种内多样性将沿该系统内的深度轴进行组织。因此,我们研究了鳟鱼湖的深水形态是否与大熊湖先前描述的四种浅水形态共存。比较了形态之间的形态,中性遗传变异,同位素生态位和鳟鱼湖在整个深度(0-150 m)的生活特征。由于鳟鱼湖具有较高的形态多样性,倾向于占据多个栖息地,因此,除了另外两种常用的分组方法以外,还使用了一套使用一组综合变量的新型多元分组方法。深度本身并不能解释大熊湖中鳟鱼的多样性。未发现明显的第五深水变体。相反,鳟鱼湖的多样性遵循着一个生态学上的连续性,并有一些证据表明适应深水生境的当地条件。总体而言,从深水捕获的鳟鱼与浅水鳟的遗传和表型分化水平较低,脂类含量(C:N比)较高,营养水平较高,表明食肉动物的潜在增加(包括同类相食)比前面介绍的四个变体。为何在浅水和深水鳟鱼之间的表型差异低为什么是未知的,特别是当在大而深的大熊湖中表型变异的可能性应该很高时。鉴于淡水环境复杂性的变化对差异性产生了显着影响,因此大熊湖中复杂性的变化(即浅层比深层更复杂)可能解释了浅层和深层之间种内表型多样性表达中观察到的二分法。深水栖息地。围绕大熊湖鳟鱼湖发散的周围机制的模糊性应被视为反映了生态机会的高度可变性和自然选择本身的差异。

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