首页> 外文期刊>Evolutionary Applications >“And if you gaze long into an abyss, the abyss gazes also into thee”: four morphs of Arctic charr adapting to a depth gradient in Lake Tinnsj?en
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“And if you gaze long into an abyss, the abyss gazes also into thee”: four morphs of Arctic charr adapting to a depth gradient in Lake Tinnsj?en

机译:“如果你凝视着深渊,深渊凝视着”::四个北极Charr的变形适应田纳西湖的深度梯度?

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The origin of species is a central topic in biology. Ecological speciation might be a driver in adaptive radiation, providing a framework for understanding mechanisms, level, and rate of diversification. The Arctic charr Salvelinus alpinus L. is a polymorphic species with huge morphological and life‐history diversity in Holarctic water systems. We studied adaptive radiation of Arctic charr in the 460‐m‐deep Lake Tinnsj?en to (a) document eco‐morphology and life‐history traits of morphs, (b) estimate reproductive isolation of morphs, and (c) illuminate Holarctic phylogeography and lineages colonizing Lake Tinnsj?en. We compared Lake Tinnsj?en with four Norwegian outgroup populations. Four field‐assigned morphs were identified in Lake Tinnsj?en: the planktivore morph in all habitats except deep profundal, the dwarf morph in shallow‐moderate profundal, the piscivore morph mainly in shallow‐moderate profundal, and a new undescribed abyssal morph in the deep profundal. Morphs displayed extensive life‐history variation in age and size. A moderate‐to‐high concordance was observed among morphs and four genetic clusters from microsatellites. mtDNA suggested two minor endemic clades in Lake Tinnsj?en originating from one widespread colonizing clade in the Holarctic. All morphs were genetically differentiated at microsatellites ( F subST/sub: 0.12–0.20), associated with different mtDNA clade frequencies. Analyses of outgroup lakes implied colonization from a river below Lake Tinnsj?en. Our findings suggest postglacial adaptive radiation of one colonizing mtDNA lineage with niche specialization along a depth–temperature–productivity–pressure gradient. Concordance between reproductive isolation and habitats of morphs implies ecological speciation as a mechanism. Particularly novel is the extensive morph diversification with depth into the often unexplored deepwater profundal habitat, suggesting we may have systematically underestimated biodiversity in lakes. In a biological conservation framework, it is imperative to protect endemic below‐species‐level biodiversity, particularly so since within‐species variation comprises an extremely important component of the generally low total biodiversity observed in the northern freshwater systems.
机译:物种的起源是生物学中的核心主题。生态物种可能是适应性辐射的驾驶员,提供了理解机制,水平和多样化率的框架。北极Charr Salvelinus Alpinus L.是一种多态性物种,具有巨大的形态学和终身历史多样性在全际水系统中。我们研究了460-M-Deep Lake Tinnsj的北极Charr的适应性辐射到(a)形式的形态和寿命历史特征,(b)估计变形的生殖分离,(c)阐明了全力病学辐射和谱系殖民湖Tinnsj?en。我们比较了Tinnsj Lake Wake Wish?en,四个挪威小组种群。在Tinnsj湖中发现了四个现场分配的变形?深度丰富的。变形展示了广泛的年龄和大小的历史历史变化。在Morphs和来自微卫星的四种遗传簇之间观察到中度至高的一致性。 MTDNA在Tinnsj湖中提出了两种次要的流行语,源于Holarctic中的一个广泛殖民地殖民地的植物。所有变形均在微卫星(F ST :0.12-0.20)上遗传地分化,与不同的MTDNA液体频率相关。从锡恩湖湖下方的河流中的聚集组湖泊的分析意见我们的研究结果表明,沿着深度温度 - 生产率 - 压力梯度的利基专业化的一个定植MTDNA谱系的后闪烁自适应辐射。生殖隔离和变形栖息地之间的一致性意味着生态形态作为一种机制。特别是小说是广泛的变形多样化,深入进入经常未开发的深水丰富栖息地,建议我们可能在湖泊中系统地低估了生物多样性。在生物保护框架中,必须保护不同物种水平的生物多样性的必要性,因此因此,因此在物种内变化包括在北淡水系统中观察到的通常低总体生物多样性的极其重要的组分。

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