Complex and Dynamic Gene-by-Age and Gene-by-Environment Interactions Underlie Functional Morphological Variation in Adaptive Divergence in Arctic Charr (Salvelinus alpinus).

IF 2.6 3区 生物学 Q2 DEVELOPMENTAL BIOLOGY Evolution & Development Pub Date : 2025-03-01 DOI:10.1111/ede.70000
Christine L Ouellet-Fagg, Anne A Easton, Kevin J Parsons, Roy G Danzmann, Moira M Ferguson
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Abstract

The evolution of adaptive phenotypic divergence requires heritable genetic variation. However, it is underappreciated that trait heritability is molded by developmental processes interacting with the environment. We hypothesized that the genetic architecture of divergent functional traits was dependent on age and foraging environment. Thus, we induced plasticity in full-sib families of Arctic charr (Salvelinus alpinus) morphs from two Icelandic lakes by mimicking prey variation in the wild. We characterized variation in body shape and size at two ages and investigated their genetic architecture with quantitative trait locus (QTL) analysis. Age had a greater effect on body shape than diet in most families, suggesting that development strongly influences phenotypic variation available for selection. Consistent with our hypothesis, multiple QTL were detected for all traits and their location depended on age and diet. Many of the genome-wide QTL were located within a subset of duplicated chromosomal regions suggesting that ancestral whole genome duplication events have played a role in the genetic control of functional morphological variation in the species. Moreover, the detection of two body shape QTL after controlling for the effects of age provides additional evidence for genetic variation in the plastic response of morphological traits to environmental variation. Thus, functional morphological traits involved in phenotypic divergence are molded by complex genetic interactions with development and environment.

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复杂和动态的基因随年龄和基因随环境的相互作用是北极鲑(Salvelinus alpinus)适应分化的功能形态变异的基础。
适应性表型分化的进化需要可遗传的遗传变异。然而,人们没有充分认识到性状遗传是由发育过程与环境相互作用塑造的。我们假设不同功能性状的遗传结构依赖于年龄和觅食环境。因此,我们通过模拟野生猎物的变化,诱导了来自两个冰岛湖泊的北极鲑(Salvelinus alpinus)变种的全同胞家族的可塑性。本研究利用数量性状位点(quantitative trait locus, QTL)分析了两个年龄段的体型和体型变异,并对其遗传结构进行了研究。在大多数家庭中,年龄对体型的影响大于饮食,这表明发育对可用于选择的表型变异有强烈影响。与我们的假设一致,所有性状都检测到多个QTL,它们的位置取决于年龄和饮食。许多全基因组QTL位于重复染色体区域的一个子集内,这表明祖先的全基因组重复事件在物种的功能形态变异的遗传控制中发挥了作用。此外,在控制了年龄的影响后,检测到两个体型QTL,为形态性状对环境变化的可塑性响应的遗传变异提供了额外的证据。因此,涉及表型分化的功能形态性状是由发育和环境的复杂遗传相互作用塑造的。
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来源期刊
Evolution & Development
Evolution & Development 生物-发育生物学
CiteScore
6.30
自引率
3.40%
发文量
26
审稿时长
>12 weeks
期刊介绍: Evolution & Development serves as a voice for the rapidly growing research community at the interface of evolutionary and developmental biology. The exciting re-integration of these two fields, after almost a century''s separation, holds much promise as the focus of a broader synthesis of biological thought. Evolution & Development publishes works that address the evolution/development interface from a diversity of angles. The journal welcomes papers from paleontologists, population biologists, developmental biologists, and molecular biologists, but also encourages submissions from professionals in other fields where relevant research is being carried out, from mathematics to the history and philosophy of science.
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