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Novel approach to heritability detection suggests robustness to paternal genotype in a complex morphological trait

机译:遗传力检测的新方法表明在复杂形态特征中对父本基因型的鲁棒性

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Abstract Heritable variation is essential for evolution by natural selection. In Neotropical army ants, the ecological role of a given species is linked intimately to the morphological variation within the sterile worker caste. Furthermore, the army ant Eciton burchellii is highly polyandrous, presenting a unique opportunity to explore heritability of morphological traits among related workers sharing the same colonial environment. In order to exploit the features of this organismal system, we generated a large genetic and morphological dataset and applied our new method that employs geometric morphometrics (GM) to detect the heritability of complex morphological traits. After validating our approach with an existing dataset of known heritability, we simulated our ability to detect heritable variation given our sampled genotypes, demonstrating the method can robustly recover heritable variation of small effect size. Using this method, we tested for genetic caste determination and heritable morphological variation using genetic and morphological data on 216 individuals of E. burchellii . Results reveal this ant lineage (1) has the highest mating frequency known in ants, (2) demonstrates no paternal genetic caste determination, and (3) suggests a lack of heritable morphological variation in this complex trait associated with paternal genotype. We recommend this method for leveraging the increased resolution of GM data to explore and understand heritable morphological variation in nonmodel organisms.
机译:摘要遗传变异对于自然选择的进化至关重要。在新热带军蚁中,给定物种的生态作用与不育工人阶级内的形态变化密切相关。此外,陆军蚂蚁Eciton burchellii具有高度的一夫多妻制,这为探索具有相同殖民地环境的相关工人提供了形态特征的遗传力的独特机会。为了利用此生物系统的特征,我们生成了一个庞大的遗传和形态数据集,并应用了我们采用几何形态计量学(GM)的新方法来检测复杂形态特征的遗传力。在使用已知遗传力的现有数据集验证了我们的方法之后,我们模拟了在给定采样基因型的情况下检测遗传变异的能力,证明了该方法可以稳健地恢复小效应量的遗传变异。使用这种方法,我们使用216名伯氏埃希氏菌的个体的遗传和形态学数据测试了遗传等级的确定和可遗传的形态变异。结果表明,这种蚂蚁谱系(1)具有蚂蚁已知的最高交配频率,(2)没有父系遗传种姓的确定,(3)表明这种与父系基因型相关的复杂性状缺乏可遗传的形态变异。我们建议使用这种方法来利用提高的GM数据分辨率来探索和了解非模型生物中的遗传形态变异。

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