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The evolution of canalization and the breaking of von Baer's laws: Modeling the evolution of development with epistasis

机译:渠化的演变与冯·巴尔定律的打破:对具有上位性的发展演变进行建模

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Evolution can change the developmental processes underlying a character without changing the average expression of the character itself. This sort of change must occur in both the evolution of canalization, in which a character becomes increasingly buffered against genetic or developmental variation, and in the phenomenon of closely related species that show similar adult phenotypes but different underlying developmental patterns. To study such phenomena, I develop a model that follows evolution on a surface representing adult phenotype as a function of underlying developmental characters. A contour on such a "phenotype landscape" is a set of states of developmental characters that produce the same adult phenotype. Epistasis induces curvature of this surface, and degree of canalization is represented by the slope along a contour. I first discuss the geometric properties of phenotype landscapes, relating epistasis to canalization. I then impose a fitness function on the phenotype and model evolution of developmental characters as a function of the fitness function and the local geometry of the surface. This model shows how canalization evolves as a population approaches an optimum phenotype. It further shows that under some circumstances, "decanalization" can occur, in which the expression of adult phenotype becomes increasingly sensitive to developmental variation. This process can cause very similar populations to diverge from one another developmentally even when their adult phenotypes experience identical selection regimes. [References: 35]
机译:进化可以改变角色基础的发展过程,而无需改变角色本身的平均表情。这种变化既必须发生在渠化的演变过程中,在此过程中,角色越来越受到遗传或发育变异的影响,而在密切相关的物种中却表现出相似的成年表型,但基础发展模式却不同。为了研究这种现象,我开发了一个模型,该模型遵循表示成年表型的表面上的演化作为基础发育特征的函数。这种“表型景观”上的轮廓是产生相同成年表型的一组发育性状状态。上位引起该表面的弯曲,并且渠化程度由沿着轮廓的斜率表示。我首先讨论表型景观的几何特性,将上位性与渠化联系起来。然后,我将适应性函数强加于表型和发育特征的模型演化上,作为适应性函数和表面的局部几何函数。该模型显示了随着人口趋近最佳表型,渠道化如何演变。它进一步表明,在某些情况下,可能发生“脱化”,其中成年表型的表达对发育变异变得越来越敏感。即使他们的成年表型经历了相同的选择机制,这一过程也可能导致非常相似的种群在发育上彼此分离。 [参考:35]

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