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进化变化的发育数量遗传模型。

Developmental quantitative genetic models of evolutionary change.

作者信息

Atchley W R, Xu S, Vogl C

机构信息

Department of Genetics, North Carolina State University, Raleigh 27695-7614.

出版信息

Dev Genet. 1994;15(1):92-103. doi: 10.1002/dvg.1020150110.

Abstract

Discussions about evolutionary change in developmental processes or morphological structures are predicated on specific quantitative genetic models whose parameters predict whether evolutionary change can occur, its relative rate and direction, and if correlated change will occur in other related and unrelated structures. The appropriate genetic model should reflect the relevant genetical and developmental biology of the organisms, yet be simple enough in its parameters so that deductions can be made and hypotheses tested. As a consequence, the choice of the most appropriate genetic model for polygenically controlled traits is a complex tissue and the eventual choice of model is often a compromise between completeness of the model and computational expediency. Herein, we discuss several developmental quantitative genetic models for the evolution of development and morphology. The models range from the classical direct effects model to complex epigenetic models. Further, we demonstrate the algebraic equivalency of the Cowley and Atchley epigenetic model and Wagner's developmental mapping model. Finally, we propose a new multivariate model for continuous growth trajectories. The relative efficacy of these various models for understanding evolutionary change in developmental and morphological traits is discussed.

摘要

关于发育过程或形态结构进化变化的讨论基于特定的数量遗传模型,这些模型的参数可预测进化变化是否会发生、其相对速率和方向,以及其他相关和不相关结构是否会发生相关变化。合适的遗传模型应反映生物体相关的遗传学和发育生物学,但参数要足够简单,以便能够进行推导并检验假设。因此,为多基因控制性状选择最合适的遗传模型是一个复杂的问题,最终模型的选择往往是模型完整性和计算便利性之间的折衷。在此,我们讨论几种用于发育和形态进化的发育数量遗传模型。这些模型从经典的直接效应模型到复杂的表观遗传模型不等。此外,我们证明了考利和阿奇利表观遗传模型与瓦格纳发育图谱模型在代数上的等效性。最后,我们提出了一种用于连续生长轨迹的新多变量模型。讨论了这些不同模型对于理解发育和形态性状进化变化的相对有效性。

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