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复杂形态结构的发育与演化模型。

A model for development and evolution of complex morphological structures.

作者信息

Atchley W R, Hall B K

机构信息

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

出版信息

Biol Rev Camb Philos Soc. 1991 May;66(2):101-57. doi: 10.1111/j.1469-185x.1991.tb01138.x.

Abstract

How 'complex' or composite morphological structures like the mammalian craniomandibular region arise during development and how they are altered during evolution are two major unresolved questions in biology. Herein, we have described a model for the development and evolution of complex morphological structures. The model assumes that natural selection acts upon an array of phenotypes generated by variation in a variety of underlying genetic and epigenetic controlling factors. Selection refines the integration of the various morphogenetic components during ontogeny in order to produce a functioning structure and to adapt the organisms to differing patterns of environmental heterogeneity. The model was applied to the development and evolution of the mammalian mandible (which is used as a paradigm of complex morphological structures). The embryology of the mandible was examined in detail in order to identify the fundamental developmental units which are necessary to assemble the final morphological structure. The model is quite general since equivalent units exist for the development of many other biological structures. This model could be applied to many other developing morphological structures as well as other groups of organisms. For example, it can be applied to cell parameters during Drosophila development (Atchley, 1987). The model as discussed in this paper assumes that morphological changes in the mandible result from evolutionary changes in its underlying developmental units. The developmental units relate to characteristics of cellular condensations which are produced from the differentiation of embryonic neural crest cells. The developmental units include: the number of stem cells in preskeletal condensations (n), the time of initiation of condensation formation (t), the fraction of cells that is mitotically active within a condensation (f), the rate of division of these cells (r), and their rate of cell death (d). These units and their derivative structures are discussed in terms of types of tissue differentiation (chondrogenesis, osteogenesis, primary/secondary osteogenesis, intramembranous/endochondral ossification) and growth properties of major morphological regions of the mandible. Variation in these five units provides the developmental basis for ontogenetic and phylogenetic modification of mandibular morphology. We have discussed how these developmental units are influenced by (a) the cell lineage from which they arise, (b) epithelial-mesenchymal (inductive tissue) interactions, (c) regulation of cell differentiation, and (d) extrinsic factors such as muscles, teeth and hormones. Evidence was provided that variation in mandibular morphology is heritable, subject to modification by natural selection, and that divergence among different genetic stocks has apparently occurred through changes in these developmental units and their derivative structures.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

像哺乳动物的颅下颌区域这样的“复杂”或复合形态结构在发育过程中是如何形成的,以及它们在进化过程中是如何改变的,是生物学中两个主要未解决的问题。在此,我们描述了一个复杂形态结构发育和进化的模型。该模型假设自然选择作用于由各种潜在遗传和表观遗传控制因素的变异所产生的一系列表型。选择在个体发育过程中优化各种形态发生成分的整合,以产生一个功能结构,并使生物体适应不同模式的环境异质性。该模型应用于哺乳动物下颌骨的发育和进化(下颌骨被用作复杂形态结构的范例)。详细研究了下颌骨的胚胎学,以确定组装最终形态结构所需的基本发育单元。该模型相当通用,因为许多其他生物结构的发育也存在等效单元。这个模型可以应用于许多其他正在发育的形态结构以及其他生物群体。例如,它可以应用于果蝇发育过程中的细胞参数(阿奇利,1987)。本文所讨论的模型假设下颌骨的形态变化源于其潜在发育单元的进化变化。发育单元与由胚胎神经嵴细胞分化产生的细胞凝聚特征有关。发育单元包括:骨骼前凝聚中的干细胞数量(n)、凝聚形成开始的时间(t)、凝聚内有丝分裂活跃的细胞比例(f)、这些细胞的分裂速率(r)以及它们的细胞死亡速率(d)。根据组织分化类型(软骨形成、骨形成、初级/次级骨形成、膜内/软骨内骨化)和下颌骨主要形态区域的生长特性,讨论了这些单元及其衍生结构。这五个单元的变异为下颌骨形态的个体发育和系统发育修饰提供了发育基础。我们讨论了这些发育单元是如何受到以下因素影响的:(a)它们所源自的细胞谱系,(b)上皮 - 间充质(诱导组织)相互作用,(c)细胞分化的调节,以及(d)诸如肌肉、牙齿和激素等外在因素。有证据表明,下颌骨形态的变异是可遗传的,会受到自然选择的修饰,并且不同遗传种群之间的差异显然是通过这些发育单元及其衍生结构的变化而发生的。(摘要截断于400字)

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