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分段的原口动物:一个可检验的假说。

The segmented urbilateria: a testable scenario.

机构信息

Centre de Génétique Moléculaire du CNRS, Avenue de la Terrasse, 91198 Gif-sur-Yvette, France.

出版信息

Integr Comp Biol. 2003 Feb;43(1):137-47. doi: 10.1093/icb/43.1.137.

Abstract

The idea that the last common ancestor of bilaterian animals (Urbilateria) was segmented has been raised recently on evidence coming from comparative molecular embryology. Leaving aside the complex debate on the value of genetic evidence, the morphological and developmental evidence in favor of a segmented Urbilateria are discussed in the light of the emerging molecular phylogeny of metazoans. Applying a cladistic character optimization procedure to the question of segmentation is vastly complicated by the problem of defining without ambiguity what segmentation is and to what taxa this definition applies. An ancestral segmentation might have undergone many complex derivations in each different phylum, thus rendering the cladistics approaches problematic. Taking the most general definitions of coelom and segmentation however, some remarkably similar patterns are found across the bilaterian tree in the way segments are formed by the posterior addition of mesodermal segments or somites. Postulating that these striking similarities in mesodermal patterns are ancestral, a scenario for the diversification of bilaterians from a metameric ancestor is presented. Several types of evolutionary mechanisms (specialization, tagmosis, progenesis) operating on a segmented ancestral body plan would explain the rapid emergence of body plans during the Cambrian. We finally propose to test this hypothesis by comparing genes involved in mesodermal segmentation.

摘要

最近,来自比较分子胚胎学的证据表明,两侧对称动物(Urbilateria)的最后共同祖先具有分节性。抛开关于遗传证据价值的复杂争论,本文根据后生动物的新兴分子系统发育,讨论了支持 Urbilateria 具有分节性的形态学和发育学证据。由于缺乏明确的分节定义以及该定义适用于哪些分类单元的问题,应用分支系统学特征优化程序来解决分节问题变得极其复杂。一个祖先的分节可能在每个不同的门中经历了许多复杂的衍生,从而使得分支系统学方法存在问题。然而,采用体腔和分节的最一般定义,在两侧对称动物树中,以中胚层节段或体节的后加方式形成节段的方式存在一些非常相似的模式。假设这些中胚层模式的惊人相似性是祖先进化的,提出了一个从具有分节性的祖先分化出两侧对称动物的情景。在分段的祖先身体模式上运作的几种类型的进化机制(特化、体节化、幼体发生)可以解释寒武纪期间身体模式的快速出现。我们最终建议通过比较参与中胚层分节的基因来检验这一假设。

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