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海滨多足虫(Strigamia maritima):它能告诉我们关于体节发育和进化的哪些信息。

The centipede Strigamia maritima: what it can tell us about the development and evolution of segmentation.

作者信息

Arthur Wallace, Chipman Ariel D

机构信息

Department of Zoology, National University of Ireland, Galway, Ireland.

出版信息

Bioessays. 2005 Jun;27(6):653-60. doi: 10.1002/bies.20234.

Abstract

One of the most fundamental features of the body plan of arthropods is its segmental design. There is considerable variation in segment number among arthropod groups (about 20-fold); yet, paradoxically, the vast majority of arthropod species have a fixed number of segments, thus providing no variation in this character for natural selection to act upon. However, the 1000-species-strong centipede order Geophilomorpha provides an exception to the general rule of intraspecific invariance in segment number. Members of this group, and especially our favourite animal Strigamia maritima, may thus help us to understand the evolution of segment number in arthropods. Evolution must act by modifying the formation of segments during embryogenesis. So, how this developmental process operates, in a variable-segment-number species, is of considerable interest. Strigamia maritima turns out to be a tractable system both at the ecological level of investigating differences in mean segment number between populations and at the molecular level of studying the expression patterns of developmental genes. Here we report the current state of play in our work on this fascinating animal, including our recent finding of a double-segment periodicity in the expression of two Strigamia segmentation genes, and its possible implications for our understanding of arthropod segmentation mechanisms in general.

摘要

节肢动物身体结构最基本的特征之一是其分节设计。节肢动物类群之间的体节数量存在相当大的差异(约20倍);然而,矛盾的是,绝大多数节肢动物物种的体节数量是固定的,因此在这一特征上没有可供自然选择作用的变异。然而,拥有1000个物种的蜈蚣目地蜈蚣科是体节数量种内不变这一普遍规律的一个例外。因此,该类群的成员,尤其是我们最喜欢的动物滨海斯特加蜈蚣,可能有助于我们理解节肢动物体节数量的进化。进化必定是通过在胚胎发育过程中改变体节的形成来起作用的。那么,在一个体节数量可变的物种中,这个发育过程是如何运作的,就相当令人感兴趣了。事实证明,滨海斯特加蜈蚣在研究种群间平均体节数量差异的生态层面以及研究发育基因表达模式的分子层面,都是一个易于处理的系统。在此,我们报告我们对这种迷人动物的研究工作的当前进展情况,包括我们最近发现的滨海斯特加蜈蚣两个体节分割基因表达中的双节段周期性,以及它对我们总体理解节肢动物分割机制可能产生的影响。

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