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双节段周期性是蜈蚣发育过程中节段生成的基础。

A double segment periodicity underlies segment generation in centipede development.

作者信息

Chipman Ariel D, Arthur Wallace, Akam Michael

机构信息

University Museum of Zoology, Downing Street, Cambridge CB2 3EJ, United Kingdom.

出版信息

Curr Biol. 2004 Jul 27;14(14):1250-5. doi: 10.1016/j.cub.2004.07.026.

Abstract

The number of leg-bearing segments in centipedes varies extensively, between 15 and 191, and yet it is always odd. This suggests that segment generation in centipedes involves a stage with double segment periodicity and that evolutionary variation in segment number reflects the generation of these double segmental units. However, previous studies have revealed no trace of this. Here we report the expression of two genes, an odd-skipped related gene (odr1) and a caudal homolog, that serve as markers for early steps of segment formation in the geophilomorph centipede, Strigamia maritima. Dynamic expression of odr1 around the proctodaeum resolves into a series of concentric rings, revealing a pattern of double segment periodicity in overtly unsegmented tissue. Initially, the expression of the caudal homolog mirrors this double segment periodicity, but shortly before engrailed expression and overt segmentation, the intercalation of additional stripes generates a repeat with single segment periodicity. Our results provide the first clues about the causality of the unique and fascinating "all-odd" pattern of variation in centipede segment numbers and have implications for the evolution of the mechanisms of arthropod segmentation.

摘要

蜈蚣中具有腿的体节数量差异很大,在15到191节之间,但始终为奇数。这表明蜈蚣的体节生成涉及一个具有双体节周期性的阶段,并且体节数量的进化变异反映了这些双体节单元的生成。然而,先前的研究并未发现任何相关迹象。在此,我们报告了两个基因的表达情况,一个是odd-skipped相关基因(odr1),另一个是尾同源基因,它们在土栖蜈蚣滨海斯特里加米亚(Strigamia maritima)中作为体节形成早期步骤的标记。odr1在原肛附近的动态表达分解为一系列同心环,揭示了在明显未分节的组织中的双体节周期性模式。最初,尾同源基因的表达反映了这种双体节周期性,但在engrailed表达和明显分节之前不久,额外条纹的插入产生了具有单体节周期性的重复。我们的结果为蜈蚣体节数量独特且引人入胜的“全奇数”变异模式的因果关系提供了首个线索,并对节肢动物分节机制的进化具有启示意义。

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