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探索多足纲动物的体节划分:蜈蚣中偶数缺口基因、engrailed基因和无翅基因的表达模式

Exploring myriapod segmentation: the expression patterns of even-skipped, engrailed, and wingless in a centipede.

作者信息

Hughes Cynthia L, Kaufman Thomas C

机构信息

Howard Hughes Medical Institute, Department of Biology, Indiana University, Bloomington 47405, USA.

出版信息

Dev Biol. 2002 Jul 1;247(1):47-61. doi: 10.1006/dbio.2002.0683.

Abstract

Segment formation is critical to arthropod development, yet there is still relatively little known about this process in most arthropods. Here, we present the expression patterns of the genes even-skipped (eve), engrailed, and wingless in a centipede, Lithobius atkinsoni. Despite some differences when compared with the patterns in insects and crustaceans, the expression of these genes in the centipede suggests that their basic roles are conserved across the mandibulate arthropods. For example, unlike the seven pair-rule stripes of eve expression in the Drosophila embryonic germband, the centipede eve gene is expressed strongly in the posterior of the embryo, and in only a few stripes between newly formed segments. Nonetheless, this pattern likely reflects a conserved role for eve in the process of segment formation, within the different context of a short-germband mode of embryonic development. In the centipede, the genes wingless and engrailed are expressed in stripes along the middle and posterior of each segment, respectively, similar to their expression in Drosophila. The adjacent expression of the engrailed and wingless stripes suggests that the regulatory relationship between the two genes may be conserved in the centipede, and thus this pathway may be a fundamental mechanism of segmental development in most arthropods.

摘要

体节形成对于节肢动物的发育至关重要,然而在大多数节肢动物中,人们对这一过程的了解仍然相对较少。在此,我们展示了在一种蜈蚣——阿特金森氏石蜈蚣(Lithobius atkinsoni)中,even-skipped(eve)、engrailed和wingless基因的表达模式。尽管与昆虫和甲壳类动物中的模式相比存在一些差异,但这些基因在蜈蚣中的表达表明它们的基本作用在有颚节肢动物中是保守的。例如,与果蝇胚胎胚带中eve表达的七对体节极性条纹不同,蜈蚣的eve基因在胚胎后部强烈表达,且仅在新形成的体节之间的少数条纹中表达。尽管如此,这种模式可能反映了eve在体节形成过程中的保守作用,只是处于短胚带模式胚胎发育的不同背景下。在蜈蚣中,wingless和engrailed基因分别沿着每个体节的中部和后部以条纹形式表达,类似于它们在果蝇中的表达。engrailed和wingless条纹的相邻表达表明这两个基因之间的调控关系在蜈蚣中可能是保守的,因此这条途径可能是大多数节肢动物体节发育的基本机制。

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