Mittmann B, Scholtz G
Humboldt-Universität zu Berlin, Institut für Biologie, Vergleichende Zoologie, Philippstrasse 13, 10115 Berlin, Germany. beate=
Dev Genes Evol. 2001 May;211(5):232-43. doi: 10.1007/s004270100150.
The homeobox gene Distal-less (Dll) is well known for its participation in the development of arthropod limbs and their derivatives. Dll activity has been described for all groups of arthropods, but also for molluscs, echinoderms and vertebrates. Generally, Dll participates in the establishment of the proximo-distal-axis and differentiation along this axis. During our investigation of the expression pattern in the silverfish Lepisma saccharina and the horseshoe crab Limulus polyphemus, we found several expressions in late stages which cannot be explained with the "normal" limb-specific function. The antenna, cerci and terminal filament of the silverfish show a striped expression; single cells on the labrum, mandibles, maxillary palps and anal valves are also strongly stained by the Dll antibody. In addition to cell groups in the developing ganglia of the CNS, in the coxal endites and several nerve cells in femur and the trochanter of the prosomal limbs, the whole prosomal shield of Limulus polyphemus is surrounded by Dll-positive cell clusters. Furthermore, the lateral processes of the opisthosoma and the edges of the opisthosomal appendages are Dll positive. To get an indication of the cell fate of these regions, we examined hatched larvae and juvenile stages of both species with the SEM. We found a striking correlation of these Dll-positive areas and different sense organs, especially mechanoreceptors. Since many sense organs in arthropods are situated on the limbs, interpretation of the Dll expression in limbs is problematical. This has critical implications for comparative analysis of Dll expression patterns between arthropods and for the claim of homology between limb-like structures. Furthermore, we discuss the possibility of convergent appendage evolution in various bilaterian groups based on the improvement of spatial sensory resolution.
同源异型框基因Distal-less(Dll)因其参与节肢动物肢体及其衍生物的发育而广为人知。Dll的活性已在所有节肢动物类群中有所描述,在软体动物、棘皮动物和脊椎动物中也有相关报道。一般来说,Dll参与近远轴的建立以及沿该轴的分化。在我们对衣鱼Lepisma saccharina和鲎Limulus polyphemus的表达模式进行研究时,我们发现在后期有几种表达情况无法用“正常”的肢体特异性功能来解释。衣鱼的触角、尾须和终丝呈现条纹状表达;上唇、下颌、下颚须和肛瓣上的单个细胞也被Dll抗体强烈染色。除了中枢神经系统发育中的神经节中的细胞群、基节内叶以及前体肢体股骨和转节中的几个神经细胞外,鲎的整个前体盾片都被Dll阳性细胞簇包围。此外,后体的侧突和后体附肢的边缘也是Dll阳性。为了了解这些区域的细胞命运,我们用扫描电子显微镜检查了这两个物种的孵化幼虫和幼体阶段。我们发现这些Dll阳性区域与不同的感觉器官,尤其是机械感受器之间存在显著的相关性。由于节肢动物的许多感觉器官位于肢体上,因此对肢体中Dll表达的解释存在问题。这对节肢动物之间Dll表达模式的比较分析以及类肢结构同源性的认定具有关键意义。此外,我们基于空间感觉分辨率的提高,讨论了各种两侧对称动物类群中附肢趋同进化的可能性。