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Distal-less在甲壳类附肢发育中的复杂作用。

A complex role for distal-less in crustacean appendage development.

作者信息

Williams Terri A, Nulsen C, Nagy L M

机构信息

Department of Ecology and Evolutionary Biology, Yale University, New Haven, CA 06520, USA.

出版信息

Dev Biol. 2002 Jan 15;241(2):302-12. doi: 10.1006/dbio.2001.0497.

Abstract

The developing leg of Drosophila is initially patterned by subdivision of the leg into proximal and distal domains by the activity of the homeodomain proteins Extradenticle (Exd) and Distal-less (Dll). These early domains of gene expression are postulated to reflect a scenario of limb evolution in which an undifferentiated appendage outgrowth was subdivided into two functional parts, the coxapodite and telopodite. The legs of most arthropods have a more complex morphology than the simple rod-shaped leg of Drosophila. We document the expression of Dll and Exd in two crustacean species with complex branched limbs. We show that in these highly modified limbs there is a Dll domain exclusive of Exd but there is also extensive overlap in Exd and Dll expression. While arthropod limbs all appear to have distinct proximal and distal domains, those domains do not define homologous structures throughout arthropods. In addition, we find a striking correlation throughout the proximal/distal extent of the leg between setal-forming cells and Dll expression. We postulate that this may reflect a pleisiomorphic function of Dll in development of the peripheral nervous system. In addition, our results confirm previous observations that branch formation in multiramous arthropod limbs is not regulated by a simple iteration of the proximal/distal patterning module employed in Drosophila limb development.

摘要

果蝇发育中的腿部最初是通过同源域蛋白Extra denticle(Exd)和Distal-less(Dll)的活性将腿部划分为近端和远端区域来进行模式化的。这些早期的基因表达区域被推测反映了肢体进化的一种情况,即一个未分化的附肢生长物被细分为两个功能部分,即基节和端节。大多数节肢动物的腿比果蝇简单的棒状腿具有更复杂的形态。我们记录了Dll和Exd在两种具有复杂分支肢体的甲壳类动物中的表达情况。我们表明,在这些高度特化的肢体中,存在一个不包含Exd的Dll区域,但Exd和Dll的表达也有广泛的重叠。虽然节肢动物的肢体似乎都有明显的近端和远端区域,但这些区域在整个节肢动物中并不定义同源结构。此外,我们在腿部的近端/远端范围内发现了刚毛形成细胞与Dll表达之间的显著相关性。我们推测,这可能反映了Dll在周围神经系统发育中的一个原始功能。此外,我们的结果证实了先前的观察结果,即多分支节肢动物肢体中的分支形成并不受果蝇肢体发育中使用的近端/远端模式化模块的简单重复调控。

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