Ober Karen A, Jockusch Elizabeth L
Department of Ecology and Evolutionary Biology, 75 N. Eagleville Rd., U-3043, University of Connecticut, Storrs, CT 06269, USA.
Dev Biol. 2006 Jun 15;294(2):391-405. doi: 10.1016/j.ydbio.2006.02.053. Epub 2006 Apr 17.
Axis patterning and appendage development have been well studied in Drosophila melanogaster, a species in which both limb and segment morphogenesis are derived. In Drosophila, positional information from genes important in anteroposterior and dorsoventral axis formation, including wingless (wg) and decapentaplegic (dpp), is required for allocating and patterning the appendage primordia. We used RNA interference to characterize the functions of wg and dpp in the red flour beetle, Tribolium castaneum, which retains more ancestral modes of limb and segment morphogenesis. We also characterized the expression of potential targets of the WG and DPP signaling pathways in these embryos. Tribolium embryos in which dpp had been downregulated had defects in the dorsalmost body wall, but did not appear to have been globally repatterned and had normal appendages. Downregulation of wg led to the loss of segment boundaries, gnathal and thoracic appendages, and lateral head lobes, and to changes in the expression of dpp, Distal-less, and Engrailed. The functions of wg varied along both the anteroposterior and dorsoventral axes of the embryo. Phylogenetic comparisons indicate that the role of WNT signaling in segment boundary formation is evolutionarily old, but that its role in appendage allocation originated in the common ancestor of holometabolous insects.
在黑腹果蝇中,轴模式形成和附肢发育已得到充分研究,黑腹果蝇是一种肢体和体节形态发生均有起源的物种。在果蝇中,来自对前后轴和背腹轴形成重要的基因(包括无翅基因(wg)和锯齿基因(dpp))的位置信息,对于附肢原基的分配和模式形成是必需的。我们利用RNA干扰来表征wg和dpp在赤拟谷盗中的功能,赤拟谷盗保留了更多肢体和体节形态发生的祖先模式。我们还表征了这些胚胎中WG和DPP信号通路潜在靶标的表达。dpp表达下调的赤拟谷盗胚胎在最背侧的体壁存在缺陷,但似乎并未发生整体模式重排,且附肢正常。wg表达下调导致体节边界、颚部和胸部附肢以及侧头叶缺失,并导致dpp、远端缺失基因(Distal-less)和 engrailed基因表达发生变化。wg的功能在胚胎的前后轴和背腹轴上均有所不同。系统发育比较表明,WNT信号在体节边界形成中的作用在进化上由来已久,但其在附肢分配中的作用起源于全变态昆虫的共同祖先。