Department of Anatomy, University of Fukui, School of Medical Sciences, Fukui, Japan.
Life Science Innovation Center, University of Fukui, Fukui, Japan.
Evol Dev. 2019 Jan;21(1):31-43. doi: 10.1111/ede.12273. Epub 2018 Oct 4.
In bilaterians, animal/vegetal axial (A/V) patterning is a fundamental early developmental event for establishment of animal/vegetal polarity and following specification of the germ layers (ectoderm, mesoderm, endoderm), of which the evolutionary origin is enigmatic. Understanding A/V axial patterning in a basal animal from each phylum would help to reconstruct the ancestral state of germ layer specification in bilaterians and thus, the evolution of mesoderm, the third intermediate cell layer. Herein, data show that the canonical Wnt/β-catenin (cWnt) and Notch signaling pathways control mesoderm specification from the early endomesoderm in the basal chordate amphioxus. Amphioxus belongs to the deuterostome, one of the main superphyla in Bilateria. In the present study, genes (tcf, dsh, axin, gsk3β) encoding cWnt components were expressed in the endomesoderm during the gastrula stages. Excess cWnt signaling by BIO, a GSK3 inhibitor, expanded the expression domains of outer endomesodermal genes that include future mesodermal ones and suppressed inner endomesodermal and ectodermal genes. Interfering Notch signaling by DAPT, a γ-secretase inhibitor, resulted in decreased expression of ectodermal and endomesodermal markers. These results suggest that cWnt and Notch have important roles in mesoderm specification in amphioxus embryos. The evolution of the mesoderm is also discussed.
在两侧对称动物中,动物/植物轴向(A/V)模式是建立动物/植物极性和随后的胚层(外胚层、中胚层、内胚层)特化的基本早期发育事件,其进化起源是神秘的。了解每个门的基础动物中的 A/V 轴向模式将有助于重建两侧对称动物中胚层特化的祖先进化状态,从而有助于进化出中胚层,这是第三个中间细胞层。本文数据表明,经典 Wnt/β-catenin(cWnt)和 Notch 信号通路控制着基干脊索动物文昌鱼早期内中胚层的中胚层特化。文昌鱼属于后口动物,是两侧对称动物的主要超门之一。在本研究中,编码 cWnt 成分的基因(tcf、dsh、axin、gs k3β)在原肠胚期表达在内中胚层中。GSK3 抑制剂 BIO 过度的 cWnt 信号作用扩展了包括未来中胚层基因在内的外中胚层基因的表达域,并抑制了内中胚层和外胚层基因的表达。γ-分泌酶抑制剂 DAPT 干扰 Notch 信号,导致外胚层和内中胚层标记物的表达减少。这些结果表明,cWnt 和 Notch 在文昌鱼胚胎中中胚层特化中具有重要作用。还讨论了中胚层的进化。