Laboratory for Evolutionary Morphology, RIKEN Center for Developmental Biology (CDB), 2-2-3 Minatojima-minami, Kobe 650-0047, Japan.
Evol Dev. 2011 May-Jun;13(3):260-8. doi: 10.1111/j.1525-142X.2011.00474.x.
Turtles are characterized by their shell, composed of a dorsal carapace and a ventral plastron. The carapace first appears as the turtle-specific carapacial ridge (CR) on the lateral aspect of the embryonic flank. Accompanying the acquisition of the shell, unlike in other amniotes, hypaxial muscles in turtle embryos appear as thin threads of fibrous tissue. To understand carapacial evolution from the perspective of muscle development, we compared the development of the muscle plate, the anlage of hypaxial muscles, between the Chinese soft-shelled turtle, Pelodiscus sinensis, and chicken embryos. We found that the ventrolateral lip (VLL) of the thoracic dermomyotome of P. sinensis delaminates early and produces sparse muscle plate in the lateral body wall. Expression patterns of the regulatory genes for myotome differentiation, such as Myf5, myogenin, Pax3, and Pax7 have been conserved among amniotes, including turtles. However, in P. sinensis embryos, the gene hepatocyte growth factor (HGF), encoding a regulatory factor for delamination of the dermomyotomal VLL, was uniquely expressed in sclerotome and the lateral body wall at the interlimb level. Implantation of COS-7 cells expressing a HGF antagonist into the turtle embryo inhibited CR formation. We conclude that the de novo expression of HGF in the turtle mesoderm would have played an innovative role resulting in the acquisition of the turtle-specific body plan.
龟鳖类的特征是其具有由背甲(由背侧的甲板和腹侧的胸盾组成)和腹甲构成的外壳。背甲最初作为龟鳖类特有的甲板嵴(CR)出现在胚胎侧翼的侧面。与其他羊膜动物不同,伴随外壳的获得,龟鳖类胚胎中的轴下肌表现为纤维组织的细薄束。为了从肌肉发育的角度理解壳的进化,我们比较了中国鳖(Pelodiscus sinensis)和鸡胚胎的肌肉板(轴下肌的原基)的发育。我们发现,中国鳖的胸皮肌节的腹外侧缘(VLL)早期离层,并在侧体壁产生稀疏的肌肉板。包括龟鳖类在内的羊膜动物的肌节分化调节基因,如 Myf5、myogenin、Pax3 和 Pax7 的表达模式是保守的。然而,在中国鳖胚胎中,编码 VLL 表皮肌节离层的调节因子肝细胞生长因子(HGF)的基因仅在体节和肢间水平的侧体壁中表达。将表达 HGF 拮抗剂的 COS-7 细胞植入龟胚胎中会抑制 CR 的形成。我们得出结论,HGF 在龟中中胚层的新表达可能发挥了创新作用,导致了龟类特有的体轴形成。