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Developmental role of dpp in the gastropod shell plate and co-option of the dpp signaling pathway in the evolution of the operculum

机译:dpp在腹足动物壳板中的发育作用和dpp信号通路在the膜进化中的共选择

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摘要

The operculum is a novel structure in gastropod molluscs. Because the operculum shows notable similarities to the shell plate, we asked whether there were an evolutionary link between these two secretory organs. We found that some of the genes involved in shell-field development are expressed in the operculum, such as dpp and grainyhead, whereas engrailed and Hox1 are not. Specific knockdown of dpp by injection of double-stranded RNA (dsRNA) resulted in malformation of the shell plate. The shell plate was smaller due to failure of activation of cell proliferation in the shell-field margin. The expressions of grainyhead and chitin synthase 1 in the shell field margin were suppressed by dpp-dsRNA. However, matrix secretion was not completely abolished, and the expressions of ferritin, engrailed or Hox1 were not affected by dpp-dsRNA, indicating that dpp is partly involved in the developmental pathway for shell matrix secretion. We also present evidence that dpp performs a key role in operculum development. Indeed, dpp-dsRNA impaired matrix secretion in the operculum as well as expression of grainyhead. Based on these observations that dpp is important for development of both the shell plate and operculum, we conclude that co-option of dpp to the posterior part of the foot contributed to the innovation of the operculum in gastropods.
机译:腹盖是腹足纲软体动物中的新型结构。因为孔盖与壳板有明显的相似性,所以我们问这两个分泌器官之间是否存在进化联系。我们发现一些参与壳场发育的基因在the盖中表达,例如dpp和粒头,而eng的和Hox1则不。通过注射双链RNA(dsRNA)特异性敲除dpp导致壳板畸形。由于壳场边缘中细胞增殖的激活失败,壳板较小。 dpp-dsRNA抑制了壳field边缘粒头和几丁质合酶1的表达。然而,基质的分泌并没有完全消除,铁蛋白,突触的或Hox1的表达不受dpp-dsRNA的影响,表明dpp部分参与了壳基质分泌的发育途径。我们还提供了证据,表明dpp在膜发育中起着关键作用。确实,dpp-dsRNA会损害the盖中的基质分泌以及粒头的表达。基于这些观察,dpp对壳板和骨的发育均很重要,我们得出结论,dpp在脚后部的共同选择有助于腹足动物的骨创新。

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