Vetrova Alexandra A, Lebedeva Tatiana S, Saidova Aleena A, Kupaeva Daria M, Kraus Yulia A, Kremnyov Stanislav V
Laboratory of Morphogenesis Evolution, Koltzov Institute of Developmental Biology RAS, Moscow, Russia.
Department of Neurosciences and Developmental Biology, Faculty of Life Sciences, University of Vienna, Vienna, Austria.
Dev Dyn. 2022 May;251(5):795-825. doi: 10.1002/dvdy.439. Epub 2021 Dec 1.
In almost all metazoans examined to this respect, the axial patterning system based on canonical Wnt (cWnt) signaling operates throughout the course of development. In most metazoans, gastrulation is polar, and embryos develop morphological landmarks of axial polarity, such as blastopore under control/regulation from cWnt signaling. However, in many cnidarian species, gastrulation is morphologically apolar. The question remains whether сWnt signaling providing the establishment of a body axis controls morphogenetic processes involved in apolar gastrulation.
In this study, we focused on the embryonic development of Dynamena pumila, a cnidarian species with apolar gastrulation. We thoroughly described cell behavior, proliferation, and ultrastructure and examined axial patterning in the embryos of this species. We revealed that the first signs of morphological polarity appear only after the end of gastrulation, while molecular prepatterning of the embryo does exist during gastrulation. We have shown experimentally that in D. pumila, the direction of the oral-aboral axis is highly robust against perturbations in cWnt activity.
Our results suggest that morphogenetic processes are uncoupled from molecular axial patterning during gastrulation in D. pumila. Investigation of D. pumila might significantly expand our understanding of the ways in which morphological polarization and axial molecular patterning are linked in Metazoa.
在几乎所有就此方面进行过研究的后生动物中,基于典型Wnt(cWnt)信号传导的轴向模式系统在整个发育过程中发挥作用。在大多数后生动物中,原肠胚形成是极性的,胚胎在cWnt信号传导的控制/调节下发育出轴向极性的形态学标志,如胚孔。然而,在许多刺胞动物物种中,原肠胚形成在形态上是非极性的。cWnt信号传导在建立体轴的同时是否控制了参与非极性原肠胚形成的形态发生过程,这一问题仍然存在。
在本研究中,我们聚焦于具有非极性原肠胚形成的刺胞动物物种——扁平动海葵的胚胎发育。我们详尽描述了细胞行为、增殖和超微结构,并研究了该物种胚胎中的轴向模式。我们发现形态极性的最初迹象仅在原肠胚形成结束后才出现,而在原肠胚形成期间胚胎确实存在分子预模式。我们通过实验表明,在扁平动海葵中,口-反口轴的方向对cWnt活性的扰动具有高度抗性。
我们的结果表明,在扁平动海葵的原肠胚形成过程中,形态发生过程与分子轴向模式是解耦的。对扁平动海葵的研究可能会显著扩展我们对后生动物中形态极化与轴向分子模式之间联系方式的理解。