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Asymmetric expression of the BMP antagonists chordin and gremlin in the sea anemone Nematostella vectensis: Implications for the evolution of axial patterning

机译:BMP拮抗剂chordin和gremlin在海葵线虫Nematostella vectensis中的不对称表达:轴向模式演变的意义。

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摘要

The evolutionary origin of the anterior-posterior and the dorsoventral body axes of Bilateria is a long-standing question. It is unclear how the main body axis of Cnidaria, the sister group to the Bilateria, is related to the two body axes of Bilateria. The conserved antagonism between two secreted factors, BMP2/4 (Dpp in Drosophila) and its antagonist Chordin (Short gastrulation in Drosophila) is a crucial component in the establishment of the dorsoventral body axis of Bilateria and could therefore provide important insight into the evolutionary origin of bilaterian axes. Here, we cloned and characterized two BMP ligands, dpp and GDF5-like as well as two secreted antagonists, chordin and gremlin, from the basal cnidarian Nematostella vectensis. Injection experiments in zebrafish show that the ventralizing activity of NvDpp mRNA is counteracted by NvGremlin and NvChordin, suggesting that Gremlin and Chordin proteins can function as endogenous antagonists of NvDpp. Expression analysis during embryonic and larval development of Nematostella reveals asymmetric expression of all four genes along both the oral-aboral body axis and along an axis perpendicular to this one, the directive axis. Unexpectedly, NvDpp and NvChordin show complex and overlapping expression on the same side of the embryo, whereas NvGDF5-like and NvGremlin are both expressed on the opposite side. Yet, the two pairs of ligands and antagonists only partially overlap, suggesting complex gradients of BMP activity along the directive axis but also along the oral-aboral axis. We conclude that a molecular interaction between BMP-like molecules and their secreted antagonists was already employed in the common ancestor of Cnidaria and Bilateria to create axial asymmetries, but that there is no simple relationship between the oral-aboral body axis of Nematostella and one particular body axis of Bilateria.
机译:Bilateria前后轴和背腹体轴的进化起源是一个长期存在的问题。尚不清楚Bilateria的姐妹群Cnidaria的主体轴与Bilateria的两个身体轴之间的关系。 BMP2 / 4(果蝇中的Dpp)及其拮抗剂Chordin(果蝇中的短促胃泌素)这两个分泌因子之间的保守拮抗作用是建立Bilateria背腹体轴的关键组成部分,因此可以为进化起源提供重要见解轴。在这里,我们从基底刺肠线虫Nematostella vectensis克隆并表征了两个BMP配体dpp和GDF5样,以及两个分泌的拮抗剂chordin和gremlin。斑马鱼的注射实验表明NvDpp mRNA的腹透活性被NvGremlin和NvChordin抵消,表明Gremlin和Chordin蛋白可以作为NvDpp的内源性拮抗剂。 Nematostella的胚胎和幼虫发育过程中的表达分析显示,这四个基因在口腔-体轴和垂直于该轴的两个方向(定向轴)上均不对称表达。出乎意料的是,NvDpp和NvChordin在胚胎的同一侧显示复杂且重叠的表达,而NvGDF5样和NvGremlin都在相反侧表达。但是,这两对配体和拮抗剂仅部分重叠,表明BMP活性不仅沿指导轴而且沿口腔-胸腺轴呈复杂梯度。我们得出的结论是,BMP样分子与其分泌的拮抗剂之间的分子相互作用已在Cnidaria和Bilateria的共同祖先中使用,以产生轴向不对称性,但是线虫的线虫体与特定动物之间并没有简单的关系。 Bilateria的身体轴。

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