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Nodal信号通路的进化、分歧与丧失:新数据及两侧对称动物的综合研究

Evolution, divergence and loss of the Nodal signalling pathway: new data and a synthesis across the Bilateria.

作者信息

Grande Cristina, Martín-Durán José María, Kenny Nathan J, Truchado-García Marta, Hejnol Andreas

机构信息

Laboratorio 421, Centro de Biología Molecular Severo Ochoa, C/ Nicolás Cabrera, 1, Universidad Autónoma de Madrid, E-28049 - Madrid, Spain.

出版信息

Int J Dev Biol. 2014;58(6-8):521-32. doi: 10.1387/ijdb.140133cg.

DOI:10.1387/ijdb.140133cg
PMID:25690967
Abstract

Since the discovery that the TGF-β signalling molecule Nodal and its downstream effector Pitx have a parallel role in establishing asymmetry between molluscs and deuterostomes the debate over the degree to which this signalling pathway is conserved across the Bilateria as a whole has been ongoing. Further taxon sampling is critical to understand the evolution and divergence of this signalling pathway in animals. Using genome and transcriptome mining we confirmed the presence of nodal and Pitx in a range of additional animal taxa for which their presence has not yet been described. In situ hybridization was used to show the embryonic expression of these genes in brachiopods and planarians. We show that both nodal and Pitx genes are broadly conserved across the Spiralia, and nodal likely appeared in the Bilaterian stem lineage after the divergence of the Acoelomorpha. Furthermore, both nodal and Pitx mRNA appears to be expressed in an asymmetric fashion in the brachiopod Terebratalia transversa. No evidence for the presence of a Lefty ortholog could be found in the non-deuterostome genomic resources examined. Nodal expression is asymmetric in a number of spiralian lineages, indicating a possible ancestral role of the Nodal/Pitx cascade in the establishment of asymmetries across the Bilateria.

摘要

自从发现转化生长因子-β信号分子Nodal及其下游效应因子Pitx在软体动物和后口动物之间建立不对称性方面具有平行作用以来,关于该信号通路在整个两侧对称动物中保守程度的争论一直在进行。进一步的分类群采样对于理解动物中该信号通路的进化和分歧至关重要。通过基因组和转录组挖掘,我们证实了在一系列尚未描述其存在的其他动物分类群中存在Nodal和Pitx。原位杂交用于显示这些基因在腕足动物和涡虫中的胚胎表达。我们表明,Nodal和Pitx基因在螺旋动物中广泛保守,并且Nodal可能在无腔动物分化后的两侧对称动物干群中出现。此外,在横向腕足动物Terebratalia中,Nodal和Pitx mRNA似乎以不对称方式表达。在所研究的非后口动物基因组资源中未发现Lefty直系同源物存在的证据。Nodal在许多螺旋动物谱系中表达不对称,表明Nodal/Pitx级联在整个两侧对称动物中建立不对称性方面可能具有祖先作用。

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Evolution, divergence and loss of the Nodal signalling pathway: new data and a synthesis across the Bilateria.Nodal信号通路的进化、分歧与丧失:新数据及两侧对称动物的综合研究
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