bioRxiv · 10.1101/029892
Expression of segment polarity genes in brachiopods supports a non-segmental ancestral role of engrailed for bilaterians
Abstract
The diverse and complex developmental mechanisms of segmentation have been more thoroughly studied in arthropods, vertebrates and annelids--distantly related animals considered to be segmented. Far less is known about the role of \"segmentation genes\" in organisms that lack a segmented body. Here we investigate the expression of the arthropod segment polarity genes engrailed, wnt1 and hedgehog in the development of brachiopods--marine invertebrates without a subdivided trunk but closely related to the segmented annelids. We found that a stripe of engrailed expression demarcates the ectodermal boundary that delimits the anterior region of Terebratalia transversa and Novocrania anomala embryos. In T. transversa, this engrailed domain is abutted by a stripe of wnt1 expression in a pattern similar to the parasegment boundaries of insects--except for the expression of hedgehog, which is restricted to endodermal tissues of the brachiopod embryos. We found that pax6 and pax2/5/8, putative regulators of engrailed, also demarcate the anterior boundary in the two species, indicating these genes might be involved in the anterior patterning of brachiopod larvae. In a comparative phylogenetic context, these findings suggest that bilaterians might share an ancestral, non-segmental domain of engrailed expression during early embryogenesis.
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Bruno Cossermelli Vellutini, Andreas Hejnol. 2016-01-25. Expression of segment polarity genes in brachiopods supports a non-segmental ancestral role of engrailed for bilaterians. https://doi.org/10.1101/029892
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