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Dynamic BMP signaling polarized by Toll patterns the dorsoventral axis in a hemimetabolous insect

机译:由Toll极化的动态BMP信号转导在半代谢昆虫中的腹背轴

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摘要

Toll-dependent patterning of the dorsoventral axis in Drosophila represents one of the best understood gene regulatory networks. However, its evolutionary origin has remained elusive. Outside the insects Toll is not known for a patterning function, but rather for a role in pathogen defense. Here, we show that in the milkweed bug Oncopeltus fasciatus, whose lineage split from Drosophila's more than 350 million years ago, Toll is only required to polarize a dynamic BMP signaling network. A theoretical model reveals that this network has self-regulatory properties and that shallow Toll signaling gradients are sufficient to initiate axis formation. Such gradients can account for the experimentally observed twinning of insect embryos upon egg fragmentation and might have evolved from a state of uniform Toll activity associated with protecting insect eggs against pathogens.>DOI:
机译:果蝇背腹轴的收费依赖模式代表了最了解的基因调控网络之一。但是,其进化起源仍然难以捉摸。在昆虫外,Toll的图案功能不为人所知,但在病原体防御中却发挥着重要作用。在这里,我们表明,在乳草臭虫Oncopeltus fasciatus(其果蝇从3.5亿年前的果蝇分裂而来)中,仅要求Toll极化动态BMP信号网络。理论模型表明,该网络具有自我调节性能,浅的Toll信号梯度足以启动轴的形成。这样的梯度可以解释实验观察到的卵分裂后昆虫胚胎的孪生现象,并且可能是从与保护昆虫卵免受病原体相关的均匀Toll活性状态演变而来的。> DOI:

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