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Development of an embryonic skeletogenic mesenchyme lineage in a sea cucumber reveals the trajectory of change for the evolution of novel structures in echinoderms

机译:海参中胚胎促骨骼间充质谱系的发展揭示了棘皮动物新结构进化的变化轨迹

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摘要

BackgroundThe mechanisms by which the conserved genetic “toolkit” for development generates phenotypic disparity across metazoans is poorly understood. Echinoderm larvae provide a great resource for understanding how developmental novelty arises. The sea urchin pluteus larva is dramatically different from basal echinoderm larval types, which include the auricularia-type larva of its sister taxon, the sea cucumbers, and the sea star bipinnaria larva. In particular, the pluteus has a mesodermally-derived larval skeleton that is not present in sea star larvae or any outgroup taxa. To understand the evolutionary origin of this structure, we examined the molecular development of mesoderm in the sea cucumber, Parastichopus parvimensis.
机译:背景保守的遗传“工具包”用于发展而在后生动物之间产生表型差异的机制了解甚少。棘皮动物的幼虫为理解发育新奇如何产生提供了巨大的资源。海胆直立幼虫与基底棘皮动物的幼虫有很大的不同,其中包括其姊妹类的耳状幼虫,海参和海星双子叶幼虫。尤其是,排骨具有中胚层衍生的幼虫骨架,在海星幼虫或任何外群类群中不存在。为了了解这种结构的进化起源,我们研究了海参中成虫Parparastichopus parvimensis的中胚层分子发育。

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