首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Expression of genes and proteins of the pax‐six‐eya‐dach network in the metamorphic sea urchin: Insights into development of the enigmatic echinoderm body plan and sensory structures
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Expression of genes and proteins of the pax‐six‐eya‐dach network in the metamorphic sea urchin: Insights into development of the enigmatic echinoderm body plan and sensory structures

机译:帕克斯六眼达氏网络中的基因和蛋白质在变质海胆中的表达:洞察神秘的棘皮胚层体系和感官结构的开展

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Background: Photoreception‐associated genes of the Pax‐Six‐Eya‐Dach network (PSEDN) are deployed for many roles in addition to photoreception development. In this first study of PSEDN genes during development of the pentameral body in sea urchins, we investigated their spatial expression in Heliocidaris erythrogramma . Results: Expression of PSEDN genes in the hydrocoele of early ( Dach , Eya , Six1/2 ) and/or late ( Pax6 , Six3/6 ) larvae, and the five hydrocoele lobes, the first morphological expression of pentamery, supports a role in body plan development. Pax6 , Six1/2 , and Six3/6 were localized to the primary and/or secondary podia and putative sensory/neuronal cells. Six1/2 and Six3/6 were expressed in the neuropil region in the terminal disc of the podia. Dach was localized to spines. Sequential up‐regulation of gene expression as new podia and spines formed was evident. Rhabdomeric opsin and pax6 protein were localized to cells in the primary podia and spines. Conclusions: Our results support roles for PSEDN genes in development of the pentameral body plan, contributing to our understanding of how the most unusual body plan in the Bilateria may have evolved. Development of sensory cells within the Pax‐Six expression field is consistent with the role of these genes in sensory cell development in diverse species. Developmental Dynamics 247:239–249, 2018 . ? 2017 Wiley Periodicals, Inc.
机译:背景:除了光接收开发之外,PAX-SIX-DEA-DACH网络(PSEDN)的感染相关基因部署了许多角色。在这次对海胆发生偏见的戊醛的PSEDN基因的首次研究中,我们研究了Heliocidaris红斑曲线图中的空间表达。结果:在早期的水电中的PSEDN基因的表达(达累,眼镜,611/2)和/或晚期(PAX6,63 / 6)幼虫和五个水电裂片,第一个五苯胺的形态表达,支持了作用身体计划发展。 PAX6,S161 / 2和SIMP3 / 6定位于初级和/或次要普罗洲和推定的感觉/神经元细胞。六十六个和63/6在普及亚末端圆盘的神经孔区域中表达。达克派本地化为刺。序列上调基因表达作为形成的新孔隙和形成的刺。显而易见。 rhabdom opsin和pax6蛋白质局部化为原发性概念和刺的细胞。结论:我们的结果支持PSEDN基因在开发五珐的机构计划中的作用,促进了我们对二国内最不寻常的机构计划的理解可能已经发展起来。 PAX-SIX表达场中的感觉细胞的研制与这些基因在不同种类中的感觉细胞发育中的作用一致。发展动力学247:239-249,2018。还2017年Wiley期刊,Inc。

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