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三种同源盒基因在日本扇腕海星早期和晚期发育过程中的基因表达分析。

Gene expression analysis of three homeobox genes throughout early and late development of a feather star Anneissia japonica.

机构信息

Marine Biological Station, Sado Island Center for Ecological Sustainability, Niigata University, 87 Tassha, Sado, Niigata, 952-2135, Japan.

Misaki Marine Biological Station, School of Science, The University of Tokyo, 1024 Koajiro, Misaki, Miura, Kanagawa, 238-0225, Japan.

出版信息

Dev Genes Evol. 2020 Jul;230(4):305-314. doi: 10.1007/s00427-020-00665-6. Epub 2020 Jul 15.

Abstract

Crinoids are considered as the most basal extant echinoderms. They retain aboral nervous system with a nerve center, which has been degraded in the eleutherozoan echinoderms. To investigate the evolution of patterning of the nervous systems in crinoids, we examined temporal and spatial expression patterns of three neural patterning-related homeobox genes, six3, pax6, and otx, throughout the development of a feather star Anneissia japonica. These genes were involved in the patterning of endomesodermal tissues instead of the ectodermal neural tissues in the early planktonic stages. In the stages after larval attachment, the expression of these genes was mainly observed in the podia and the oral nervous systems instead of the aboral nerve center. Our results indicate the involvement of these three genes in the formation of oral nervous system in the common ancestor of the echinoderms and suggest that the aboral nerve center is not evolutionally related to the brain of other bilaterians.

摘要

海百合纲被认为是现存最原始的棘皮动物。它们保留了有神经中枢的口面神经系统,而这种神经中枢在真后生动物棘皮动物中已经退化。为了研究棘皮动物神经系统模式形成的进化,我们检测了三种神经模式形成相关同源盒基因(six3、pax6 和 otx)在日本羽星 Anneissia 发育过程中的时空表达模式。这些基因参与内胚层和中胚层组织的模式形成,而不是浮游幼虫早期阶段的外胚层神经组织。在幼虫附着后的阶段,这些基因的表达主要观察到在腕足和口面神经系统,而不是口面神经中枢。我们的结果表明,这三个基因参与了棘皮动物共同祖先的口面神经系统的形成,并表明口面神经中枢与其他两侧对称动物的脑在进化上没有关系。

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