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Homeobox genes expressed during echinoderm arm regeneration

机译:棘皮动物臂再生过程中表达的同源盒基因

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Regeneration in echinoderms has proved to be more amenable to study in the laboratory than the more classical vertebrate models, since the smaller genome size and the absence of multiple orthologs for different genes in echinoderms simplify the analysis of gene function during regeneration. In order to understand the role of homeobox-containing genes during arm regeneration in echinoderms, we isolated the complement of genes belonging to the Hox class that are expressed during this process in two major echinoderm groups: asteroids (Echinaster sepositus and Asterias rubens) and ophiuroids (Amphiura filiformis), both of which show an extraordinary capacity for regeneration. By exploiting the sequence conservation of the homeobox, putative orthologs of several Hox genes belonging to the anterior, medial, and posterior groups were isolated. We also report the isolation of a few Hox-like genes expressed in the same systems.
机译:与传统的脊椎动物模型相比,棘皮动物的再生已被证明更适合在实验室中进行研究,因为棘皮动物中较小的基因组大小和不同基因的多个直系同源物的存在简化了再生过程中基因功能的分析。为了了解棘皮动物手臂再生过程中含同源异形盒基因的作用,我们分离了在这一过程中在两个主要棘皮动物组中表达的,属于Hox类的基因的互补物:小行星(Echinaster sepositus和Asterias rubens)和蛇形类(Amphiura filiformis),两者均显示出非凡的再生能力。通过利用同源盒的序列保守性,分离了属于前,中和后组的几种Hox基因的假定直向同源物。我们还报告了在相同系统中表达的一些Hox样基因的分离。

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