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首页> 外文期刊>EvoDevo >Molecular characterization and embryonic origin of the eyes in the common house spider Parasteatoda tepidariorum
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Molecular characterization and embryonic origin of the eyes in the common house spider Parasteatoda tepidariorum

机译:普通蜘蛛蜘蛛拟南芥中眼睛的分子表征和胚胎起源

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Background Two visual systems are present in most arthropod groups: median and lateral eyes. Most of our current knowledge about the developmental and molecular mechanisms involved in eye formation in arthropods comes from research in the model system Drosophila melanogaster. Here, a core set of retinal determination genes, namely, sine-oculis (so), eyes absent (eya), dachshund (dac), and the two pax6 orthologues eyeless (ey) and twin of eyeless (toy) govern early retinal development. By contrast, not much is known about the development of the up-to-eight eyes present in spiders. Therefore, we analyzed the embryonic expression of core retinal determination genes in the common house spider Parasteatoda tepidariorum. Results We show that the anlagen of the median and lateral eyes in P. tepidariorum originate from different regions of the non-neurogenic ectoderm in the embryonic head. The median eyes are specified as two individual anlagen in an anterior median position in the developing head and subsequently move to their final position following extensive morphogenetic movements of the non-neurogenic ectoderm. The lateral eyes develop from a more lateral position. Intriguingly, they are specified as a unique field of cells that splits into the three individual lateral eyes during late embryonic development. Using gene expression analyses, we identified a unique combination of determination gene expression in the anlagen of the lateral and median eyes, respectively. Conclusions This study of retinal determination genes in the common house spider P. tepidariorum represents the first comprehensive analysis of the well-known retinal determination genes in arthropods outside insects. The development of the individual lateral eyes via the subdivision of one single eye primordium might be the vestige of a larger composite eye anlage, and thus supports the notion that the composite eye is the plesiomorphic state of the lateral eyes in arthropods. The molecular distinction of the two visual systems is similar to the one described for compound eyes and ocelli in Drosophila, suggesting that a unique core determination network for median and lateral eyes, respectively, might have been in place already in the last common ancestor of spiders and insects.
机译:背景技术大多数节肢动物群中存在两种视觉系统:正中眼和侧眼。我们目前关于节肢动物眼睛形成所涉及的发育和分子机制的大多数知识,来自对果蝇Drosophila melanogaster模型系统的研究。在这里,一组核心的视网膜测定基因,即正弦骨(so),无眼(eya),腊肠(dac)和两个pax6直向同源物,无眼(ey)和双眼(玩具)控制着早期的视网膜发育。 。相比之下,对蜘蛛中最多八只眼睛的发育知之甚少。因此,我们分析了普通蜘蛛蜘蛛拟南芥中视网膜核心测定基因的胚胎表达。结果我们显示,在拟南芥中,正中眼和侧眼的anlagen来源于胚胎头部中非神经外胚层的不同区域。正中眼被指定为两个单独的胶原蛋白,位于发育中头部的前正中位置,随后在非神经外胚层的广泛形态发生运动后移至其最终位置。侧眼从更侧的位置发展。有趣的是,它们被指定为独特的细胞区域,在胚胎后期发育过程中分裂成三个独立的侧眼。使用基因表达分析,我们分别确定了侧眼和正中眼的胶原蛋白中确定基因表达的独特组合。结论这项关于普通蜘蛛蛛的视网膜测定基因的研究是对昆虫外节肢动物中众所周知的视网膜测定基因的首次综合分析。通过单个单眼原基体的细分来发展单个侧眼可能是较大的复合眼损伤的痕迹,因此支持了这种观点,即复合眼是节肢动物中侧眼的准形态。这两种视觉系统的分子区别与果蝇中复眼和卵泡所描述的相似,这表明分别在蜘蛛的最后一个祖先中已经存在一个分别用于正中眼和侧眼的独特的核心测定网络。和昆虫。

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