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首页> 外文期刊>Development Genes and Evolution >Morphological and molecular development of the eyes during embryogenesis of the freshwater planarian Schmidtea polychroa.
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Morphological and molecular development of the eyes during embryogenesis of the freshwater planarian Schmidtea polychroa.

机译:淡水涡虫Schmidtea polychroa胚胎发生过程中眼睛的形态和分子发育。

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摘要

Photoreception is one of the most primitive sensory functions in metazoans. Despite the diversity of forms and components of metazoan eyes, many studies have demonstrated the existence of a common cellular and molecular basis for their development. Genes like pax6, sine oculis, eyes absent, dachshund, otx, Rx and atonal are known to be associated with the specification and development of the eyes. In planarians, sine oculis, eyes absent and otxA play an essential role during the formation of the eye after decapitation, whereas pax6, considered by many authors as a master control gene for eye formation, does not seem to be involved in adult eye regeneration. Whether this is a peculiarity of adult planarians or, on the contrary, is also found in embryogenesis remains unknown. Herein, we characterize embryonic eye development in the planarian species Schmidtea polychroa using histological sections and molecular markers. Additionally, we analyse the expression pattern of the pax6-sine oculis-eyes absent-dachshund network, and the genes Rx, otxA, otxB and atonal. We demonstrate that eye formation in planarian embryos shows great similarities to adult eye regeneration, both at the cellular and molecular level. We thus conclude that planarian eyes exhibit divergent molecular patterning mechanisms compared to the prototypic ancestral metazoan eye.
机译:光接收是后生动物最原始的感觉功能之一。尽管后生动物眼睛的形式和组成成分各不相同,但许多研究表明它们的发育具有共同的细胞和分子基础。已知pax6,正弦眼,无眼,腊肠,otx,Rx和无齿等基因与眼睛的形态和发育有关。在涡虫中,正弦耳,缺眼和otxA在断头后的眼睛形成过程中起着至关重要的作用,而被许多作者认为是眼睛形成的主要控制基因的pax6似乎并不参与成人眼睛的再生。这是否是成年涡虫的特殊性,或者相反,还发现它在胚胎发生中仍然未知。在本文中,我们使用组织学切片和分子标记表征了涡虫物种Schmidtea polychroa中胚胎眼的发育。另外,我们分析了不存在腊肠网络的pax6-正弦眼-眼的表达模式,以及基因Rx,otxA,otxB和无性。我们证明,在涡虫胚胎中的眼睛形成在细胞和分子水平上都显示出与成年眼睛再生的巨大相似性。因此,我们得出的结论是,与原型祖先后生动物眼相比,涡虫眼具有不同的分子构图机制。

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