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连续性与分裂和重组:探索昆虫眼原基进化的分子发育推论

Continuity versus split and reconstitution: exploring the molecular developmental corollaries of insect eye primordium evolution.

作者信息

Friedrich Markus

机构信息

Department of Biological Sciences, Wayne State University, 5047 Gullen Mall, Detroit, MI 48202, USA.

出版信息

Dev Biol. 2006 Nov 15;299(2):310-29. doi: 10.1016/j.ydbio.2006.08.027. Epub 2006 Aug 16.

Abstract

Holometabolous insects like Drosophila proceed through two phases of visual system development. The embryonic phase generates simple eyes of the larva. The postembryonic phase produces the adult specific compound eyes during late larval development and pupation. In primitive insects, by contrast, eye development persists seemingly continuously from embryogenesis through the end of postembryogenesis. Comparative literature suggests that the evolutionary transition from continuous to biphasic eye development occurred via transient developmental arrest. This review investigates how the developmental arrest model relates to the gene networks regulating larval and adult eye development in Drosophila, and embryonic compound eye development in primitive insects. Consistent with the developmental arrest model, the available data suggest that the determination of the anlage of the rudimentary Drosophila larval eye is homologous to the embryonic specification of the juvenile compound eye in directly developing insects while the Drosophila compound eye primordium is evolutionarily related to the yet little studied stem cell based postembryonic eye primordium of primitive insects.

摘要

像果蝇这样的全变态昆虫经历视觉系统发育的两个阶段。胚胎期产生幼虫的单眼。胚后期在幼虫发育后期和化蛹期间产生成虫特有的复眼。相比之下,在原始昆虫中,眼睛发育从胚胎发生到胚后发育结束似乎持续进行。比较文献表明,从连续到双相眼睛发育的进化转变是通过短暂的发育停滞发生的。本综述研究了发育停滞模型与调节果蝇幼虫和成虫眼睛发育以及原始昆虫胚胎复眼发育的基因网络之间的关系。与发育停滞模型一致,现有数据表明,果蝇幼虫雏形眼原基的确定与直接发育昆虫中幼体复眼的胚胎特化同源,而果蝇复眼原基在进化上与原始昆虫中研究较少的基于干细胞的胚后眼原基相关。

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