首页> 外文期刊>Journal of experimental zoology, Part B. Molecular and developmental evolution >Developmental Evolution of the Insect Retina: Insights From Standardized Numbering of Homologous Photoreceptors
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Developmental Evolution of the Insect Retina: Insights From Standardized Numbering of Homologous Photoreceptors

机译:昆虫视网膜的发育演变:同源感光细胞标准化编号的见解

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摘要

The canonical number of eight photoreceptors and their arrangement in the ommatidia of insect compound eyes is very conserved. However significant variations exist in selective groups, such as the Lepidoptera and Hymenoptera, which independently evolved additional photoreceptors. For this and historical reasons, heterogeneous labeling conventions have been in use for photoreceptor subtypes, despite developmentally and structurally well-defined homologies. Extending earlier efforts, we introduce a universal photoreceptor subtype classification key that relates to the Drosophila numbering system. Its application is demonstrated in major insect orders, with detailed information on the relationship to previous conventions. We then discuss new insights that result from the improved understanding of photoreceptor subtype homologies. This includes evidence of functionally imposed ground rules of differential opsin expression, the underappreciated role of R8 as ancestral color receptor, the causes and consequences of parallel R7 photoreceptor addition in Hymenoptera and Lepidoptera, and the ancestral subfunctionalization of outer photoreceptors cells, which may be only developmentally recapitulated in Drosophila. We conclude with pointing out the need for opsin expression data from a wider range of insect orders. J. Exp. Zool. (Mol. Dev. Evol.) 316:484-499, 2011
机译:昆虫复眼的眼孔中八个光感受器的规范数目及其排列非常保守。然而,在选择性组中存在显着变化,例如鳞翅目和膜翅目,它们独立地进化出另外的感光体。由于这个原因和历史原因,尽管在发展上和结构上均定义了同源性,但异质标记惯例已用于感光体亚型。在扩展早期工作的基础上,我们介绍了一种与果蝇编号系统有关的通用感光亚型分类关键字。它的应用已在主要昆虫订单中得到了证明,并详细说明了与先前公约的关系。然后,我们讨论了由于对感光体亚型同源性的更好理解而产生的新见解。这包括差异视蛋白表达功能强加的基本规则的证据,R8作为祖先颜色受体的作用未被充分认识,膜翅目和鳞翅目中平行添加R7光感受器的原因和后果以及外部光感受器细胞的祖先亚功能化在果蝇中发育概括。我们以指出来自更广泛的昆虫有序的视蛋白表达数据为必要。 J. Exp。 Zool。 (分子开发演化)316:484-499,2011

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