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性别的决定性途径的保守分支的证据:家蝇求偶行为的遗传控制。

Genetic control of courtship behavior in the housefly: evidence for a conserved bifurcation of the sex-determining pathway.

机构信息

Institute of Molecular Life Sciences, University of Zürich, Zürich, Switzerland.

出版信息

PLoS One. 2013 Apr 22;8(4):e62476. doi: 10.1371/journal.pone.0062476. Print 2013.

Abstract

In Drosophila melanogaster, genes of the sex-determination hierarchy orchestrate the development and differentiation of sex-specific tissues, establishing sex-specific physiology and neural circuitry. One of these sex-determination genes, fruitless (fru), plays a key role in the formation of neural circuits underlying Drosophila male courtship behavior. Conservation of fru gene structure and sex-specific expression has been found in several insect orders, though it is still to be determined whether a male courtship role for the gene is employed in these species due to the lack of mutants and homologous experimental evidence. We have isolated the fru ortholog (Md-fru) from the common housefly, Musca domestica, and show the gene's conserved genomic structure. We demonstrate that male-specific Md-fru transcripts arise by conserved mechanisms of sex-specific splicing. Here we show that Md-fru, is similarly involved in controlling male courtship behavior. A male courtship behavioral function for Md-fru was revealed by the behavioral and neuroanatomical analyses of a hypomorphic allele, Md-tra(man) , which specifically disrupted the expression of Md-fru in males, leading to severely impaired male courtship behavior. In line with a role in nervous system development, we found that expression of Md-fru was confined to neural tissues in the brain, most prominently in optic neuropil and in peripheral sensory organs. We propose that, like in Drosophila, overt sexual differentiation of the housefly depends on a sex-determining pathway that bifurcates downstream of the Md-tra gene to coordinate dimorphic development of non-neuronal tissues mediated by Md-dsx with that of neuronal tissues largely mediated by Md-fru.

摘要

在黑腹果蝇中,性别决定层次结构的基因协调性别特异性组织的发育和分化,建立性别特异性的生理和神经回路。这些性别决定基因之一,fru 基因,在果蝇雄性求偶行为的神经回路形成中起着关键作用。fru 基因结构和性别特异性表达的保守性已在几个昆虫目中发现,尽管由于缺乏突变体和同源实验证据,尚不确定该基因在这些物种中是否具有雄性求偶作用。我们从普通家蝇中分离出了 fru 的同源基因(Md-fru),并展示了该基因的保守基因组结构。我们证明,雄性特异性的 Md-fru 转录本是通过保守的性别特异性剪接机制产生的。在这里,我们证明了 Md-fru 同样参与控制雄性求偶行为。Md-tra(man) 等位基因的行为和神经解剖学分析揭示了 Md-fru 的雄性求偶行为功能,该等位基因特异性地破坏了雄性中 Md-fru 的表达,导致雄性求偶行为严重受损。与神经系统发育的作用一致,我们发现 Md-fru 的表达局限于大脑中的神经组织,特别是在光神经丛和外围感觉器官中。我们提出,与果蝇一样,家蝇的明显性分化依赖于性别决定途径,该途径在 Md-tra 基因下游分叉,以协调由 Md-dsx 介导的非神经元组织的二态性发育,以及由 Md-fru 介导的神经元组织的发育。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d47/3632534/74550832ad11/pone.0062476.g001.jpg

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