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无后效雄性性别决定基因在2.5亿年昆虫进化过程中的功能保守性。

Functional conservation of the fruitless male sex-determination gene across 250 Myr of insect evolution.

作者信息

Gailey Donald A, Billeter Jean-Christophe, Liu Jim H, Bauzon Frederick, Allendorfer Jane B, Goodwin Stephen F

机构信息

Department of Biological Sciences, California State University East Bay, Hayward, USA.

出版信息

Mol Biol Evol. 2006 Mar;23(3):633-43. doi: 10.1093/molbev/msj070. Epub 2005 Nov 30.

Abstract

Male sexual behavior in the fruit fly Drosophila melanogaster is regulated by fruitless (fru), a sex-determination gene specifying the synthesis of BTB-Zn finger proteins that likely function as male-specific transcriptional regulators. Expression of fru in the nervous system specifies male sexual behavior and the muscle of Lawrence (MOL), an abdominal muscle that develops in males but not in females. We have isolated the fru ortholog from the malaria mosquito Anopheles gambiae and show the gene's conserved genomic structure. We demonstrate that male-specific mosquito fru protein isoforms arise by conserved mechanisms of sex-specifically activated and alternative exon splicing. A male-determining function of mosquito fru is revealed by ectopic expression of the male mosquito isoform FRUMC in fruit flies; this results in MOL development in both fru-mutant males and fru+ females who otherwise develop no MOL. In parallel, we provide evidence of a unique feature of muscle differentiation within the fifth abdominal segment of male mosquitoes that strongly resembles the fruit fly MOL. Given these conserved features within the context of 250 Myr of evolutionary divergence between Drosophila and Anopheles, we hypothesize that fru is the prototypic gene of male sexual behavior among dipteran insects.

摘要

果蝇黑腹果蝇的雄性性行为受无果(fru)基因调控,fru是一种性别决定基因,它决定了BTB-Zn指蛋白的合成,这些蛋白可能作为雄性特异性转录调节因子发挥作用。fru在神经系统中的表达决定了雄性性行为以及劳伦斯肌(MOL),这是一种仅在雄性而非雌性中发育的腹部肌肉。我们从冈比亚按蚊中分离出了fru直系同源基因,并展示了该基因保守的基因组结构。我们证明,雄性特异性蚊子fru蛋白异构体是通过性别特异性激活和可变外显子剪接的保守机制产生的。通过在果蝇中异位表达雄性蚊子异构体FRUMC,揭示了蚊子fru的雄性决定功能;这导致在原本不会发育出MOL的fru突变雄性和fru+雌性中都出现MOL发育。同时,我们提供了证据表明雄性蚊子第五腹节内肌肉分化的一个独特特征与果蝇的MOL非常相似。鉴于在果蝇和按蚊2.5亿年的进化分歧背景下存在这些保守特征,我们推测fru是双翅目昆虫中雄性性行为的原型基因。

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