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果蝇味觉神经元的雌性化和改变对雄性回避行为产生相互影响。

Feminization and alteration of Drosophila taste neurons induce reciprocal effects on male avoidance behavior.

作者信息

Lacaille Fabien, Everaerts Claude, Ferveur Jean-François

机构信息

Unité Mixte de Recherche 5548 Associée au Centre National de la Recherche Scientifique, Faculté des Sciences, Université de Bourgogne, 6, Bd Gabriel, 21 000, Dijon, France.

出版信息

Behav Genet. 2009 Sep;39(5):554-63. doi: 10.1007/s10519-009-9286-8. Epub 2009 Jul 19.

Abstract

Taste perception allows most animals to find edible food, potential mates, and avoid ingesting toxic molecules. Intriguingly, a small group of Drosophila taste neurones (expressing Gr66a-Gal4) involved in the perception of bitter substances is also used to detect 7-tricosene (7-T), a male cuticular pheromone. Male flies tend to be inhibited by 7-T whereas females are stimulated by this pheromone. To better understand their role on male courtship, Gr66a-Gal4 neurons were genetically feminized or altered with various transgenes, and the response of transgenic males was measured toward live targets carrying various amounts of 7-T, or of bitter molecules (caffeine, quinine and berberine). Surprisingly, tester males with feminized taste neurons showed an increased dose-dependent avoidance toward targets with high level of any of these substances, compared to other tester males. Conversely, males with altered neurons showed no, or very little avoidance. Moreover, the surgical ablation of the sensory appendages carrying these taste neurons differently affected the behavioral response of the various tester males. The fact that this manipulation did not affect the courtship toward control females nor the locomotor activity of tester males suggests that Gr66a-Gal4 neurons are involved in the sex-specific perception of molecules inducing male avoidance behavior.

摘要

味觉感知使大多数动物能够找到可食用的食物、潜在配偶,并避免摄入有毒分子。有趣的是,一小群参与苦味物质感知的果蝇味觉神经元(表达Gr66a - Gal4)也被用于检测7 - 二十三碳烯(7 - T),一种雄性表皮信息素。雄蝇往往会被7 - T抑制,而雌蝇则会受到这种信息素的刺激。为了更好地理解它们在雄性求偶行为中的作用,对Gr66a - Gal4神经元进行了基因雌性化处理或用各种转基因进行改造,并测量了转基因雄蝇对携带不同量7 - T或苦味分子(咖啡因、奎宁和小檗碱)的活体目标的反应。令人惊讶的是,与其他测试雄蝇相比,味觉神经元雌性化的测试雄蝇对含有高水平上述任何一种物质的目标表现出剂量依赖性的回避增加。相反,神经元发生改变的雄蝇没有或几乎没有回避行为。此外,对携带这些味觉神经元的感觉附属器进行手术切除对不同测试雄蝇的行为反应产生了不同影响。这种操作不影响对对照雌蝇的求偶行为,也不影响测试雄蝇的运动活性,这一事实表明Gr66a - Gal4神经元参与了诱导雄性回避行为的分子的性别特异性感知。

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