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在果蝇中,由保幼激素调控雌性的交配和性信息素的产生。

Regulation of onset of female mating and sex pheromone production by juvenile hormone in Drosophila melanogaster.

机构信息

Janelia Farm Research Campus, Howard Hughes Medical Institute, Ashburn, VA 20147.

出版信息

Proc Natl Acad Sci U S A. 2013 Nov 5;110(45):18321-6. doi: 10.1073/pnas.1318119110. Epub 2013 Oct 21.

Abstract

Juvenile hormone (JH) coordinates timing of female reproductive maturation in most insects. In Drosophila melanogaster, JH plays roles in both mating and egg maturation. However, very little is known about the molecular pathways associated with mating. Our behavioral analysis of females genetically lacking the corpora allata, the glands that produce JH, showed that they were courted less by males and mated later than control females. Application of the JH mimic, methoprene, to the allatectomized females just after eclosion rescued both the male courtship and the mating delay. Our studies of the null mutants of the JH receptors, Methoprene tolerant (Met) and germ cell-expressed (gce), showed that lack of Met in Met(27) females delayed the onset of mating, whereas lack of Gce had little effect. The Met(27) females were shown to be more attractive but less behaviorally receptive to copulation attempts. The behavioral but not the attractiveness phenotype was rescued by the Met genomic transgene. Analysis of the female cuticular hydrocarbon profiles showed that corpora allata ablation caused a delay in production of the major female-specific sex pheromones (the 7,11-C27 and -C29 dienes) and a change in the cuticular hydrocarbon blend. In the Met(27) null mutant, by 48 h, the major C27 diene was greatly increased relative to wild type. In contrast, the gce(2.5k) null mutant females were courted similarly to control females despite changes in certain cuticular hydrocarbons. Our findings indicate that JH acts primarily via Met to modulate the timing of onset of female sex pheromone production and mating.

摘要

保幼激素 (JH) 在大多数昆虫中协调雌性生殖成熟的时间。在黑腹果蝇中,JH 在交配和卵成熟中都发挥作用。然而,关于与交配相关的分子途径知之甚少。我们对缺乏产生 JH 的腺体即咽侧体的雌性进行的行为分析表明,它们比对照雌性受到的雄性求偶少,交配时间晚。在羽化后立即向去卵巢的雌性施用 JH 类似物灭幼脲,可以挽救雄性求偶和交配延迟。我们对 JH 受体 Metoprene 耐受 (Met) 和生殖细胞表达 (gce) 的 null 突变体的研究表明,Met(27) 雌性中 Met 的缺乏延迟了交配的开始,而 Gce 的缺乏几乎没有影响。Met(27) 雌性表现出对交配尝试更有吸引力但行为上更不易接受。Met 基因组转基因挽救了这种行为但不是吸引力表型。对雌性表皮碳氢化合物谱的分析表明,咽侧体消融导致主要的雌性特异性性信息素(7,11-C27 和 -C29 二烯)的产生延迟和表皮碳氢化合物混合物的变化。在 Met(27) 缺失突变体中,到 48 小时,主要的 C27 二烯相对于野生型大大增加。相比之下,尽管某些表皮碳氢化合物发生了变化,gce(2.5k) 缺失突变体雌性仍被雄性以类似于对照雌性的方式求偶。我们的发现表明,JH 主要通过 Met 来调节雌性性信息素产生和交配开始的时间。

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