Takeuchi Hideaki, Paul Rajib Kumar, Matsuzaka Emiko, Kubo Takeo
Department of Biological Sciences, Graduate School of Science, The University of Tokyo, Tokyo, Japan.
Zoolog Sci. 2007 Jun;24(6):596-603. doi: 10.2108/zsj.24.596.
We previously demonstrated that six genes involved in ecdysteroid signaling are expressed preferentially in Kenyon-cell subtypes in the mushroom bodies of the honeybee (Apis mellifera L.). To further examine the possible involvement of ecdysteroid signaling in honeybee brain function, we isolated a cDNA for the A isoform of the ecdysone receptor gene homolog AmEcR-A and analyzed its expression in the brain. In situ hybridization revealed that AmEcR-A is expressed selectively in the small-type Kenyon cells of the mushroom bodies in the worker and queen brain, like AmE74 and AmHR38, suggesting a possible association of these gene products. Analysis of AmEcR-A expression in queen and worker abdomens demonstrated that AmEcR-A is strongly expressed in nurse cells of the queen ovary, suggesting that ecdysteroid and ecdysteroid signaling have roles in oogenesis. Our present results further support the possible involvement of ecdysteroid signaling in brain function, as well as in regulating queen reproductive physiology in the adult honeybee.
我们之前证明,参与蜕皮甾类信号传导的六个基因在蜜蜂(Apis mellifera L.)蘑菇体的肯扬细胞亚型中优先表达。为了进一步研究蜕皮甾类信号传导可能参与蜜蜂脑功能,我们分离了蜕皮激素受体基因同源物AmEcR-A的A亚型的cDNA,并分析了其在脑中的表达。原位杂交显示,AmEcR-A像AmE74和AmHR38一样,在工蜂和蜂王大脑蘑菇体的小型肯扬细胞中选择性表达,表明这些基因产物可能存在关联。对蜂王和工蜂腹部AmEcR-A表达的分析表明,AmEcR-A在蜂王卵巢的哺育细胞中强烈表达,表明蜕皮甾类和蜕皮甾类信号传导在卵子发生中起作用。我们目前的结果进一步支持了蜕皮甾类信号传导可能参与脑功能,以及调节成年蜜蜂蜂王生殖生理的观点。