Department of Agricultural Biotechnology, College of Agriculture and Life Science, Seoul National University, Seoul, Korea.
Research Institute for Agriculture and Life Sciences, Seoul National University, Seoul, Korea.
Sci Rep. 2019 Jul 17;9(1):10342. doi: 10.1038/s41598-019-46842-0.
The honey bee acetylcholinesterase 1 (AmAChE1) has been suggested to be related to stress response as judged from its elevated expression level under brood rearing-suppressed conditions. To further investigate the involvement of AmAChE1 expression in the stress response and its physiological functions, we analyzed altered expression profiles of AmAChE1 induced by diverse stress factors. In addition, transcription profiles of several heat shock protein (Hsp) genes (hsps) and the vitellogenin (Vg) gene (vg) known as general stress markers were investigated as positive references. Among the tested stress conditions, AmAChE1 expression was induced under the brood rearing-suppressed, crowding and heat shock conditions. The hsps, particularly hsp70 and hsp90, responded to seven of nine stress conditions tested, confirming that hsp expression profiles can serve as a general stress marker. Taken together, AmAChE1 expression is not suitable for using as a stress marker due to its limited response. Nevertheless, AmAChE1 expression appears to be connected, at least in part, to heat shock response and other pathways. Considering that AmAChE1 likely regulates the ACh titer particularly in non-neuronal tissues, thereby modulating the signal cascades mediated by mAChR, the AmAChE1 expression profile under different conditions likely provides important information on its physiological roles in honey bees.
蜜蜂乙酰胆碱酯酶 1(AmAChE1)的表达水平在幼虫饲养抑制条件下升高,表明其与应激反应有关。为了进一步研究 AmAChE1 表达在应激反应及其生理功能中的参与情况,我们分析了不同应激因素诱导的 AmAChE1 表达变化谱。此外,还研究了几种热休克蛋白(Hsp)基因(hsps)和卵黄原蛋白(Vg)基因(vg)的转录谱,作为一般应激标志物的阳性参考。在测试的应激条件中,AmAChE1 的表达在幼虫饲养抑制、拥挤和热休克条件下被诱导。hsps,特别是 hsp70 和 hsp90,对测试的九种应激条件中的七种作出了响应,这证实了 hsp 表达谱可以作为一般应激标志物。总之,由于 AmAChE1 的响应有限,其表达不适合用作应激标志物。然而,AmAChE1 的表达似乎与热休克反应和其他途径至少部分相关。考虑到 AmAChE1 可能特别在非神经组织中调节 ACh 浓度,从而调节 mAChR 介导的信号级联,不同条件下 AmAChE1 的表达谱可能为其在蜜蜂中的生理作用提供重要信息。