Department of Pharmacological and Physiological Science, St. Louis University School of Medicine, St. Louis, Missouri
Department of Pharmacological and Physiological Science, St. Louis University School of Medicine, St. Louis, Missouri.
Am J Physiol Regul Integr Comp Physiol. 2014 Jul 1;307(1):R82-92. doi: 10.1152/ajpregu.00003.2014. Epub 2014 Apr 30.
The stress response in Drosophila melanogaster reveals sex differences in behavior, similar to what has been observed in mammals. However, unlike mammals, the sex determination pathway in Drosophila is well established, making this an ideal system to identify factors involved in the modulation of sex-specific responses to stress. In this study, we show that the Drosophila fat body, which has been shown to be important for energy homeostasis and sex determination, is a dynamic tissue that is altered in response to stress in a sex and time-dependent manner. We manipulated the sex determination pathway in the fat body via targeted expression of transformer and transformer-2 and analyzed these animals for changes in their response to stress. In the majority of cases, manipulation of transformer or transformer-2 was able to change the physiological output in response to starvation and oxidative stress to that of the opposite sex. Our data also uncover the possibility of additional downstream targets for transformer and transformer-2 that are separate from the sex determination pathway and can influence behavioral and physiological responses.
黑腹果蝇的应激反应揭示了行为上的性别差异,这与在哺乳动物中观察到的情况类似。然而,与哺乳动物不同的是,黑腹果蝇的性别决定途径已经得到很好的确定,这使得它成为一个理想的系统,可以识别参与调节对压力的性别特异性反应的因素。在这项研究中,我们表明,果蝇的脂肪体,已经被证明对能量平衡和性别决定很重要,是一个动态组织,会以性别和时间依赖的方式对压力做出反应。我们通过靶向表达 transformer 和 transformer-2 来操纵脂肪体的性别决定途径,并分析这些动物对压力的反应变化。在大多数情况下,操纵 transformer 或 transformer-2 能够将对饥饿和氧化应激的生理反应改变为相反性别的反应。我们的数据还揭示了 transformer 和 transformer-2 的其他下游靶标存在的可能性,这些靶标与性别决定途径分开,能够影响行为和生理反应。