Gou Bin, Zhu Edward, He Ruo, Stern Ulrich, Yang Chung-Hui
Department of Neurobiology, Duke University.
Department of Pharmacology, Duke University.
J Vis Exp. 2016 Mar 24(109):e53716. doi: 10.3791/53716.
Recently, egg-laying preference of Drosophila has emerged as a genetically tractable model to study the neural basis of simple decision-making processes. When selecting sites to deposit their eggs, female flies are capable of ranking the relative attractiveness of their options and choosing the "greater of two goods." However, most egg-laying preference assays are not practical if one wants to take a systematic genetic screening approach to search for the circuit basis underlying this simple decision-making process, as they are population-based and laborious to set up. To increase the throughput of studying of egg-laying preferences of single females, we developed custom chambers that each can simultaneously assay egg-laying preferences of up to thirty individual flies as well as a protocol that ensures each female has a high egg-laying rate (so that their preference is readily discernable and more convincing). Our approach is simple to execute and produces very consistent results. Additionally, these chambers can be equipped with different attachments to allow video recording the egg-laying animals and to deliver light for optogenetics studies. This article provides the blueprints for fabricating these chambers and the procedure for preparing the flies to be assayed in these chambers.
最近,果蝇的产卵偏好已成为一种易于进行基因研究的模型,用于研究简单决策过程的神经基础。在选择产卵地点时,雌蝇能够对其可选方案的相对吸引力进行排序,并选择“两优取其更优者”。然而,如果想要采用系统的基因筛选方法来寻找这一简单决策过程背后的神经回路基础,大多数产卵偏好试验并不实用,因为它们基于群体且设置起来很费力。为了提高对单个雌蝇产卵偏好的研究通量,我们开发了定制的实验箱,每个实验箱可同时检测多达30只个体果蝇的产卵偏好,还制定了确保每只雌蝇具有高产卵率的方案(以便其偏好易于辨别且更具说服力)。我们的方法易于实施且结果非常一致。此外,这些实验箱可以配备不同的附件,以便对产卵动物进行视频记录,并为光遗传学研究提供光照。本文提供了制造这些实验箱的蓝图以及准备在这些实验箱中进行检测的果蝇的程序。