Jezzini Sami H, Bodnarova Michaela, Moroz Leonid L
The Whitney Laboratory for Marine Bioscience and Department of Neuroscience, University of Florida, 9505 Ocean Shore Blvd., St. Augustine, FL 32080, USA.
J Neurosci Methods. 2005 Nov 30;149(1):15-25. doi: 10.1016/j.jneumeth.2005.05.007. Epub 2005 Aug 2.
Aplysia californica is an attractive model organism for cellular and systems neuroscience. Currently, there is a growing body of sequence data from Aplysia that includes many interesting genes. To fully exploit this molecular data it must be integrated with the large body of physiological data that are already available for identified neurons in Aplysia networks. In situ hybridization is a powerful technique that enables this to be done. Expression patterns of selected mRNA transcripts can be mapped to individual cells in the central nervous system (CNS). Here, we describe a detailed non-radioactive in situ hybridization protocol optimized for whole-mount preparations of Aplysia ganglia. The indirect alkaline phosphatase-based chromogenic detection method we employ may be used with one or two colors in order to detect one or two different transcripts in the same preparation. The procedure is also compatible with intracellular dye labeling, making it possible to couple localization of transcripts with electrophysiological studies in positively identified neurons. Double labeling was done for transcripts encoding the neuropeptides FMRFamide and sensorin. The sensitive detection of mRNA and great preservation of CNS morphology makes this method a useful tool for analyzing expression patterns of neuron specific genes in Aplysia.
加州海兔是细胞和系统神经科学领域极具吸引力的模式生物。目前,来自加州海兔的序列数据不断增加,其中包含许多有趣的基因。为了充分利用这些分子数据,必须将其与大量已有的关于加州海兔神经网络中已识别神经元的生理数据相结合。原位杂交是一种能够实现这一目标的强大技术。选定的mRNA转录本的表达模式可以映射到中枢神经系统(CNS)中的单个细胞上。在此,我们描述了一种针对加州海兔神经节整装标本优化的详细非放射性原位杂交方案。我们采用的基于间接碱性磷酸酶的显色检测方法可以使用一种或两种颜色,以便在同一标本中检测一种或两种不同的转录本。该程序还与细胞内染料标记兼容,使得在已明确识别的神经元中将转录本定位与电生理研究相结合成为可能。对编码神经肽FMRF酰胺和传感肽的转录本进行了双重标记。mRNA的灵敏检测和中枢神经系统形态的良好保存使得该方法成为分析加州海兔神经元特异性基因表达模式的有用工具。