Banerjee Tirtha Das, Tian Shen, Monteiro Antόnia
Department of Biological Sciences, National University of Singapore, Singapore 117557, Singapore.
Science Division, Yale-NUS College, National University of Singapore, Singapore 138609, Singapore.
Methods Protoc. 2022 Aug 11;5(4):67. doi: 10.3390/mps5040067.
The assignment of specific patterns of gene expression to specific cells in a complex tissue facilitates the connection between genotype and phenotype. Single-cell sequencing of whole tissues produces single-cell transcript resolution but lacks the spatial information of the derivation of each cell, whereas techniques such as multiplex FISH localize transcripts to specific cells in a tissue but require a priori information of the target transcripts to examine. Laser dissection of tissues followed by transcriptome analysis is an efficient and cost-effective technique that provides both unbiased gene expression discovery together with spatial information. Here, we detail a laser dissection protocol for total RNA extraction from butterfly larval and pupal wing tissues, without the need of paraffin embedding or the use of a microtome, that could be useful to researchers interested in the transcriptome of specific areas of the wing during development. This protocol can bypass difficulties in extracting high quality RNA from thick fixed tissues for sequencing applications.
将复杂组织中特定的基因表达模式分配给特定细胞,有助于建立基因型与表型之间的联系。对整个组织进行单细胞测序可产生单细胞转录本分辨率,但缺乏每个细胞来源的空间信息,而多重荧光原位杂交等技术可将转录本定位到组织中的特定细胞,但需要目标转录本的先验信息来进行检测。对组织进行激光切割后进行转录组分析是一种高效且经济高效的技术,它既能提供无偏差的基因表达发现,又能提供空间信息。在这里,我们详细介绍一种从蝴蝶幼虫和蛹期翅膀组织中提取总RNA的激光切割方案,该方案无需石蜡包埋或使用切片机,这可能对研究翅膀发育过程中特定区域转录组的研究人员有用。该方案可以绕过从厚固定组织中提取高质量RNA用于测序应用的困难。