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Purification of high-quality RNA from a small number of fluorescence activated cell sorted zebrafish cells for RNA sequencing purposes

机译:从少量荧光激活的细胞分选的斑马鱼细胞中纯化高质量的RNA,用于RNA测序

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Transgenic zebrafish lines with the expression of a fluorescent reporter under the control of a cell-type specific promoter, enable transcriptome analysis of FACS sorted cell populations. RNA quality and yield are key determinant factors for accurate expression profiling. Limited cell number and FACS induced cellular stress make RNA isolation of sorted zebrafish cells a delicate process. We aimed to optimize a workflow to extract sufficient amounts of high-quality RNA from a limited number of FACS sorted cells from Tg(fli1a:GFP) zebrafish embryos, which can be used for accurate gene expression analysis. We evaluated two suitable RNA isolation kits (the?RNAqueous micro and the RNeasy plus micro kit) and determined that sorting cells directly into lysis buffer is a critical step for success. For low cell numbers, this ensures direct cell lysis, protects RNA from degradation and results in a higher RNA quality and yield. We showed that this works well up to 0.5× dilution of the lysis buffer with sorted cells. In our sort settings, this corresponded to 30,000 and 75,000 cells for the RNAqueous micro kit and RNeasy plus micro kit respectively. Sorting more cells dilutes the lysis buffer too much and requires the use of a collection buffer. We also demonstrated that an additional genomic DNA removal step after RNA isolation is required to completely clear the RNA from any contaminating genomic DNA. For cDNA synthesis and library preparation, we combined SmartSeq v4 full length cDNA library amplification, Nextera XT tagmentation and sample barcoding. Using this workflow, we were able to generate highly reproducible RNA sequencing results. The presented optimized workflow enables to generate high quality RNA and allows accurate transcriptome profiling of small populations of sorted zebrafish cells.
机译:在细胞类型特异性启动子的控制下,具有荧光报告基因表达的转基因斑马鱼品系能够对FACS分选的细胞群体进行转录组分析。 RNA的质量和产量是准确表达分析的关键决定因素。有限的细胞数量和FACS诱导的细胞应激使分离的斑马鱼细胞的RNA分离成为一个微妙的过程。我们旨在优化工作流程,以从Tg(fli1a:GFP)斑马鱼胚胎的有限数量的FACS分选细胞中提取足够量的高质量RNA,该细胞可用于准确的基因表达分析。我们评估了两种合适的RNA分离试剂盒(RNAqueous micro和RNeasy plus micro kit),并确定将细胞直接分选到裂解缓冲液中是成功的关键步骤。对于低细胞数,这可确保直接细胞裂解,保护RNA免受降解并导致更高的RNA质量和产量。我们显示,在分选的细胞中,裂解缓冲液稀释至0.5倍稀释效果良好。在我们的分类设置中,RNAqueous微型试剂盒和RNeasy plus微型试剂盒分别对应30,000和75,000个细胞。分选更多的细胞会大大稀释裂解缓冲液,因此需要使用收集缓冲液。我们还证明了在RNA分离后需要额外的基因组DNA去除步骤,以从任何污染的基因组DNA中完全清除RNA。对于cDNA合成和文库制备,我们结合了SmartSeq v4全长cDNA文库扩增,Nextera XT标签和样品条形码。使用此工作流程,我们能够生成高度可重复的RNA测序结果。提出的优化工作流程能够生成高质量的RNA,并能对少量斑马鱼细胞群体进行准确的转录组分析。

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