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Using RNA-mediated Interference Feeding Strategy to Screen for Genes Involved in Body Size Regulation in the Nematode C. elegans

机译:使用RNA介导的干扰物喂养策略来筛选线虫秀丽隐杆线虫的体重调控相关基因。

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摘要

Double-strand RNA-mediated interference (RNAi) is an effective strategy to knock down target gene expression1-3. It has been applied to many model systems including plants, invertebrates and vertebrates. There are various methods to achieve RNAi in vivo4,5. For example, the target gene may be transformed into an RNAi vector, and then either permanently or transiently transformed into cell lines or primary cells to achieve gene knockdown effects; alternatively synthesized double-strand oligonucleotides from specific target genes (RNAi oligos) may be transiently transformed into cell lines or primary cells to silence target genes; or synthesized double-strand RNA molecules may be microinjected into an organism. Since the nematode C. elegans uses bacteria as a food source, feeding the animals with bacteria expressing double-strand RNA against target genes provides a viable strategy6. Here we present an RNAi feeding method to score body size phenotype. Body size in C. elegans is regulated primarily by the TGF- β - like ligand DBL-1, so this assay is appropriate for identification of TGF-β signaling components7. We used different strains including two RNAi hypersensitive strains to repeat the RNAi feeding experiments. Our results showed that rrf-3 strain gave us the best expected RNAi phenotype. The method is easy to perform, reproducible, and easily quantified. Furthermore, our protocol minimizes the use of specialized equipment, so it is suitable for smaller laboratories or those at predominantly undergraduate institutions.
机译:双链RNA介导的干扰(RNAi)是敲低靶基因表达的有效策略 1-3 。它已应用于许多模型系统,包括植物,无脊椎动物和脊椎动物。有多种方法可在体内实现RNAi 4,5 。例如,可以将靶基因转化为RNAi载体,然后将其永久或瞬时转化为细胞系或原代细胞,以实现基因敲低效应。或者,可以将特定靶基因(RNAi寡核苷酸)合成的双链寡核苷酸瞬时转化到细胞系或原代细胞中,使靶基因沉默。或将合成的双链RNA分子显微注射到生物体中。由于线虫秀丽隐杆线虫利用细菌作为食物来源,因此向动物喂食针对目标基因表达双链RNA的细菌提供了可行的策略 6 。在这里,我们提出了一种RNAi喂养方法来对体重表型进行评分。秀丽隐杆线虫的体型主要受TGF-β-样配体DBL-1的调控,因此该方法适合鉴定TGF-β信号转导成分 7 。我们使用了包括两个RNAi高敏感性菌株在内的不同菌株来重复RNAi喂养实验。我们的结果表明,rrf-3菌株为我们提供了最佳的预期RNAi表型。该方法易于执行,可重现且易于定量。此外,我们的协议最大程度地减少了专用设备的使用,因此它适合于小型实验室或主要是本科院校的实验室。

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