Department of Plant Cellular and Molecular Biology/Plant Biotechnology Center, The Ohio State University, Columbus, Ohio 43210, USA.
Plant Physiol. 2010 Oct;154(2):611-21. doi: 10.1104/pp.110.162271. Epub 2010 Aug 13.
Rapid assessment of the effect of reduced levels of gene products is often a bottleneck in determining how to proceed with an interesting gene candidate. Additionally, gene families with closely related members can confound determination of the role of even a single one of the group. We describe here an in vivo method to rapidly determine gene function using transient expression of artificial microRNAs (amiRNAs) in Arabidopsis (Arabidopsis thaliana) mesophyll protoplasts. We use a luciferase-based reporter of circadian clock activity to optimize and validate this system. Protoplasts transiently cotransfected with promoter-luciferase and gene-specific amiRNA plasmids sustain free-running rhythms of bioluminescence for more than 6 d. Using both amiRNA plasmids available through the Arabidopsis Biological Resource Center, as well as custom design of constructs using the Weigel amiRNA design algorithm, we show that transient knockdown of known clock genes recapitulates the same circadian phenotypes reported in the literature for loss-of-function mutant plants. We additionally show that amiRNA designed to knock down expression of the casein kinase II β-subunit gene family lengthens period, consistent with previous reports of a short period in casein kinase II β-subunit overexpressors. Our results demonstrate that this system can facilitate a much more rapid analysis of gene function by obviating the need to initially establish stably transformed transgenics to assess the phenotype of gene knockdowns. This approach will be useful in a wide range of plant disciplines when an endogenous cell-based phenotype is observable or can be devised, as done here using a luciferase reporter.
快速评估基因产物水平降低的效果通常是确定如何处理有趣的基因候选物的一个瓶颈。此外,具有密切相关成员的基因家族甚至会混淆对该组中单个基因的作用的确定。我们在这里描述了一种在活体中使用拟南芥(Arabidopsis thaliana)叶肉原生质体中瞬时表达人工 microRNA(amiRNA)快速确定基因功能的方法。我们使用基于荧光素酶的生物钟活性报告基因来优化和验证该系统。瞬时共转染启动子-荧光素酶和基因特异性 amiRNA 质粒的原生质体可维持生物发光的自由运行节律超过 6 天。使用通过拟南芥生物资源中心提供的 amiRNA 质粒,以及使用 Weigel amiRNA 设计算法设计的定制构建体,我们表明瞬时敲低已知的生物钟基因可再现文献中报道的功能丧失突变体植物的相同生物钟表型。我们还表明,设计用于敲低酪蛋白激酶 IIβ-亚基基因家族表达的 amiRNA 会延长周期,这与酪蛋白激酶 IIβ-亚基过表达体中报告的短周期一致。我们的结果表明,该系统可以通过避免最初建立稳定转化的转基因来评估基因敲低的表型,从而更快速地分析基因功能。当可以观察到或可以设计内源性基于细胞的表型时,该方法将在广泛的植物学科中非常有用,就像在这里使用荧光素酶报告基因一样。