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Pulsed Irradiation Improves Target Selectivity of Infrared Laser-Evoked Gene Operator for Single-Cell Gene Induction in the Nematode C. elegans

机译:脉冲辐射提高了线虫线虫单细胞基因诱导的红外激光诱发基因操纵子的目标选择性。

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摘要

Methods for turning on/off gene expression at the experimenter’s discretion would be useful for various biological studies. Recently, we reported on a novel microscope system utilizing an infrared laser-evoked gene operator (IR-LEGO) designed for inducing heat shock response efficiently in targeted single cells in living organisms without cell damage, thereby driving expression of a transgene under the control of a heat shock promoter. Although the original IR-LEGO can be successfully used for gene induction, several limitations hinder its wider application. Here, using the nematode Caenorhabditis elegans (C. elegans) as a subject, we have made improvements in IR-LEGO. For better spatial control of heating, a pulsed irradiation method using an optical chopper was introduced. As a result, single cells of C. elegans embryos as early as the 2-cell stage and single neurons in ganglia can be induced to express genes selectively. In addition, the introduction of site-specific recombination systems to IR-LEGO enables the induction of gene expression controlled by constitutive and cell type-specific promoters. The strategies adopted here will be useful for future applications of IR-LEGO to other organisms.
机译:根据实验者的判断,打开/关闭基因表达的方法将对各种生物学研究有用。最近,我们报道了一种新型的显微镜系统,该系统利用红外激光诱发基因操纵子(IR-LEGO)设计用于在不破坏细胞的情况下有效诱导活生物体中靶向单细胞的热激反应,从而驱动转基因的表达。热激促进剂。尽管最初的IR-LEGO可以成功地用于基因诱导,但是一些限制因素阻碍了它的广泛应用。在这里,使用线虫秀丽隐杆线虫(C. elegans)作为对象,我们对IR-LEGO进行了改进。为了更好地控制加热,引入了使用光斩波器的脉冲照射方法。结果,可以诱导秀丽隐杆线虫胚胎的单细胞早于2-细胞阶段,并且可以诱导神经节中的单神经元选择性表达基因。另外,将位点特异性重组系统引入IR-LEGO使得能够诱导由组成型和细胞类型特异性启动子控制的基因表达。此处采用的策略对于IR-LEGO在其他生物上的未来应用将很有用。

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