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Application of local gene induction by infrared laser-mediated microscope and temperature stimulator to amphibian regeneration study

机译:红外激光介导的显微镜和温度刺激剂诱导局部基因在两栖动物再生研究中的应用

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Urodele amphibians (newts and salamanders) and anuran amphibians (frogs) are excellent research models to reveal mechanisms of three-dimensional organ regeneration since they have exceptionally high regenerative capacity among tetrapods. However, the difficulty in manipulating gene expression in cells in a spatially restricted manner has so far hindered elucidation of the molecular mechanisms of organ regeneration in amphibians. Recently, local heat shock by laser irradiation has enabled local gene induction even at the single-cell level in teleost fishes, nematodes, fruit flies and plants. In this study, local heat shock was made with infrared laser irradiation (IR-LEGO) by using a gene expression inducible system in transgenic animals containing a heat shock promoter, and gene expression was successfully induced only in the target region of two amphibian species, Xenopus laevis and Pleurodeles waltl (a newt), at postembryonic stages. Furthermore, we induced spatially restricted but wider gene expression in Xenopus laevis tadpoles and froglets by applying local heat shock by a temperature-controlled metal probe (temperature stimulator). The local gene manipulation systems, the IR-LEGO and the temperature stimulator, enable us to do a rigorous cell lineage trace with the combination of the Cre-LoxP system as well as to analyze gene function in a target region or cells with less off-target effects in the study of amphibian regeneration.
机译:Urodele两栖动物(new和sal)和auran两栖动物(青蛙)是揭示三维器官再生机制的出色研究模型,因为它们在四足动物之间具有极高的再生能力。然而,迄今为止,以空间受限的方式操纵细胞中基因表达的困难阻碍了两栖动物器官再生的分子机制的阐明。近来,通过激光辐照引起的局部热激甚至在硬骨鱼,线虫,果蝇和植物中甚至在单细胞水平上也能够进行局部基因诱导。在这项研究中,通过使用基因表达诱导系统在含有热激启动子的转基因动物中使用红外激光辐射(IR-LEGO)进行局部热激,并且仅在两个两栖动物物种的目标区域成功诱导了基因表达,非洲爪蟾和Pleurodeles waltl(new),处于胚胎后阶段。此外,我们通过用温度控制的金属探针(温度刺激器)施加局部热激,在非洲爪蟾和小蛙中诱导了空间受限但较宽的基因表达。本地基因操纵系统,IR-LEGO和温度刺激器使我们能够结合Cre-LoxP系统进行严格的细胞谱系追踪,并分析靶区域或细胞内异源较少的基因功能两栖动物再生研究中的目标作用。

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