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首页> 外文期刊>Biotechnology and Bioengineering >A novel microsurgery method for intact plant tissue at the single cell level using ArF excimer laser microprojection
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A novel microsurgery method for intact plant tissue at the single cell level using ArF excimer laser microprojection

机译:ArF准分子激光显微投影技术在单细胞水平上完整植物组织的显微外科手术新方法

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摘要

A novel microsurgery technique for the partial removal of rigid cell-walls in intact plant tissue is established. Using a size-variable slit, an ArF excimer laser was microprojected on the surface of the targeted cell, and this method enabled the area- and depth-controllable processing of the cortical structure of plant cells including the cuticle and cell wall layer. In epidermal cells of all tested plants, viabilities of more than 90% were retained 24 h after irradiation. Scanning electron microscope (SEM) observation revealed that the cuticle layer of the irradiated region was completely ablated, and the cellulose microfibrils of the secondary cell wall were partially removed; furthermore, 4 days after laser treatment, the regeneration of cell wall fibrils was observed. As a model experiment, the transient expression of synthetic green fluorescent protein (sGFP) was performed by the microinjection of cauliflower mosaic virus (CMV) 35S promoter-derived sGFP gene through an "aperture" in the treated cell surface. Moreover, micron-sized fluorescent beads were successfully introduced by the same method into the onion cells indicating that this method can be used to introduce foreign materials as large as organelles. (c) 2005 Wiley Periodicals, Inc.
机译:建立了一种用于部分去除完整植物组织中刚性细胞壁的新型显微外科技术。使用大小可变的缝隙,将ArF准分子激光微投射到目标细胞的表面,该方法能够对植物细胞的皮质结构(包括表皮和细胞壁层)进行面积和深度可控的处理。在所有测试植物的表皮细胞中,照射后24小时保留了90%以上的活力。扫描电子显微镜(SEM)观察显示,被照射区域的表皮层被完全消融,并且二次细胞壁的纤维素微纤维被部分除去。此外,在激光处理后4天,观察到细胞壁原纤维的再生。作为模型实验,通过在处理过的细胞表面中通过“孔”显微注射花椰菜花叶病毒(CMV)35S启动子衍生的sGFP基因来进行合成绿色荧光蛋白(sGFP)的瞬时表达。此外,通过相同的方法成功地将微米大小的荧光珠引入洋葱细胞,这表明该方法可用于引入与细胞器一样大的异物。 (c)2005年Wiley Periodicals,Inc.

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