首页> 美国卫生研究院文献>Scientific Reports >Vacuum/Compression Infiltration-mediated Permeation Pathway of a Peptide-pDNA Complex as a Non-Viral Carrier for Gene Delivery in Planta
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Vacuum/Compression Infiltration-mediated Permeation Pathway of a Peptide-pDNA Complex as a Non-Viral Carrier for Gene Delivery in Planta

机译:真空/压缩渗透介导的肽-pDNA复合物作为非病毒载体在植物中传递基因的渗透途径。

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摘要

Non-viral gene carriers have been extensively investigated as alternatives to viral vectors for gene delivery systems into animal and plant cells. A non-viral gene carrier containing a cell-penetrating peptide and a cationic sequence was previously developed for use in intact plants and plant cells; however, the permeation pathway of the gene carrier into plant cells is yet to be elucidated, which would facilitate the improvement of the gene delivery efficiency. Here, we identified the vacuum/compression infiltration-mediated permeation pathway of a non-viral gene carrier into plant tissues and cells using a complex of plasmid DNA and a peptide-based gene carrier. This complex was taken up via the hydathodes in Arabidopsis thaliana, and from root hairs in Nicotiana benthamiana. Remarkably, these structurally weak tissues are also routes of bacterial invasion in nature, suggesting that peptide-pDNA complexes invade intact plants through similar pathways as bacterial pathogens.
机译:非病毒基因载体已被广泛研究作为病毒载体的替代品,用于将基因传递系统导入动物和植物细胞。先前已开发出一种包含细胞穿透肽和阳离子序列的非病毒基因载体,用于完整的植物和植物细胞。然而,基因载体向植物细胞的渗透途径尚待阐明,这将有助于提高基因传递效率。在这里,我们使用质粒DNA和基于肽的基因载体的复合物,鉴定了非病毒基因载体在植物组织和细胞中的真空/压缩渗透介导的渗透途径。该复合物是通过拟南芥中的hydrathodes和烟草Nicaniana benthamiana中的根毛吸收的。值得注意的是,这些结构薄弱的组织也是自然界中细菌入侵的途径,表明肽-pDNA复合物通过与细菌病原体相似的途径侵入完整的植物。

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