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碳纳米管介导的水稻叶片和种子中的质粒 DNA 递呈。

Carbon Nanotube-Mediated Plasmid DNA Delivery in Rice Leaves and Seeds.

机构信息

Department of Soil and Crop Sciences, Texas A&M University, College Station, TX 77843, USA.

出版信息

Int J Mol Sci. 2022 Apr 7;23(8):4081. doi: 10.3390/ijms23084081.

Abstract

CRISPR-Cas gene editing technologies offer the potential to modify crops precisely; however, in vitro plant transformation and regeneration techniques present a bottleneck due to the lengthy and genotype-specific tissue culture process. Ideally, in planta transformation can bypass tissue culture and directly lead to transformed plants, but efficient in planta delivery and transformation remains a challenge. This study investigates transformation methods that have the potential to directly alter germline cells, eliminating the challenge of in vitro plant regeneration. Recent studies have demonstrated that carbon nanotubes (CNTs) loaded with plasmid DNA can diffuse through plant cell walls, facilitating transient expression of foreign genetic elements in plant tissues. To test if this approach is a viable technique for in planta transformation, CNT-mediated plasmid DNA delivery into rice tissues was performed using leaf and excised-embryo infiltration with reporter genes. Quantitative and qualitative data indicate that CNTs facilitate plasmid DNA delivery in rice leaf and embryo tissues, resulting in transient GFP, YFP, and GUS expression. Experiments were also initiated with CRISPR-Cas vectors targeting the () gene for CNT delivery into mature embryos to create heritable genetic edits. Overall, the results suggest that CNT-based delivery of plasmid DNA appears promising for in planta transformation, and further optimization can enable high-throughput gene editing to accelerate functional genomics and crop improvement activities.

摘要

CRISPR-Cas 基因编辑技术为精确修饰作物提供了潜力;然而,由于体外植物转化和再生技术的组织培养过程漫长且具有基因型特异性,这成为了一个瓶颈。理想情况下,体内转化可以绕过组织培养,直接获得转化的植物,但有效的体内传递和转化仍然是一个挑战。本研究调查了具有直接改变生殖细胞潜力的转化方法,从而消除了体外植物再生的挑战。最近的研究表明,负载质粒 DNA 的碳纳米管 (CNT) 可以扩散穿过植物细胞壁,促进植物组织中外源遗传元件的瞬时表达。为了测试这种方法是否是一种可行的体内转化技术,我们使用叶和离体胚渗透法将 CNT 介导的质粒 DNA 递送到水稻组织中,并报告基因。定量和定性数据表明,CNTs 促进了质粒 DNA 在水稻叶片和胚组织中的传递,导致 GFP、YFP 和 GUS 的瞬时表达。我们还使用靶向()基因的 CRISPR-Cas 载体启动了实验,以将 CNT 递送到成熟胚中,从而实现可遗传的基因编辑。总的来说,这些结果表明,基于 CNT 的质粒 DNA 传递似乎是一种有前途的体内转化方法,进一步的优化可以实现高通量基因编辑,加速功能基因组学和作物改良活动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6fe3/9028948/ba056106c8bd/ijms-23-04081-g001.jpg

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