Department of Genetic Biochemistry, Faculty of Biotechnology, University of Wroclaw, Przybyszewskiego 63/77, 51-148 Wroclaw, Poland.
Department of Cellular Molecular Biology, Faculty of Biotechnology, University of Wroclaw, F. Joliot-Curie 14A, 50-383 Wroclaw, Poland.
Int J Mol Sci. 2023 Feb 24;24(5):4466. doi: 10.3390/ijms24054466.
Oligo technology is a low-cost and easy-to-implement method for direct manipulation of gene activity. The major advantage of this method is that gene expression can be changed without requiring stable transformation. Oligo technology is mainly used for animal cells. However, the use of oligos in plants seems to be even easier. The oligo effect could be similar to that induced by endogenous miRNAs. In general, the action of exogenously introduced nucleic acids (Oligo) can be divided into a direct interaction with nucleic acids (genomic DNA, hnRNA, transcript) and an indirect interaction via the induction of processes regulating gene expression (at the transcriptional and translational levels) involving regulatory proteins using endogenous cellular mechanisms. Presumed mechanisms of oligonucleotides' action in plant cells (including differences from animal cells) are described in this review. Basic principles of oligo action in plants that allow bidirectional changes in gene activity and even those that lead to heritable epigenetic changes in gene expression are presented. The effect of oligos is related to the target sequence at which they are directed. This paper also compares different delivery methods and provides a quick guide to using IT tools to help design oligonucleotides.
寡核苷酸技术是一种低成本且易于实施的基因活性直接操作方法。这种方法的主要优势在于,不需要稳定转化就可以改变基因表达。寡核苷酸技术主要用于动物细胞。然而,寡核苷酸在植物中的应用似乎更为简单。寡核苷酸的作用可能类似于内源性 miRNAs 诱导的作用。一般来说,外源核酸(寡核苷酸)的作用可以分为直接与核酸(基因组 DNA、hnRNA、转录本)相互作用,以及通过诱导涉及调节蛋白的调节基因表达的过程(在转录和翻译水平上),利用内源性细胞机制间接相互作用。本文描述了拟议的寡核苷酸在植物细胞中的作用机制(包括与动物细胞的差异)。本文还介绍了植物中寡核苷酸作用的基本原则,这些原则允许基因活性的双向变化,甚至导致基因表达的可遗传表观遗传变化。寡核苷酸的作用与它们所针对的靶序列有关。本文还比较了不同的递送方法,并提供了使用 IT 工具帮助设计寡核苷酸的快速指南。