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Genome modifications in plant cells by custom-made restriction enzymes

机译:定制限制酶植物细胞的基因组修饰

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摘要

Genome editing, i.e. the ability to mutagenize, insert, delete and replace sequences, in living cells is a powerful and highly desirable method that could potentially revolutionize plant basic research and applied biotechnology. Indeed, various research groups from academia and industry are in a race to devise methods and develop tools that will enable not only site-specific mutagenesis but also controlled foreign DNA integration and replacement of native and transgene sequences by foreign DNA, in living plant cells. In recent years, much of the progress seen in gene targeting in plant cells has been attributed to the development of zinc finger nucleases and other novel restriction enzymes for use as molecular DNA scissors. The induction of double-strand breaks at specific genomic locations by zinc finger nucleases and other novel restriction enzymes results in a wide variety of genetic changes, which range from gene addition to the replacement, deletion and site-specific mutagenesis of endogenous and heterologous genes in living plant cells. In this review, we discuss the principles and tools for restriction enzyme-mediated gene targeting in plant cells, as well as their current and prospective use for gene targeting in model and crop plants.
机译:基因组编辑,即诱变,插入,删除和替换序列的能力是一种强大而非常理想的方法,可能彻底彻底改变植物基础研究和应用生物技术。实际上,来自学术界和工业的各种研究小组都在制定方法和开发工具中,这些工具不仅能够通过外国DNA在生活植物细胞中控制外国DNA整合和替代天然和转基因序列。近年来,在植物细胞中靶向的基因中出现的大部分进展归因于锌指核酸酶和其他新型限制酶作为分子DNA剪刀的发展。通过锌指核酸酶和其他新型限制酶在特定基因组位置处的双链断裂导致各种遗传变化,其范围从基因添加到内源和异源基因的替代,缺失和位点特异性诱变中生物植物细胞。在本文中,我们讨论了靶向植物细胞中靶向的限制酶介导基因的原理和工具,以及它们的目前和前瞻性用于靶向模型和作物植物的基因。

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