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Targeted genome editing, an alternative tool for trait improvement in horticultural crops

机译:目标基因组编辑,园艺作物性状改良的替代工具

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Improving crops through plant breeding, an important approach for sustainable agriculture, has been utilized to increase the yield and quality of foods and other biomaterials for human use. Crops, including cereals, vegetables, ornamental flowers, fruits, and trees, have long been cultivated to produce high-quality products for human consumption. Conventional breeding technologies, such as natural cross-hybridization, mutation induction through physical or chemical mutagenesis, and modern transgenic tools are often used to enhance crop production. However, these breeding methods are sometimes laborious and complicated, especially when attempting to improve desired traits without inducing pleiotropic effects. Recently, targeted genome editing (TGE) technology using engineered nucleases, including meganucleases, zinc finger nucleases (ZFNs), transcription activator-like effector nucleases (TALENs), and clustered regularly interspaced short palindromic repeat (CRISPR) nucleases, has been used to improve the traits of economically important plants. TGE has emerged as a novel plant-breeding tool that represents an alternative approach to classical breeding, but with higher mutagenic efficiency. Here, we briefly describe the basic principles of TGE and the types of engineered nucleases utilized, along with their advantages and disadvantages. We also discuss their potential use to improve the traits of horticultural crops through genome engineering.
机译:通过植物育种来改善作物,这是可持续农业的重要方法,已被用于提高人类使用的食物和其他生物材料的产量和质量。长期以来,人们种植了包括谷物,蔬菜,观赏花卉,水果和树木在内的农作物,以生产供人类消费的高质量产品。常规育种技术,例如自然交叉杂交,通过物理或化学诱变诱导突变,以及现代转基因工具,通常用于提高作物产量。然而,这些育种方法有时是费力且复杂的,特别是在试图改善所需性状而不会引起多效性的情况下。最近,使用工程核酸酶(包括大范围核酸酶,锌指核酸酶(ZFNs),转录激活因子样效应核酸酶(TALENs)和成簇规则间隔的短回文重复(CRISPR)核酸酶)进行靶向基因组编辑(TGE)技术。具有重要经济意义的植物的特征。 TGE已经成为一种新型的植物育种工具,代表了经典育种的替代方法,但诱变效率更高。在这里,我们简要介绍了TGE的基本原理以及所使用的工程核酸酶的类型,以及它们的优缺点。我们还将讨论它们通过基因组工程改善园艺作物性状的潜在用途。

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