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Crop Improvement Using Genome Editing

机译:使用基因组编辑作物改善

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Genome editing is a rapidly developing field of genetic engineering that allows precise modification of the genome. Genome editing is enabled by localizing sequence-specific nuclease (SSN) and sequence-specific effector (SSE) proteins to specific regions of the genome, and inducing DNA damage or modifying nucleotides or histone marks, respectively. SSN technology has been the driving force behind the advancement of genome editing, with clustered, regularly interspaced, short palindromic repeats/CRISPR-associated system (CRISPR/ Cas) standing as the dominant technology. Nevertheless, challenges exist for applying genome editing to crop species.This chapter reviews the mechanisms underlying genome editing, the reagents and plant transformation systems that enable genome editing, and strategies for targeted mutagenesis and gene targeting in crop species, as well as perspective applications for genome editing for large-scale modifications and commercial applications in agriculture. This information aims to extend the benefits of genome editing to more crop species and accelerate plant breeding efforts.
机译:基因组编辑是一种快速发展的基因工程领域,允许精确修饰基因组。通过将序列特异性核酸酶(SSN)和序列特异性效应器(SSE)蛋白定位为基因组的特定区域,并分别通过分别诱导DNA损伤或修饰核苷酸或组蛋白标记来实现基因组编辑。 SSN技术一直是基因组编辑的进步背后的动力,具有集群,定期间隙,短文重复/ CRISPR相关系统(CRISPR / CAS)作为主导技术。尽管如此,不存在将基因组编辑应用于作物物种的挑战。这一章综述了基因组编辑的机制,使能基因组编辑的试剂和植物转化系统以及靶向诱变和靶向作物物种的基因的策略,以及透视应用基因组编辑用于农业大规模修改和商业应用。该信息旨在扩展基因组编辑对更多作物物种的益处,并加速植物育种努力。

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