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Genome Editing in Plants: Exploration of Technological Advancements and Challenges

机译:植物基因组编辑:技术进步与挑战的探索

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摘要

Genome-editing, a recent technological advancement in the field of life sciences, is one of the great examples of techniques used to explore the understanding of the biological phenomenon. Besides having different site-directed nucleases for genome editing over a decade ago, the CRISPR/Cas (clustered regularly interspaced short palindromic repeats/CRISPR-associated protein) based genome editing approach has become a choice of technique due to its simplicity, ease of access, cost, and flexibility. In the present review, several CRISPR/Cas based approaches have been discussed, considering recent advances and challenges to implicate those in the crop improvement programs. Successful examples where CRISPR/Cas approach has been used to improve the biotic and abiotic stress tolerance, and traits related to yield and plant architecture have been discussed. The review highlights the challenges to implement the genome editing in polyploid crop plants like wheat, canola, and sugarcane. Challenges for plants difficult to transform and germline-specific gene expression have been discussed. We have also discussed the notable progress with multi-target editing approaches based on polycistronic tRNA processing, Csy4 endoribonuclease, intron processing, and Drosha ribonuclease. Potential to edit multiple targets simultaneously makes it possible to take up more challenging tasks required to engineer desired crop plants. Similarly, advances like precision gene editing, promoter bashing, and methylome-editing will also be discussed. The present review also provides a catalog of available computational tools and servers facilitating designing of guide-RNA targets, construct designs, and data analysis. The information provided here will be useful for the efficient exploration of technological advances in genome editing field for the crop improvement programs.
机译:基因组编辑是生命科学领域的一项最新技术进步,是用于探索对生物学现象的理解的技术的重要实例之一。除了在十年前使用不同的定点核酸酶进行基因组编辑外,基于CRISPR / Cas(聚簇的规则间隔的短回文重复序列/ CRISPR相关蛋白)的基因组编辑方法已成为一种技术选择,因为它简单易用,成本和灵活性。在本综述中,讨论了几种基于CRISPR / Cas的方法,考虑了最近的进展和挑战,以暗示那些在作物改良计划中的应用。已经讨论了使用CRISPR / Cas方法改善生物和非生物胁迫耐受性以及与产量和植物结构有关的性状的成功实例。该评论强调了在小麦,低芥酸菜子和甘蔗等多倍体作物中实施基因组编辑的挑战。讨论了难以转化的植物和种系特异性基因表达的挑战。我们还讨论了基于多顺反子tRNA加工,Csy4核糖核酸内切酶,内含子加工和Drosha核糖核酸酶的多目标编辑方法的显着进展。同时编辑多个目标的潜力使承担工程农作物所需的更具挑战性的任务成为可能。同样,还将讨论诸如精确基因编辑,启动子重排和甲基化组编辑等进展。本综述还提供了便于计算指南RNA靶标,构建体​​设计和数据分析的可用计算工具和服务器的目录。此处提供的信息将有助于有效探索作物改良计划的基因组编辑领域的技术进步。

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