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基因组编辑与CRISPR结合:对植物修复有何作用?

Genome Editing Weds CRISPR: What Is in It for Phytoremediation?

作者信息

Basharat Zarrin, Novo Luís A B, Yasmin Azra

机构信息

Microbiology & Biotechnology Research Lab, Department of Environmental Sciences, Fatima Jinnah Women University, Rawalpindi 46000, Pakistan.

Jamil-ur-Rahman Center for Genome Research, Dr. Panjwani Center for Molecular Medicine and Drug Research, International Center for Chemical and Biological Sciences, University of Karachi, Karachi 75270, Pakistan.

出版信息

Plants (Basel). 2018 Jun 28;7(3):51. doi: 10.3390/plants7030051.

Abstract

The arrival of sequence-specific endonucleases that allow genome editing has shaken the pillars of basic and applied plant biology. Clustered regularly interspaced palindromic repeats (CRISPR) is a revolutionary genome-engineering tool that enables the enhancement of targeted traits in plants. Numerous plants, including energy crops, known for their potential to tolerate, immobilize, and stabilize inorganic and organic pollutants, have already been edited using different CRISPR systems. Moreover, a large array of genes responsible for increased metal tolerance, metal uptake and hyperaccumulation have already been identified. Thus, the CRISPR-mediated genome reprogramming of plants, including its use in gene expression regulation through transcriptional repression or activation (CRISPRi and CRISPRa), could be of paramount importance for phytoremediation. The simplicity, inexpensiveness, and capabilities of this gene editing technique could soon be used to enhance plants and bacteria involved in phytotechnologies, such as phystabilization, phytoextraction, phytomining, phytovolatilization, and bio-energy generation. In this brief viewpoint piece, we posit some of the potential benefits of CRISPR for phytoremediation.

摘要

序列特异性核酸内切酶的出现使基因组编辑成为可能,这动摇了基础植物生物学和应用植物生物学的根基。成簇规律间隔短回文重复序列(CRISPR)是一种革命性的基因组工程工具,能够增强植物的目标性状。许多植物,包括能源作物,因其具有耐受、固定和稳定无机及有机污染物的潜力而闻名,目前已经使用不同的CRISPR系统对其进行了编辑。此外,大量负责提高金属耐受性、金属吸收和超积累的基因已经被鉴定出来。因此,CRISPR介导的植物基因组重编程,包括通过转录抑制或激活来调控基因表达(CRISPRi和CRISPRa),对于植物修复可能至关重要。这种基因编辑技术的简单性、低成本及其功能,很快可用于强化参与植物修复技术(如植物稳定、植物提取、植物采矿、植物挥发和生物能源生产)的植物和细菌。在这篇简短的观点文章中,我们阐述了CRISPR对植物修复的一些潜在益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14b8/6161122/f4ca9136040f/plants-07-00051-g001.jpg

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