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CRISPR/Cas9 在逆境条件下为作物改良开辟了新的前景。

CRISPR/Cas9 opens new horizon of crop improvement under stress condition.

机构信息

Department of Genetics, University of Calcutta, 35, Ballygunge circular road, Kolkata 700019, West Bengal, India.

Department of Biological sciences, Bose Institute, EN-80, Sector V, Bidhannagar, Kolkata 700091, West Bengal, India.

出版信息

Biochim Biophys Acta Gen Subj. 2024 Oct;1868(10):130685. doi: 10.1016/j.bbagen.2024.130685. Epub 2024 Jul 28.

Abstract

Plants are exposed to a myriad of stresses, stemming from abiotic and biotic sources, significantly threatening agricultural productivity. The low crop yield, coupled with the global burden of population has resulted in the scarcity of quality food, exacerbating socio-economic issues like poverty, hunger, and malnutrition. Conventional breeding methods for the generation of stress-tolerant plants are time-consuming, limit genetic diversity, and are not sustainable for the consistent production of high-yielding crops. In recent years, the use of high-throughput, genome editing (GE) technique has revolutionized the crop-improvement paradigm, ushering greater prospects for agricultural progress. Among these tools, the Clustered regularly interspaced short palindromic repeat (CRISPR), and its associated nuclease protein Cas9, have appeared as a ground-breaking technology, allowing precise knockout (KO), upregulation, and downregulation of target gene expression. Apart from its high efficacy and speed, this programmable nuclease offers exceptional specificity with minimal off-target effects. Here in, we aim to review the latest findings on the application of the CRISPR/Cas9 genome editing tool for generating resilience in plants against environmental stresses.

摘要

植物面临着来自非生物和生物来源的多种压力,这极大地威胁了农业生产力。低作物产量,加上全球人口负担,导致优质食品短缺,加剧了贫困、饥饿和营养不良等社会经济问题。传统的培育耐压力植物的方法耗时耗力,限制了遗传多样性,并且对于高产作物的持续生产是不可持续的。近年来,高通量、基因组编辑(GE)技术的应用彻底改变了作物改良的范例,为农业进步带来了更大的前景。在这些工具中,成簇的规律间隔的短回文重复序列(CRISPR)及其相关的核酸酶 Cas9 已经成为一项突破性的技术,能够精确地进行靶基因表达的敲除(KO)、上调和下调。除了高效和快速之外,这种可编程核酸酶还具有最小的脱靶效应的卓越特异性。在这里,我们旨在综述 CRISPR/Cas9 基因组编辑工具在提高植物对环境胁迫的抗性方面的最新应用研究进展。

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