利用 CRISPR/Cas9 技术改良作物,应对全球粮食危机:综述

Muhammad Ashar Abdullah, Sana Fatima, Fasiha Khaliq, Muzamal Mehmood, Talha Yousaf, Muhammad Bilal Mustafa, Muhammad Qamer Abbas, Ali Hassan
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引用次数: 0

摘要

基因组编辑(GE)是修改生物基因组的革命性方法,它彻底改变了生物科学。近年来,多项技术的发展使改变复杂基因组成为可能。因此,要维持农作物生产并促进全球粮食安全,就需要一种快速可靠的方法来提高产量和对不同环境压力的适应能力。本分析研究将详细介绍用于提高作物产量的基因工程工具。锌指核酸酶(ZFNs)、转录激活剂样效应核酸酶(TALENs)和簇状规则间隔短回文重复序列(CRISPR)是这些工具的几个例子。这类工具还包括巨型核酸酶(MNs)。本文特别介绍了利用 CRISPR/Cas9 进行基因组编辑以实现重大农业改良的最新进展,例如创造出产量更高、质量更好的农作物。当这种方法付诸实践时,将培育出具有所需性状的非转基因作物,这可能会提高在不同环境挑战下的产量能力。为提高农业产量和保障粮食安全,CRISPR/Cas9 方法可与现有和未来的育种技术(如组学辅助育种和快速育种)结合使用。此外,还介绍了与 CRISPR/Cas9 相关的困难和限制。植物育种家和科学家在详细分析 CRISPR/Cas9 的使用时,通过聚焦于所需基因来增强作物,会发现本资料很有帮助。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Using CRISPR/Cas9 Technology to Improve Crops and Address the Global Food Crisis: A Review
By developing a revolutionary method for modifying the genomes of living things, genome editing (GE) has completely changed the biological sciences. Recent years have seen the development of several technologies that make altering complex genomes possible. For agricultural crop production to be sustained and contribute to global food security, a fast and dependable method of raising yield and resilience to different environmental pressures is therefore required. The GE instruments for crop enhancement are explained in detail in this analytical research. Zinc-finger nucleases (ZFNs), transcriptional activator-like effector nucleases (TALENs), and clustered regularly interspaced short palindromic repeats (CRISPR) are a few examples of these tools. This category also includes mega-nucleases (MNs). In particular, the most recent advancements in the use of CRISPR/Cas9 for genome editing for major agricultural improvements - like the creation of crops that are more yielding and of higher quality - are covered this paper. When this approach is put into practice, non-transgene crops with desired traits will be produced, which might lead to increased yield capacity under different environmental challenges. To increase agricultural production and guarantee food security, the CRISPR/Cas9 methodology may be used in conjunction with existing and future breeding techniques (such as omics-assisted breeding and speed breeding). The difficulties and restrictions associated with CRISPR/Cas9 have also been covered. Plant breeders and scientists doing a detailed analysis of the use of CRISPR/Cas9 to enhance crops by focusing on the desired gene will find this material to be helpful.
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