CRISPR/Cas——观赏植物基因组编辑的有力工具

Mostafa K. Sarmast
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引用次数: 0

摘要

生物技术是培育花卉大小、花色、香气等性状,提高花卉抗病性和提高花瓶寿命的有效手段。随着许多观赏植物基因组测序的完成和定点编辑的惊人进展,观赏植物育种的多样化进程将加速。如今,由于易于应用、成本低、可用性好,CRISPR/Cas已经超过了ZFNs、TALENs和巨核酶等其他基因组编辑技术。CRISPR/Cas是古细菌和一些细菌的获得性免疫系统,细菌对引入的遗传物质产生反应,开始产生小的互补转录物,通过该转录物拦截现有的入侵序列,并在Cas核酸酶蛋白的帮助下使目标DNA失活。断裂的链通过DNA修复系统连接在一起,但突变的核苷酸导致目标基因的失活。迄今为止,该技术在观赏植物中最重要的成就是敲除了牵牛花、托伦尼亚、龙胆、兰花和日本牵牛花中参与植物发育过程和颜色变化的同源基因。随着该方法的进一步发展和优化,我们将很快看到生物性状抗性育种的许多变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CRISPR/Cas, a powerful tool for genome editing in ornamental plants
Biotechnology is a proper implement for breeding traits such as flower size, color and aroma as well as improving disease resistance and improvement of flower vase life. With completion of genome sequencing of many ornamental plants and astonishing progress on site-specific edition, the process of diversification for ornamental plant breeding will accelerate. Nowadays, due to the ease in application, low cost, and availability, CRISPR/Cas has overtaken the other genome editing technologies such as ZFNs, TALENs and meganuclease. CRISPR/Cas is an acquisition immune system in archaea and some bacteria wherein bacteria in response to introduced genetic materials start to make small complementary transcript by which intercepts the existing invasive sequence and inactivates the target DNA with the help of Cas nuclease protein. Broken strands join together by DNA repair system but the mutated nucleotides lead to inactivity of the target gene. The most important achievement of this technology in ornamental plants so far is knocking down homeotic genes involved in plant developmental process and also color change in petunia, torenia, gentian, orchids, and Japanese morning glory. With further development and optimization of this method, we will soon see many changes in the breeding of biotic traits resistance.
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