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CRISPR/Cas介导的园艺工程前景:挖掘被忽视的作物改良潜力

Perspectives of CRISPR/Cas-mediated -engineering in horticulture: unlocking the neglected potential for crop improvement.

作者信息

Li Qiang, Sapkota Manoj, van der Knaap Esther

机构信息

1College of Horticultural Science and Engineering, Shandong Agricultural University, Tai'an, China.

2Center for Applied Genetic Technologies, University of Georgia, Athens, GA USA.

出版信息

Hortic Res. 2020 Mar 15;7:36. doi: 10.1038/s41438-020-0258-8. eCollection 2020.

Abstract

Directed breeding of horticultural crops is essential for increasing yield, nutritional content, and consumer-valued characteristics such as shape and color of the produce. However, limited genetic diversity restricts the amount of crop improvement that can be achieved through conventional breeding approaches. Natural genetic changes in -regulatory regions of genes play important roles in shaping phenotypic diversity by altering their expression. Utilization of CRISPR/Cas editing in crop species can accelerate crop improvement through the introduction of genetic variation in a targeted manner. The advent of CRISPR/Cas-mediated -regulatory region engineering (-engineering) provides a more refined method for modulating gene expression and creating phenotypic diversity to benefit crop improvement. Here, we focus on the current applications of CRISPR/Cas-mediated -engineering in horticultural crops. We describe strategies and limitations for its use in crop improvement, including de novo -regulatory element (CRE) discovery, precise genome editing, and transgene-free genome editing. In addition, we discuss the challenges and prospects regarding current technologies and achievements. CRISPR/Cas-mediated -engineering is a critical tool for generating horticultural crops that are better able to adapt to climate change and providing food for an increasing world population.

摘要

对园艺作物进行定向育种对于提高产量、营养成分以及诸如农产品形状和颜色等消费者看重的特性至关重要。然而,有限的遗传多样性限制了通过传统育种方法所能实现的作物改良程度。基因调控区域的自然遗传变化通过改变基因表达在塑造表型多样性方面发挥着重要作用。在作物物种中利用CRISPR/Cas编辑可以通过有针对性地引入遗传变异来加速作物改良。CRISPR/Cas介导的调控区域工程(-工程)的出现为调节基因表达和创造表型多样性以促进作物改良提供了一种更精细的方法。在此,我们重点关注CRISPR/Cas介导的-工程在园艺作物中的当前应用。我们描述了其在作物改良中使用的策略和局限性,包括从头发现调控元件(CRE)、精确基因组编辑和无转基因基因组编辑。此外,我们讨论了当前技术和成果面临的挑战与前景。CRISPR/Cas介导的-工程是培育更能适应气候变化的园艺作物并为不断增长的世界人口提供食物的关键工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bce2/7072075/99b04a78307f/41438_2020_258_Fig1_HTML.jpg

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