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用于培育健康作物的基因组编辑:性状、工具及影响

Genome editing for healthy crops: traits, tools and impacts.

作者信息

Yıldırım Kubilay, Miladinović Dragana, Sweet Jeremy, Akin Meleksen, Galović Vladislava, Kavas Musa, Zlatković Milica, de Andrade Eugenia

机构信息

Department of Molecular Biology and Genetics, Faculty of Arts and Sciences, Ondokuz Mayıs University, Samsun, Türkiye.

Institute of Field and Vegetable Crops, National Institute of Republic of Serbia, Novi Sad, Serbia.

出版信息

Front Plant Sci. 2023 Oct 27;14:1231013. doi: 10.3389/fpls.2023.1231013. eCollection 2023.

Abstract

Crop cultivars in commercial use have often been selected because they show high levels of resistance to pathogens. However, widespread cultivation of these crops for many years in the environments favorable to a pathogen requires durable forms of resistance to maintain "healthy crops". Breeding of new varieties tolerant/resistant to biotic stresses by incorporating genetic components related to durable resistance, developing new breeding methods and new active molecules, and improving the Integrated Pest Management strategies have been of great value, but their effectiveness is being challenged by the newly emerging diseases and the rapid change of pathogens due to climatic changes. Genome editing has provided new tools and methods to characterize defense-related genes in crops and improve crop resilience to disease pathogens providing improved food security and future sustainable agricultural systems. In this review, we discuss the principal traits, tools and impacts of utilizing genome editing techniques for achieving of durable resilience and a "healthy plants" concept.

摘要

商业上使用的作物品种通常是因为它们对病原体具有高度抗性而被选择的。然而,这些作物在有利于病原体的环境中多年广泛种植,需要持久的抗性形式来维持“健康作物”。通过整合与持久抗性相关的遗传成分培育耐/抗生物胁迫的新品种、开发新的育种方法和新的活性分子以及改进综合病虫害管理策略具有重要价值,但它们的有效性正受到新出现疾病以及气候变化导致的病原体快速变化的挑战。基因组编辑提供了新的工具和方法来表征作物中与防御相关的基因,并提高作物对病原体的抗性,从而改善粮食安全和未来可持续农业系统。在本综述中,我们讨论了利用基因组编辑技术实现持久抗性和“健康植物”概念的主要特征、工具和影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/231c/10641503/95735d951c3b/fpls-14-1231013-g001.jpg

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