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Mini Review: Potential Applications of Non-host Resistance for Crop Improvement

机译:小型回顾:非寄主抗性在作物改良中的潜在应用

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摘要

Plant breeding for disease resistance is crucial to sustain global crop production. For decades, plant breeders and researchers have extensively used host plant resistance genes (R-genes) to develop disease resistant cultivars. However, the general instability of R-genes in crop cultivars when challenged with diverse pathogen populations emphasizes the need for more stable means of resistance. Alternatively, non-host resistance is recognized as the most durable, broad-spectrum form of resistance against the majority of potential pathogens in plants and has gained great attention as an alternative target for managing resistance. While transgenic approaches have been utilized to transfer non-host resistance to host species, conventional breeding applications have been more elusive. Nevertheless, avenues for discovery and deployment of genetic loci for non-host resistance via hybridization are increasingly abundant, particularly when transferring genes among closely related species. In this mini review, we discuss current and developing applications of non-host resistance for crop improvement with a focus on the overlap between host and non-host mechanisms and the potential impacts of new technology.
机译:抗病育种对维持全球农作物产量至关重要。几十年来,植物育种者和研究人员已广泛使用宿主植物抗性基因(R-genes)来开发抗病品种。然而,当受到多种病原体种群的挑战时,农作物品种中R基因的普遍不稳定性强调了对稳定抗病手段的需求。另外,非宿主抗性被认为是对植物中大多数潜在病原体的最持久,最广谱的抗性形式,作为控制抗性的替代目标已引起广泛关注。尽管已利用转基因方法将非寄主抗性转移至寄主物种,但常规育种应用却难以捉摸。然而,通过杂交发现和部署非宿主抗性的遗传基因座的途径越来越丰富,特别是在密切相关的物种之间转移基因时。在本微型综述中,我们将讨论非寄主抗性在作物改良方面的当前和发展中的应用,重点是寄主与非寄主机制之间的重叠以及新技术的潜在影响。

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