Ikram Aziz Ul, Khan Muhammad Saad Shoaib, Islam Faisal, Ahmed Sulaiman, Ling Tengfang, Feng Feng, Sun Zongtao, Chen Huan, Chen Jian
International Genome Center, Jiangsu University, Zhenjiang, 212013, China.
Plant Systems Engineering Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), Yuseong-gu, Daejeon, 34141, Republic of Korea.
Adv Sci (Weinh). 2025 Feb;12(5):e2412223. doi: 10.1002/advs.202412223. Epub 2024 Dec 18.
Unlike animals, plants are unable to move and lack specialized immune cells and circulating antibodies. As a result, they are always threatened by a large number of microbial pathogens and harmful pests that can significantly reduce crop yield worldwide. Therefore, the development of new strategies to control them is essential to mitigate the increasing risk of crops lost to plant diseases. Recent developments in genetic engineering, including efficient gene manipulation and transformation methods, gene editing and synthetic biology, coupled with the understanding of microbial pathogenicity and plant immunity, both at molecular and genomic levels, have enhanced the capabilities to develop disease resistance in plants. This review comprehensively explains the fundamental mechanisms underlying the tug-of-war between pathogens and hosts, and provides a detailed overview of different strategies for developing disease resistance in plants. Additionally, it provides a summary of the potential genes that can be employed in resistance breeding for key crops to combat a wide range of potential pathogens and pests, including fungi, oomycetes, bacteria, viruses, nematodes, and insects. Furthermore, this review addresses the limitations associated with these strategies and their possible solutions. Finally, it discusses the future perspectives for producing plants with durable and broad-spectrum disease resistance.
与动物不同,植物不能移动,并且缺乏专门的免疫细胞和循环抗体。因此,它们总是受到大量微生物病原体和有害害虫的威胁,这些病原体和害虫会显著降低全球作物产量。所以,开发控制它们的新策略对于降低因植物病害导致作物损失的不断增加的风险至关重要。基因工程的最新进展,包括高效的基因操作和转化方法、基因编辑和合成生物学,再加上在分子和基因组水平上对微生物致病性和植物免疫的理解,增强了在植物中培育抗病性的能力。本综述全面解释了病原体与宿主之间拔河比赛的基本机制,并详细概述了植物抗病性开发的不同策略。此外,它总结了可用于关键作物抗性育种以对抗多种潜在病原体和害虫(包括真菌、卵菌、细菌、病毒、线虫和昆虫)的潜在基因。此外,本综述还讨论了这些策略的局限性及其可能的解决方案。最后,它探讨了培育具有持久和广谱抗病性植物的未来前景。