School of Science and the Environment/Boreal Ecosystem Research Facility, Memorial University of Newfoundland, Corner Brook, Newfoundland and Labrador, A2H5G4, Canada.
St. John's Research and Development Centre, Agriculture and Agri-Food Canada, 204 Brookfield Rd, St. John's, Newfoundland and Labrador, A1E 6J5, Canada.
Plant Cell Environ. 2021 Jan;44(1):1-16. doi: 10.1111/pce.13904. Epub 2020 Oct 21.
Plant pathogens pose a significant threat to the food industry and food security accounting for 10-40% crop losses annually on a global scale. Economic losses from plant diseases are estimated at $300B for major food crops and are associated with reduced food availability and accessibility and also high food costs. Although strategies exist to reduce the impact of diseases in plants, many of these introduce harmful chemicals to our food chain. Therefore, it is important to understand and utilize plants' immune systems to control plant pathogens to enable more sustainable agriculture. Lipids are core components of cell membranes and as such are part of the first line of defense against pathogen attack. Recent developments in omics technologies have advanced our understanding of how plant membrane lipid biosynthesis, remodelling and/or signalling modulate plant responses to infection. Currently, there is limited information available in the scientific literature concerning lipid signalling targets and their biochemical and physiological consequences in response to plant pathogens. This review focusses on the functions of membrane lipid derivatives and their involvement in plant responses to pathogens as biotic stressors. We describe major plant defense systems including systemic-acquired resistance, basal resistance, hypersensitivity and the gene-for-gene concept in this context.
植物病原体对食品工业和粮食安全构成重大威胁,每年在全球范围内造成 10-40%的作物损失。主要粮食作物因植物病害造成的经济损失估计为 3000 亿美元,这不仅导致了食物供应和获取的减少,还导致了高食品成本。尽管存在减少植物病害影响的策略,但其中许多策略会向我们的食物链引入有害化学物质。因此,了解和利用植物的免疫系统来控制植物病原体,以实现更可持续的农业,这一点很重要。脂质是细胞膜的核心组成部分,因此是抵御病原体攻击的第一道防线的一部分。组学技术的最新发展提高了我们对植物膜脂生物合成、重塑和/或信号转导如何调节植物对感染的反应的理解。目前,关于脂质信号靶点及其对植物病原体的生化和生理后果的信息在科学文献中是有限的。本综述重点介绍了膜脂衍生物的功能及其在植物对生物胁迫因子(如病原体)的反应中的作用。我们在这方面描述了主要的植物防御系统,包括系统获得性抗性、基础抗性、超敏反应和基因对基因概念。