Farvardin Atefeh, González-Hernández Ana Isabel, Llorens Eugenio, Camañes Gemma, Scalschi Loredana, Vicedo Begonya
Biochemistry and Biotechnology Group, Department of Biology, Biochemistry and Natural Sciences, Universitat Jaume I, 12071 Castellón de la Plana, Spain.
Superior Polytechnic School of Zamora, University of Salamanca, Avda. de Requejo, 33, 49029 Zamora, Spain.
Plants (Basel). 2024 Jul 26;13(15):2059. doi: 10.3390/plants13152059.
Plants face numerous environmental stresses that hinder their growth and productivity, including biotic agents, such as herbivores and parasitic microorganisms, as well as abiotic factors, such as cold, drought, salinity, and high temperature. To counter these challenges, plants have developed a range of defense strategies. Among these, plant antimicrobial proteins and peptides (APPs) have emerged as a promising solution. Due to their broad-spectrum activity, structural stability, and diverse mechanisms of action, APPs serve as powerful tools to complement and enhance conventional agricultural methods, significantly boosting plant defense and productivity. This review focuses on different studies on APPs, emphasizing their crucial role in combating plant pathogens and enhancing plant resilience against both biotic and abiotic stresses. Beginning with in vitro studies, we explore how APPs combat various plant pathogens. We then delve into the defense mechanisms triggered by APPs against biotic stress, showcasing their effectiveness against bacterial and fungal diseases. Additionally, we highlight the role of APPs in mitigating the abiotic challenges associated with climatic change. Finally, we discuss the current applications of APPs in agriculture, emphasizing their potential for sustainable agricultural practices and the need for future research in this area.
植物面临着众多阻碍其生长和生产力的环境压力,包括生物因素,如食草动物和寄生微生物,以及非生物因素,如寒冷、干旱、盐度和高温。为应对这些挑战,植物已发展出一系列防御策略。其中,植物抗菌蛋白和肽(APPs)已成为一种有前景的解决方案。由于其广谱活性、结构稳定性和多样的作用机制,APPs成为补充和增强传统农业方法的有力工具,显著提高植物的防御能力和生产力。本综述聚焦于关于APPs的不同研究,强调它们在对抗植物病原体以及增强植物对生物和非生物胁迫的恢复力方面的关键作用。从体外研究开始,我们探讨APPs如何对抗各种植物病原体。然后我们深入研究APPs针对生物胁迫触发的防御机制,展示它们对细菌和真菌病害的有效性。此外,我们强调APPs在缓解与气候变化相关的非生物挑战方面的作用。最后,我们讨论APPs在农业中的当前应用,强调它们在可持续农业实践中的潜力以及该领域未来研究的必要性。