Grahovac Jovana, Pajčin Ivana, Vlajkov Vanja
Faculty of Technology Novi Sad, University of Novi Sad, Bulevar cara Lazara 1, 21000 Novi Sad, Serbia.
Antibiotics (Basel). 2023 Mar 15;12(3):581. doi: 10.3390/antibiotics12030581.
A contemporary agricultural production system relying on heavy usage of agrochemicals represents a questionable outlook for sustainable food supply in the future. The visible negative environmental impacts and unforeseen consequences to human and animal health have been requiring a shift towards the novel eco-friendly alternatives for chemical pesticides for a while now. Microbial-based biocontrol agents have shown a promising potential for plant disease management. The bacteria of the genus have been among the most exploited microbial active components due to several highly efficient mechanisms of action against plant pathogens, as well as a palette of additional plant-beneficial mechanisms, together with their suitable properties for microbial biopesticide formulations. Among other bioactive metabolites, volatile organic compounds (VOCs) have been investigated for their biocontrol applications, exhibiting the main advantage of long-distance effect without the necessity for direct contact with plants or pathogens. The aim of this study is to give an overview of the state-of-the-art in the field of -based VOCs, especially in terms of their antibacterial, antifungal, and nematicidal action as the main segments determining their potential for biocontrol applications in sustainable agriculture.
一个依赖大量使用农用化学品的当代农业生产系统,对未来可持续粮食供应而言前景堪忧。化学农药对环境的明显负面影响以及对人类和动物健康的不可预见后果,已经促使人们转向新型环保型化学农药替代品有一段时间了。基于微生物的生物防治剂在植物病害管理方面已显示出有前景的潜力。由于对植物病原体有几种高效作用机制,以及一系列其他对植物有益的机制,再加上它们适合用于微生物生物农药配方的特性,[具体属名缺失]属细菌一直是最常被利用的微生物活性成分之一。在其他生物活性代谢物中,挥发性有机化合物(VOCs)已被研究用于生物防治应用,其主要优点是具有远距离作用,无需与植物或病原体直接接触。本研究的目的是概述基于[具体内容缺失]的VOCs领域的最新进展,特别是在其抗菌、抗真菌和杀线虫作用方面,这些是决定其在可持续农业中生物防治应用潜力的主要方面。