Sharifi Rouhallah, Ryu Choong-Min
Department of Plant Protection, College of Agriculture and Natural Resources, Razi University, Kermanshah, Iran.
Molecular Phytobacteriology Laboratory, Infectious Disease Research Center, KRIBB, Daejeon 34141, Korea.
Plant Pathol J. 2018 Dec;34(6):459-469. doi: 10.5423/PPJ.RW.06.2018.0118. Epub 2018 Dec 1.
Plants and microorganisms (microbes) use information from chemicals such as volatile compounds to understand their environments. Proficiency in sensing and responding to these infochemicals increases an organism's ecological competence and ability to survive in competitive environments, particularly with regard to plant-pathogen interactions. Plants and microbes acquired the ability to sense and respond to biogenic volatiles during their evolutionary history. However, these signals can only be interpreted by humans through the use of state-of the-art technologies. Newly-developed tools allow microbe-induced plant volatiles to be detected in a rapid, precise, and non-invasive manner to diagnose plant diseases. Beside disease diagnosis, volatile compounds may also be valuable in improving crop productivity in sustainable agriculture. Bacterial volatile compounds (BVCs) have potential for use as a novel plant growth stimulant or as improver of fertilizer efficiency. BVCs can also elicit plant innate immunity against insect pests and microbial pathogens. Research is needed to expand our knowledge of BVCs and to produce BVC-based formulations that can be used practically in the field. Formulation possibilities include encapsulation and sol-gel matrices, which can be used in attract and kill formulations, chemigation, and seed priming. Exploitation of biogenic volatiles will facilitate the development of smart integrated plant management systems for disease control and productivity improvement.
植物和微生物利用挥发性化合物等化学物质所携带的信息来了解其周围环境。熟练感知并响应这些信息化合物能够增强生物体的生态竞争力以及在竞争环境中的生存能力,在植物与病原体的相互作用方面尤为如此。植物和微生物在其进化历程中获得了感知并响应生物源挥发物的能力。然而,这些信号唯有通过运用最先进的技术才能被人类解读。新开发的工具能够以快速、精确且非侵入性的方式检测微生物诱导的植物挥发物,从而诊断植物病害。除了病害诊断,挥发性化合物在提高可持续农业中的作物生产力方面或许也具有重要价值。细菌挥发性化合物(BVCs)有潜力用作新型植物生长刺激剂或肥料效率提升剂。BVCs还能激发植物针对害虫和微生物病原体的固有免疫力。需要开展研究以拓展我们对BVCs的认识,并生产出可在田间实际应用的基于BVCs的制剂。制剂的可能性包括包封和溶胶 - 凝胶基质,可用于诱捕杀灭制剂、化学灌溉和种子引发。对生物源挥发物的开发利用将有助于开发用于病害控制和提高生产力的智能综合植物管理系统。