Montejano-Ramírez Vicente, Ávila-Oviedo José Luis, Campos-Mendoza Francisco Javier, Valencia-Cantero Eduardo
Instituto de Investigaciones Químico Biológicas, Universidad Michoacana de San Nicolás de Hidalgo, Edifico B3, Ciudad Universitaria, Morelia 58030, Mexico.
Plants (Basel). 2024 Jul 23;13(15):2013. doi: 10.3390/plants13152013.
Volatile organic compounds (VOCs) are low molecular weight molecules that tend to evaporate easily at room temperature because of their low boiling points. VOCs are emitted by all organisms; therefore, inter- and intra-kingdom interactions have been established, which are fundamental to the structuring of life on our planet. One of the most studied interactions through VOCs is between microorganism VOCs (mVOCs) and plants, including those of agricultural interest. The mVOC interactions generate various advantages for plants, ranging from promoting growth to the activation of defense pathways triggered by salicylic acid (systemic acquired resistance) and jasmonic acid (induced systemic resistance) to protect them against phytopathogens. Additionally, mVOCs directly inhibit the growth of phytopathogens, thereby providing indirect protection to plants. Among the current agricultural problems is the extensive use of chemicals, such as fertilizers, intended to combat production loss, and pesticides to combat phytopathogen infection. This causes problems in food safety and environmental pollution. Therefore, to overcome this problem, it is important to identify alternatives that do not generate environmental impacts, such as the application of mVOCs. This review addresses the protective effects of mVOCs emitted by microorganisms from different kingdoms and their implications in plant defense pathways.
挥发性有机化合物(VOCs)是低分子量分子,由于其沸点低,在室温下容易挥发。所有生物都会排放VOCs;因此,不同生物界之间以及生物界内部都建立了相互作用,这对我们星球上生命的构成至关重要。通过VOCs研究最多的相互作用之一是微生物挥发性有机化合物(mVOCs)与植物之间的相互作用,包括具有农业价值的植物。mVOC相互作用为植物带来了各种优势,从促进生长到激活由水杨酸(系统获得性抗性)和茉莉酸(诱导系统抗性)触发的防御途径,以保护它们免受植物病原体侵害。此外,mVOCs直接抑制植物病原体的生长,从而为植物提供间接保护。当前农业问题之一是广泛使用化学品,如用于应对产量损失的肥料和用于对抗植物病原体感染的农药。这会导致食品安全和环境污染问题。因此,为克服这一问题,识别不会产生环境影响的替代方法很重要,例如应用mVOCs。本综述探讨了不同生物界微生物排放的mVOCs的保护作用及其在植物防御途径中的意义。