Department of Soil Microbiology and Symbiotic Systems, Estación Experimental del Zaidín (EEZ), CSIC, Prof. Albareda 1, 18008, Granada, Spain.
J Chem Ecol. 2012 Jun;38(6):651-64. doi: 10.1007/s10886-012-0134-6. Epub 2012 May 24.
Symbioses between plants and beneficial soil microorganisms like arbuscular-mycorrhizal fungi (AMF) are known to promote plant growth and help plants to cope with biotic and abiotic stresses. Profound physiological changes take place in the host plant upon root colonization by AMF affecting the interactions with a wide range of organisms below- and above-ground. Protective effects of the symbiosis against pathogens, pests, and parasitic plants have been described for many plant species, including agriculturally important crop varieties. Besides mechanisms such as improved plant nutrition and competition, experimental evidence supports a major role of plant defenses in the observed protection. During mycorrhiza establishment, modulation of plant defense responses occurs thus achieving a functional symbiosis. As a consequence of this modulation, a mild, but effective activation of the plant immune responses seems to occur, not only locally but also systemically. This activation leads to a primed state of the plant that allows a more efficient activation of defense mechanisms in response to attack by potential enemies. Here, we give an overview of the impact on interactions between mycorrhizal plants and pathogens, herbivores, and parasitic plants, and we summarize the current knowledge of the underlying mechanisms. We focus on the priming of jasmonate-regulated plant defense mechanisms that play a central role in the induction of resistance by arbuscular mycorrhizas.
植物与有益土壤微生物(如丛枝菌根真菌)之间的共生关系已知可促进植物生长,并帮助植物应对生物和非生物胁迫。丛枝菌根真菌(AMF)根定植后,宿主植物会发生深刻的生理变化,从而影响地上和地下的各种生物的相互作用。共生关系对许多植物物种(包括农业上重要的作物品种)具有抗病原体、害虫和寄生植物的保护作用已被描述。除了改善植物营养和竞争等机制外,实验证据还支持植物防御在观察到的保护中起主要作用。在菌根形成过程中,植物防御反应的调节发生,从而实现功能共生。由于这种调节,植物免疫反应会被轻度但有效地激活,不仅在局部,而且在系统上也是如此。这种激活导致植物处于启动状态,使植物能够更有效地激活防御机制,以应对潜在敌人的攻击。在这里,我们概述了菌根植物与病原体、食草动物和寄生植物相互作用的影响,并总结了潜在机制的最新知识。我们重点介绍茉莉酸调节的植物防御机制的启动,这些机制在丛枝菌根诱导抗性中起着核心作用。