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Induced systemic resistance against Botrytis cinerea by Micromonospora strains isolated from root nodules

机译:从根瘤中分离出的微单孢菌菌株诱导对灰葡萄孢的全身抗性

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摘要

Micromonospora is a Gram positive bacterium that can be isolated from nitrogen fixing nodules from healthy leguminous plants, where they could be beneficial to the plant. Their plant growth promoting activity in legume and non-legume plants has been previously demonstrated. The present study explores the ability of Micromonospora strains to control fungal pathogens and to stimulate plant immunity. Micromonospora strains isolated from surface sterilized nodules of alfalfa showed in vitro antifungal activity against several pathogenic fungi. Moreover, root inoculation of tomato plants with these Micromonospora strains effectively reduced leaf infection by the fungal pathogen Botrytis cinerea, despite spatial separation between both microorganisms. This induced systemic resistance, confirmed in different tomato cultivars, is long lasting. Gene expression analyses evidenced that Micromonospora stimulates the plant capacity to activate defense mechanisms upon pathogen attack. The defensive response of tomato plants inoculated with Micromonospora spp. differs from that of non-inoculated plants, showing a stronger induction of jasmonate-regulated defenses when the plant is challenged with a pathogen. The hypothesis of jasmonates playing a key role in this defense priming effect was confirmed using defense-impaired tomato mutants, since the JA-deficient line def1 was unable to display a long term induced resistance upon Micromonospora spp. inoculation. In conclusion, nodule isolated Micromonospora strains should be considered excellent candidates as biocontrol agents as they combine both direct antifungal activity against plant pathogens and the ability to prime plant immunity.
机译:小单孢菌是革兰氏阳性细菌,可以从健康的豆科植物的固氮根瘤中分离出来,对植物有益。先前已经证明了它们在豆类和非豆类植物中促进植物生长的活性。本研究探讨了微单孢菌菌株控制真菌病原体和刺激植物免疫力的能力。从苜蓿的表面灭菌结节中分离出的微单孢菌菌株对几种病原真菌表现出体外抗真菌活性。而且,尽管这两种微生物在空间上分开,但用这些微型单孢菌菌株对番茄植物的根接种有效地减少了真菌病原体灰葡萄孢的叶片感染。在不同的番茄品种中证实的这种诱导的系统抗性是持久的。基因表达分析表明,微单孢菌能刺激植物在病原体侵袭时激活防御机制的能力。接种Micromonospora spp的番茄植株的防御反应。与未接种的植物不同,当病原体攻击植物时,表现出较强的茉莉酸酯调控防御系统诱导作用。茉莉酸酯在这种防御启动作用中起关键作用的假说已通过防御受损的番茄突变体得到证实,因为JA缺陷品系def1无法对Micromonospora spp表现出长期诱导的抗性。接种。总之,结节分离的微单孢菌菌株应被视为生物防治剂的极佳候选者,因为它们既具有针对植物病原体的直接抗真菌活性,又具有引发植物免疫的能力。

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