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Volatiles produced by soil-borne endophytic bacteria increase plant pathogen resistance and affect tritrophic interactions

机译:由土壤传播的内生细菌产生的挥发物会增加植物病原体的抗性并影响三养相互作用

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摘要

Volatile organic compounds (VOCs) released by soil microorganisms influence plant growth and pathogen resistance. Yet, very little is known about their influence on herbivores and higher trophic levels. We studied the origin and role of a major bacterial VOC, 2,3-butanediol (2,3-BD), on plant growth, pathogen and herbivore resistance, and the attraction of natural enemies in maize. One of the major contributors to 2,3-BD in the headspace of soil-grown maize seedlings was identified as Enterobacter aerogenes, an endophytic bacterium that colonizes the plants. The production of 2,3-BD by E. aerogenes rendered maize plants more resistant against the Northern corn leaf blight fungus Setosphaeria turcica. On the contrary, E. aerogenes-inoculated plants were less resistant against the caterpillar Spodoptera littoralis. The effect of 2,3-BD on the attraction of the parasitoid Cotesia marginiventris was more variable: 2,3-BD application to the headspace of the plants had no effect on the parasitoids, but application to the soil increased parasitoid attraction. Furthermore, inoculation of seeds with E. aerogenes decreased plant attractiveness, whereas inoculation of soil with a total extract of soil microbes increased parasitoid attraction, suggesting that the effect of 2,3-BD on the parasitoid is indirect and depends on the composition of the microbial community.
机译:土壤微生物释放的挥发性有机化合物(VOC)影响植物的生长和病原体抗性。然而,关于它们对草食动物和较高营养水平的影响知之甚少。我们研究了主要细菌VOC,2,3-丁二醇(2,3-BD)对植物生长,病原体和草食动物抗性以及天敌在玉米中的吸引力的起源和作用。在土壤生长的玉米幼苗的顶部空间中,导致2,3-BD的主要因素之一是产气肠杆菌,它是一种定植在植物中的内生细菌。产气链球菌产生的2,3-BD使玉米植物对北方玉米叶枯病真菌Setosphaeria turcica更具抗性。相反,接种产气杆菌的植物对毛毛虫斜纹夜蛾的抵抗力较低。 2,3-BD对拟寄生物Cotesia marginiventris的吸引力的影响更大:将2,3-BD施用至植物的顶空对拟寄生物没有影响,但对土壤的施用增加了拟寄生物的吸引力。此外,用产气链球菌接种种子会降低植物的吸引力,而用土壤微生物总提取物接种土壤会增加拟寄生物的吸引力,这表明2,3-BD对拟寄生物的影响是间接的,取决于其组成。微生物群落。

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