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首页> 外文期刊>Applied Microbiology >Pseudomonas Strains Naturally Associated with Potato Plants Produce Volatiles with High Potential for Inhibition of Phytophthora infestans
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Pseudomonas Strains Naturally Associated with Potato Plants Produce Volatiles with High Potential for Inhibition of Phytophthora infestans

机译:与马铃薯植物天然相关的假单胞菌菌株产生的挥发物具有很高的抑制疫霉疫霉的潜力

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Bacteria emit volatile organic compounds with a wide range of effects on bacteria, fungi, plants, and animals. The antifungal potential of bacterial volatiles has been investigated with a broad span of phytopathogenic organisms, yet the reaction of oomycetes to these volatile signals is largely unknown. For instance, the response of the late blight-causing agent and most devastating oomycete pathogen worldwide, Phytophthora infestans , to bacterial volatiles has not been assessed so far. In this work, we analyzed this response and compared it to that of selected fungal and bacterial potato pathogens, using newly isolated, potato-associated bacterial strains as volatile emitters. P. infestans was highly susceptible to bacterial volatiles, while fungal and bacterial pathogens were less sensitive. Cyanogenic Pseudomonas strains were the most active, leading to complete growth inhibition, yet noncyanogenic ones also produced antioomycete volatiles. Headspace analysis of the emitted volatiles revealed 1-undecene as a compound produced by strains inducing volatile-mediated P. infestans growth inhibition. Supplying pure 1-undecene to P. infestans significantly reduced mycelial growth, sporangium formation, germination, and zoospore release in a dose-dependent manner. This work demonstrates the high sensitivity of P. infestans to bacterial volatiles and opens new perspectives for sustainable control of this devastating pathogen.
机译:细菌释放出挥发性有机化合物,对细菌,真菌,植物和动物具有广泛的影响。细菌挥发物的抗真菌潜力已被广泛的植物致病生物研究,但卵菌对这些挥发性信号的反应仍是未知的。例如,迄今为止尚未评估晚疫病致病因子和全世界最具破坏力的卵菌病原体疫霉菌(Phytophthora infestans)对细菌挥发物的反应。在这项工作中,我们使用新分离的马铃薯相关细菌菌株作为挥发性排放物,分析了该反应并将其与选定的真菌和细菌性马铃薯病原体进行了比较。致病疫霉对细菌挥发物高度敏感,而真菌和细菌病原体则较不敏感。蓝绿色假单胞菌菌株最活跃,导致完全的生长抑制,而非蓝绿色假单胞菌也产生抗卵菌挥发物。排放的挥发物的顶空分析表明,1-十一碳烯是由菌株产生的化合物,该菌株可诱导挥发物介导的P. infestans生长抑制。向致病疫霉提供纯的1-十一碳烯以剂量依赖的方式显着降低了菌丝体生长,孢子囊形成,发芽和游动孢子释放。这项工作证明了疫霉菌对细菌挥发物的高度敏感性,并为可持续控制这种毁灭性病原体开辟了新的前景。

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