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The Response to Nitric Oxide of the Nitrogen-Fixing Symbiont Sinorhizobium meliloti

机译:固氮共生体中华根瘤菌对一氧化氮的响应

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Nitric oxide (NO) is crucial in animal– and plant–pathogen interactions, during which it participates in host defense response and resistance. Indications for the presence of NO during the symbiotic interaction between the model legume Medicago truncatula and its symbiont Sinorhizobium meliloti have been reported but the role of NO in symbiosis is far from being elucidated. Our objective was to understand the role or roles played by NO in symbiosis. As a first step toward this goal, we analyzed the bacterial response to NO in culture, using a transcriptomic approach. We identified approximately 100 bacterial genes whose expression is upregulated in the presence of NO. Surprisingly, most of these genes are regulated by the two-component system FixLJ, known to control the majority of rhizobial genes expressed in planta in mature nodules, or the NO-dedicated regulator NnrR. Among the genes responding to NO is hmp, encoding a putative flavohemoglobin. We report that an hmp mutant displays a higher sensitivity toward NO in culture and leads to a reduced nitrogen fixation efficiency in planta. Because flavohemoglobins are known to detoxify NO in numerous bacterial species, this result is the first indication of the importance of the bacterial NO response in symbiosis.
机译:一氧化氮(NO)在动植物病原体相互作用中至关重要,在此过程中,它参与宿主的防御反应和抵抗力。在豆科植物苜蓿模型与其共生的苜蓿中华根瘤菌之间的共生相互作用中,存在NO的迹象已有报道,但还没有阐明NO在共生中的作用。我们的目标是了解NO在共生中扮演的角色。作为朝着这个目标迈出的第一步,我们使用转录组学方法分析了细菌对培养物中NO的反应。我们鉴定了大约100个细菌基因,这些基因在NO的存在下表达上调。出乎意料的是,这些基因中的大多数受两组分系统FixLJ的调节,该系统可控制成熟结节中植物中表达的大部分根瘤菌基因,或NO专用的调节剂NnrR。在对NO产生反应的基因中,hmp编码假定的黄素血红蛋白。我们报告,一个hmp突变体对文化中的NO显示更高的敏感性,并导致降低植物中固氮效率。因为已知黄素血球蛋白能使许多细菌物种中的NO解毒,所以该结果首次表明了细菌NO反应在共生中的重要性。

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