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Bradyoxetin, a unique chemical signal involved in symbiotic gene regulation

机译:缓激肽,一种参与共生基因调控的独特化学信号

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Bradyrhizobium japonicum is a symbiotic bacterium that nodulates soybean. Critical for the infection and establishment of this symbiosis are the bacterial nodulation genes (nod, nol, noe), which are induced in the presence of plant produced isoflavones. Transcription of the nodulation genes is also controlled in a population density-dependent fashion. Expression of the nod genes is maximal at low population densities, and decreases significantly at higher culture densities. Population density control of the nodulation genes involves NolA and NodD2, both of which function in tandem to repress nod gene expression. An extracellular secreted factor (CDF) is known to mediate this repression. Here, we report that CDF is a novel signaling molecule, designated bradyoxetin, different from other Gram-negative quorum signals. The proposed structure of bradyoxetin is 2-{4-[[4-(3-aminooxetan-2-yl)phenyl]-(imino)methyl]phenyl}oxetan-3-ylamine. Interestingly, expression of bradyoxetin is iron-regulated, and is maximally produced under iron-starved conditions. Consistent with this, expression of the nodulation genes occurred in an iron-dependent fashion. Addition of iron to B. japonicum cultures at high optical densities resulted in decreased bradyoxetin production, and a concomitant reduction in nolA expression. A corresponding increase in nodY-lacZexpression was observed with iron treatment.
机译:日本的缓生根瘤菌是一种根瘤大豆的共生细菌。细菌结瘤基因(nod,nol,noe)对于感染和建立这种共生至关重要,该基因在植物产生的异黄酮存在下被诱导。结瘤基因的转录也以种群密度依赖性方式控制。 nod基因的表达在低种群密度下最大,而在较高培养密度下显着降低。结瘤基因的种群密度控制涉及NolA和NodD2,两者均协同作用以抑制nod基因表达。已知细胞外分泌因子(CDF)介导这种抑制。在这里,我们报道CDF是一种新型的信号分子,称为缓激肽,与其他革兰氏阴性定额信号不同。缓激肽的建议结构是2- {4-[[4-(3-氨基氧杂-2-烷基)苯基]-(亚氨基)甲基]苯基}氧杂-3-基胺。有趣的是,缓激肽的表达是铁调节的,并且在铁缺乏的条件下最大程度地产生。与此相一致,结节基因的表达以铁依赖性方式发生。在高光密度下将铁添加到日本血吸虫培养物中导致缓激肽的产生减少,并伴随着nolA表达的降低。用铁处理观察到nodY-lacZ表达相应增加。

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