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首页> 外文期刊>Molecular Microbiology >Population density-dependent regulation of the Bradyrhizobium japonicum nodulation genes.
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Population density-dependent regulation of the Bradyrhizobium japonicum nodulation genes.

机译:延缓根瘤菌根瘤基因的种群密度依赖性调节。

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The nodulation genes of Bradyrhizobium japonicum are essential for infection and establishment of a nitrogen-fixing symbiosis. Here, we demonstrate that plant-produced isoflavones induce nodulation gene expression in a population density-dependent fashion. Nodulation gene induction is highest at a low population density and significantly reduced in more dense cultures. A quorum signal molecule in the conditioned medium of B. japonicum cultures mediates this repression. Repression in response to the quorum signal results from the induction of NolA which, in turn, induces NodD2 leading to inhibition of nod gene expression. Consistent with this, nolA-lacZ and nodD2-lacZ expression increased with increasing population density. Unlike the wild type, the ability to induce nodY-lacZ expression did not decline with population density in a NolA mutant. Normally, nod gene expression is repressed in planta (i.e. within nodules). However, expression of a nodY-GUS fusion was not repressed in a NolA mutant, suggesting that quorum-sensing control may mediate in planta repression of the nod genes. Addition of conditioned medium to cultures significantly reduced nod gene expression. Treatment of inoculant cultures with conditioned medium also reduced the ability of B. japonicum to nodulate soybean plants.
机译:日本根瘤菌根瘤的结瘤基因对于感染和固氮共生的建立至关重要。在这里,我们证明了植物产生的异黄酮以人口密度依赖性的方式诱导结瘤基因表达。结瘤基因的诱导在低种群密度时最高,而在更密集的培养物中则明显降低。日本根瘤菌培养条件培养基中的群体信号分子介导了这种抑制。对法定信号的抑制是由NolA的诱导引起的,而NolA的诱导又诱导NodD2,从而导致对nod基因表达的抑制。与此一致,nolA-lacZ和nodD2-lacZ表达随种群密度的增加而增加。与野生型不同,在NolA突变体中诱导nodY-lacZ表达的能力不会随种群密度而下降。通常,nod基因表达在植物中(即在结节内)被抑制。但是,在NolA突变体中未抑制nodY-GUS融合蛋白的表达,这表明群体感应控制可能介导了nod基因的植物抑制。将条件培养基添加到培养物中显着降低了nod基因表达。用条件培养基处理接种培养物也降低了日本根瘤菌结瘤大豆植株的能力。

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