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Identification of Genes Regulated by the Antitermination Factor NasT during Denitrification in Bradyrhizobium diazoefficiens

机译:重氮根瘤菌缓释过程中反终止因子NasT调控的基因的鉴定。

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摘要

The soybean symbiont Bradyrhizobium diazoefficiens grows anaerobically in the presence of nitrate using the denitrification pathway, which involves the nap, nir, nor, and nos genes. We previously showed that NasT acts as a transcription antitermination regulator for nap and nos gene expression. In the present study, we investigated the targets of NasT in B. diazoefficiens during denitrifying growth by performing transcription profiling with RNA-seq and quantitative reverse-transcription PCR. Most of the genes with altered expression in the absence of NasT were related to nitrogen metabolism, specifically several systems for branched-chain amino acid transport. The present results suggest that the reduced expression of genes involved in nitrogen acquisition leads to the induction of alternative sets of genes with similar functions. The ΔnasT mutant of B. diazoefficiens grew better than the wild type under denitrifying conditions. However, this enhanced growth was completely abolished by an additional loss of the narK or bjgb genes, which encode cytoplasmic systems for nitrite and nitric oxide detoxification, respectively. Since the expression of narK and bjgb was increased in the ΔnasT mutant, the growth of the ΔnasT mutant may be promoted by increased detoxification activity.
机译:大豆共生植物重氮根瘤菌在硝酸盐存在下通过反硝化途径厌氧生长,该过程涉及小睡,nir,nor和nos基因。我们以前显示NasT充当小睡和nos基因表达的转录抗终止调节剂。在本研究中,我们通过用RNA-seq和定量逆转录PCR进行转录分析,研究了重氮反硝化杆菌在反硝化生长过程中NasT的靶标。在没有NasT的情况下,大多数表达改变的基因都与氮代谢有关,特别是几个支链氨基酸转运系统。目前的结果表明,参与氮吸收的基因表达的减少导致具有相似功能的另一组基因的诱导。在反硝化条件下,重氮芽孢杆菌的ΔnasT突变体比野生型生长得更好。但是,这种增加的生长被narK或bjgb基因的额外损失所完全消除,该基因分别编码亚硝酸盐和一氧化氮解毒的细胞质系统。由于ΔnasT突变体中narK和bjgb的表达增加,因此可以通过增加解毒活性来促进ΔnasT突变体的生长。

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