首页> 美国卫生研究院文献>Journal of Bacteriology >Role of a Ferredoxin Gene Cotranscribed with the nifHDK Operon in N2 Fixation and Nitrogenase Switch-Off of Azoarcus sp. Strain BH72
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Role of a Ferredoxin Gene Cotranscribed with the nifHDK Operon in N2 Fixation and Nitrogenase Switch-Off of Azoarcus sp. Strain BH72

机译:与nifHDK操纵子共转录的铁氧还蛋白基因在固氮菌固氮和固氮酶关闭中的作用。菌株BH72

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摘要

The endophytic diazotroph Azoarcus sp. strain BH72 is capable of infecting rice roots and of expressing the nitrogenase (nif) genes there. In order to study the genetic background for nitrogen fixation in strain BH72, the structural genes of nitrogenase (nifHDK) were cloned and sequenced. The sequence analysis revealed an unusual gene organization: downstream of nifHDK, a ferredoxin gene (fdxN; 59% amino acid sequence identity to R. capsulatus FdxN) and open reading frames showing 52 and 36% amino acid sequence identity to nifY of Pseudomonas stutzeri A15 and ORF1 of Azotobacter vinelandii were located. Northern blot analysis, reverse transcriptase PCR and primer extension analysis revealed that these six genes are located on one transcript transcribed from a ς54-type promoter. Shorter transcripts sequentially missing genes of the 3′ part of the full-length mRNA were more abundantly detected. Mutational analyses suggested that FdxN is an important but not the essential electron donor for dinitrogenase reductase. An in-frame deletion of fdxN resulted in reduced growth rates (59% ± 9%) and nitrogenase activities (81%) in nitrogen-fixing pure cultures in comparison to the wild type. Nitrogenase activity was fully complemented in an fdxN mutant which carried a nifH promoter-driven fdxN gene in trans. Also, in coculture with the ascomycete Acremonium alternatum, where strain BH72 develops intracytoplasmic membrane stacks, the nitrogenase activity in the fdxN deletion mutant was decreased to 56% of the wild-type level. Surprisingly, the fdxN deletion also had an effect on the rapid “switch-off” of nitrogenase activity in response to ammonium. Wild-type strain BH72 and the deletion mutant complemented with fdxN in trans showed a rapid reversible inactivation of acetylene reduction, while the deletion mutant did not cease to reduce acetylene. In concordance with the hypothesis that changes in the redox state of NifH or electron flux towards nitrogenase may be involved in the mechanism of physiological nitrogenase switch-off, our results suggest that the ferredoxin may be a component involved in this process.
机译:内生重氮营养菌Azoarcus sp。 BH72菌株能够感染水稻根部并在其中表达固氮酶(nif)基因。为了研究菌株BH72固氮的遗传背景,克隆并测序了固氮酶(nifHDK)的结构基因。序列分析显示了一个异常的基因组织:nifHDK的下游,一个铁氧还蛋白基因(fdxN;与荚膜罗非鱼FdxN的氨基酸序列同一性为59%)和开放阅读框,显示与斯图氏假单胞菌A15的nifY分别具有52%和36%的氨基酸序列同一性定位了葡萄固氮菌的ORF1和ORF1。 Northern印迹分析,逆转录酶PCR和引物延伸分析表明,这六个基因位于一个由ς 54 型启动子转录的转录本上。全长mRNA 3'部分的基因顺序缺失的较短转录物被更丰富地检测到。突变分析表明,FdxN是二氮酶还原酶的重要但非必需的电子供体。与野生型相比,在固定氮的纯培养物中,fdxN的框内缺失导致生长速率降低(59%±9%)和固氮酶活性降低(81%)。 fdxN突变体中反式携带了一个由nifH启动子驱动的fdxN基因的氮酶活性得到了充分补充。另外,在与子囊菌顶头孢霉共培养中,菌株BH72会形成胞质内膜堆,fdxN缺失突变体中的固氮酶活性降低至野生型水平的56%。出乎意料的是, fdxN 缺失也对响应铵离子的硝化酶活性的快速“关闭”有影响。野生型菌株BH72和在 trans 中补充有 fdxN 的缺失突变体显示出乙炔还原的快速可逆失活,而缺失突变体并未停止还原乙炔。与假说NifH的氧化还原状态的变化或朝向固氮酶的电子通量的变化可能与生理固氮酶关闭的机制有关的假设相符,我们的结果表明,铁氧还蛋白可能是这一过程的一部分。

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