Department of Biochemistry and Molecular Biology, Universidade Federal do Paraná, Brazil.
J Microbiol. 2010 Feb;48(1):77-83. doi: 10.1007/s12275-009-0077-y. Epub 2010 Mar 11.
The pathway of electron transport to nitrogenase in the endophytic beta-Proteobacterium Herbaspirillum seropedicae has not been characterized. We have generated mutants in two nif-associated genes encoding putative ferredoxins, fdxA and fdxN. The fdxA gene is part of the operon nifHDKENXorf1orf2fdxAnifQmodABC and is transcribed from the nifH promoter, as revealed by lacZ gene fusion. The fdxN gene is probably cotranscribed with the nifB gene. Mutational analysis suggests that the FdxA protein is essential for maximum nitrogenase activity, since the nitrogenase activity of the fdxA mutant strain was reduced to about 30% of that of the wild-type strain. In addition, the fdxA mutation had no effect on the nitrogenase switch-off in response to ammonium. Nitrogenase activity of a mutant strain lacking the fdxN gene was completely abolished. This phenotype was reverted by complementation with fdxN expressed under lacZ promoter control. The results suggest that the products of both the fdxA and fdxN genes are probably involved in electron transfer during nitrogen fixation.
内生β-变形菌 Herbaspirillum seropedicae 中向固氮酶传递电子的途径尚未确定。我们已经生成了两个与氮结合相关基因(编码假定铁氧还蛋白的 fdxA 和 fdxN)的突变体。fdxA 基因是 nifHDKENXorf1orf2fdxAnifQmodABC 操纵子的一部分,其转录受 nifH 启动子控制,这是通过 lacZ 基因融合揭示的。fdxN 基因可能与 nifB 基因共转录。突变分析表明,FdxA 蛋白对于最大固氮酶活性是必需的,因为 fdxA 突变株的固氮酶活性降低到野生型菌株的约 30%。此外,fdxA 突变对铵响应的固氮酶失活没有影响。缺乏 fdxN 基因的突变株的固氮酶活性完全被废除。该表型通过在 lacZ 启动子控制下表达 fdxN 进行互补得到逆转。结果表明,fdxA 和 fdxN 基因的产物可能都参与了固氮过程中的电子传递。