Laboratory of Microbiology, Department of Biochemistry and Microbiology, University of Ghent Gent, Belgium.
Front Microbiol. 2012 Oct 18;3:371. doi: 10.3389/fmicb.2012.00371. eCollection 2012.
The genomes of two phenotypically denitrifying type strains of the genus Bacillus were sequenced and the pathways for dissimilatory nitrate reduction were reconstructed. Results suggest that denitrification proceeds in the periplasmic space and in an analogous fashion as in Gram-negative organisms, yet with the participation of proteins that tend to be membrane-bound or membrane-associated. A considerable degree of functional redundancy was observed with marked differences between B. azotoformans LMG 9581(T) and B. bataviensis LMG 21833(T). In addition to the already characterized menaquinol/cyt c-dependent nitric oxide reductase (Suharti et al., 2001, 2004) of which the encoding genes could be identified now, evidence for another novel nitric oxide reductase (NOR) was found. Also, our analyses confirm earlier findings on branched electron transfer with both menaquinol and cytochrome c as reductants. Quite unexpectedly, both bacilli have the disposal of two parallel pathways for nitrite reduction enabling a life style as a denitrifier and as an ammonifying bacterium.
对两株表型上具有反硝化能力的芽孢杆菌属的模式菌株进行了基因组测序,并重建了异化硝酸盐还原途径。结果表明,反硝化作用在周质空间中进行,与革兰氏阴性菌类似,但涉及到倾向于结合或与膜相关的蛋白质。在芽孢杆菌属中观察到相当程度的功能冗余,芽孢杆菌属中存在显著差异。除了已经表征的menaquinol/cyt c 依赖性一氧化氮还原酶(Suharti 等人,2001 年,2004 年),其编码基因现在可以被识别外,还发现了另一种新型的一氧化氮还原酶(NOR)。此外,我们的分析证实了之前关于分支电子传递的发现,menaquinol 和细胞色素 c 都可以作为还原剂。非常出乎意料的是,这两种芽孢杆菌都有两种平行的亚硝酸盐还原途径,可以作为反硝化菌和氨化菌生活。