Enkh-Amgalan Jigjiddorj, Kawasaki Hiroko, Seki Tatsuji
The International Center for Biotechnology, Osaka University, 2-1 Yamada-oka, Suita-shi, Osaka 565-0871, Japan.
Int J Syst Evol Microbiol. 2006 Jan;56(Pt 1):65-74. doi: 10.1099/ijs.0.63815-0.
A major nif cluster was detected in the strictly anaerobic, Gram-positive phototrophic bacterium Heliobacterium chlorum. The cluster consisted of 11 genes arranged within a 10 kb region in the order nifI1, nifI2, nifH, nifD, nifK, nifE, nifN, nifX, fdx, nifB and nifV. The phylogenetic position of Hbt. chlorum was the same in the NifH, NifD, NifK, NifE and NifN trees; Hbt. chlorum formed a cluster with Desulfitobacterium hafniense, the closest neighbour of heliobacteria based on the 16S rRNA phylogeny, and two species of the genus Geobacter belonging to the Deltaproteobacteria. Two nifI genes, known to occur in the nif clusters of methanogenic archaea between nifH and nifD, were found upstream of the nifH gene of Hbt. chlorum. The organization of the nif operon and the phylogeny of individual and concatenated gene products showed that the Hbt. chlorum nif operon carrying nifI genes upstream of the nifH gene was an intermediate between the nif operon with nifI downstream of nifH (group II and III of the nitrogenase classification) and the nif operon lacking nifI (group I). Thus, the phylogenetic position of Hbt. chlorum nitrogenase may reflect an evolutionary stage of a divergence of the two nitrogenase groups, with group I consisting of the aerobic diazotrophs and group II consisting of strictly anaerobic prokaryotes.
在严格厌氧的革兰氏阳性光合细菌绿氯嗜光菌中检测到一个主要的固氮基因簇。该基因簇由11个基因组成,排列在一个10 kb的区域内,顺序为nifI1、nifI2、nifH、nifD、nifK、nifE、nifN、nifX、fdx、nifB和nifV。在NifH、NifD、NifK、NifE和NifN基因树中,绿氯嗜光菌的系统发育位置相同;绿氯嗜光菌与哈氏脱硫杆菌形成一个簇,哈氏脱硫杆菌是基于16S rRNA系统发育的嗜光菌最近的邻居,还有属于δ-变形菌纲的地杆菌属的两个物种。已知在产甲烷古菌的固氮基因簇中位于nifH和nifD之间的两个nifI基因,在绿氯嗜光菌的nifH基因上游被发现。固氮操纵子的组织以及单个和串联基因产物的系统发育表明,绿氯嗜光菌的固氮操纵子在nifH基因上游携带nifI基因,是nifI在nifH下游的固氮操纵子(固氮酶分类的第二组和第三组)和缺乏nifI的固氮操纵子(第一组)之间的中间体。因此,绿氯嗜光菌固氮酶的系统发育位置可能反映了两个固氮酶组分化的一个进化阶段,第一组由需氧固氮菌组成,第二组由严格厌氧的原核生物组成。