Normand P, Bousquet J
Centre de Recherche en Biologie Forestière, Université Laval, Québec, Canada.
J Mol Evol. 1989 Nov;29(5):436-47. doi: 10.1007/BF02602914.
The complete nucleotide sequence of a nitrogenase (nifH) gene was determined from a second strain (HRN18a) of Frankia, an aerobic soil bacterium. The open reading frame is 870 bp long and encodes a polypeptide of 290 amino acids. The amino acid and nucleotide sequences were compared with 21 other published sequences. The two Frankia strains were 96% similar at the amino acid level and 93% similar at the nucleotide level. A number of methods were used to infer phylogenies of these nitrogen fixers, based on nifH amino acid and nucleotide sequences. The results obtained do not agree completely with other phylogenies for these bacteria and thus make probable occurrences of lateral transfer of the nif genes. The time of divergence of the two Frankia strains could be estimated at about 100 million years. The vanadium-dependent (Type 2) nitrogenase present in Azotobacter spp. appears to be a recent derivation from the conventional molybdenum-dependent (Type 1) enzyme, whereas the iron-dependent (Type 3) alternative nitrogenase would have a much older origin.
从一种需氧土壤细菌——弗兰克氏菌的第二个菌株(HRN18a)中测定了固氮酶(nifH)基因的完整核苷酸序列。开放阅读框长870 bp,编码一个由290个氨基酸组成的多肽。将氨基酸和核苷酸序列与其他21个已发表的序列进行了比较。这两个弗兰克氏菌菌株在氨基酸水平上相似性为96%,在核苷酸水平上相似性为93%。基于nifH氨基酸和核苷酸序列,使用了多种方法来推断这些固氮菌的系统发育。所得结果与这些细菌的其他系统发育并不完全一致,因此使得nif基因可能发生了横向转移。这两个弗兰克氏菌菌株的分化时间估计约为1亿年。固氮菌属中存在的钒依赖性(2型)固氮酶似乎是由传统的钼依赖性(1型)酶最近衍生而来的,而铁依赖性(3型)替代固氮酶的起源则要古老得多。