Hirsch A M, McKhann H I, Reddy A, Liao J, Fang Y, Marshall C R
Department of Biology, University of California, Los Angeles 90024-1606.
Mol Biol Evol. 1995 Jan;12(1):16-27. doi: 10.1093/oxfordjournals.molbev.a040184.
The structural genes for nitrogenase, nifK, nifD, and nifH, are crucial for nitrogen fixation. Previous phylogenetic analysis of the amino acid sequence of nifH suggested that this gene had been horizontally transferred from a proteobacterium to the gram-positive/cyanobacterial clade, although the confounding effects of paralogous comparisons made interpretation of the data difficult. An additional test of nif gene horizontal transfer using nifD was made, but the NifD phylogeny lacked resolution. Here nif gene phylogeny is addressed with a phylogenetic analysis of a third and longer nif gene, nifK. As part of the study, the nifK gene of the key taxon Frankia was sequenced. Parsimony and some distance analyses of the nifK amino acid sequences provide support for vertical descent of nifK, but other distance trees provide support for the lateral transfer of the gene. Bootstrap support was found for both hypotheses in all trees; the nifK data do not definitively favor one or the other hypothesis. A parsimony analysis of NifH provides support for horizontal transfer in accord with previous reports, although bootstrap analysis also shows some support for vertical descent of the orthologous nifH genes. A wider sampling of taxa and more sophisticated methods of phylogenetic inference are needed to understand the evolution of nif genes. The nif genes may also be powerful phylogenetic tools. If nifK evolved by vertical descent, it provides strong evidence that the cyanobacteria and proteobacteria are sister groups to the exclusion of the firmicutes, whereas 16S rRNA sequences are unable to resolve the relationships of these three major eubacterial lineages.
固氮酶的结构基因nifK、nifD和nifH对固氮作用至关重要。先前对nifH氨基酸序列的系统发育分析表明,该基因是从一种变形菌水平转移至革兰氏阳性菌/蓝细菌分支的,尽管旁系同源比较带来的混杂效应使得数据解读存在困难。研究人员利用nifD对nif基因水平转移进行了另一项测试,但NifD系统发育缺乏分辨率。在此,通过对第三个更长的nif基因nifK进行系统发育分析来探讨nif基因的系统发育。作为研究的一部分,对关键分类单元弗兰克氏菌的nifK基因进行了测序。对nifK氨基酸序列的简约分析和一些距离分析支持nifK的垂直遗传,但其他距离树状图支持该基因的横向转移。在所有树状图中,两种假设均获得了自展支持;nifK数据并未明确支持其中一种假设。对NifH的简约分析支持水平转移,与之前的报告一致,尽管自展分析也显示对直系同源nifH基因的垂直遗传有一些支持。需要对更多分类单元进行采样,并采用更复杂的系统发育推断方法来了解nif基因的进化。nif基因也可能是强大的系统发育工具。如果nifK是通过垂直遗传进化而来的,那么它有力地证明了蓝细菌和变形菌是姐妹群,而排除了厚壁菌门,而16S rRNA序列无法解析这三个主要真细菌谱系之间的关系。