Turova T P, Spiridonova E M, Slobodova N V, Bulygina E S, Keppen O I, Kuznetsov B B, Ivanovskiĭ R N
Mikrobiologiia. 2006 Mar-Apr;75(2):235-44.
Phylogeny of anoxygenic filamentous phototrophic bacteria (AFPB) of the family Oscillochloridaceae (Oscillochloris trichoides DG6T and the recently isolated strains Oscillochloris sp. R and C6) was studied based on comparative analyses of the genes coding for 16S rRNA (rrs), ribulose- 1,5-bisphosphate carboxylase/oxygenase (cbbL), and nitrogenase (nifH). The sequences of the genes studied proved to be identical in the three strains, which is in agreement with data obtained earlier that showed lack of differentiating phenotypic distinctions between these strains; therefore, it is proposed that the new strains should be identified as representatives of the species O. trichoides. Using an earlier designed system of oligonucleotide primers and a specially designed additional primer, fragments of the cbbL genes of the "red-like" form I RuBPC were amplified and sequenced for all of the O. trichoides strains. Analysis of the cbbL genes suggested a separate position of the bacteria studied in the phylogenetic tree, where O. trichoides strains formed an independent branch, which, apart from this species, also included the only studied species of gram-positive facultatively chemoautotrophic bacteria, Sulfobacillus acidophilus. In the phylogenetic tree inferred from the analysis of nifH genes, the bacteria under study also formed a new separate branch, deviating near the root, which indicated lack of relatedness between them and other phototrophic bacteria. The data obtained support the conclusion that AFPB has an ancient origin and their identification as one of the main evolutionary lineages of eubacteria, which was made based on the analysis of ribosomal genes.
基于对编码16S rRNA(rrs)、核酮糖-1,5-二磷酸羧化酶/加氧酶(cbbL)和固氮酶(nifH)的基因的比较分析,对振荡绿菌科的无氧丝状光合细菌(AFPB)(振荡绿菌DG6T以及最近分离出的菌株振荡绿菌属R和C6)的系统发育进行了研究。所研究基因的序列在这三个菌株中被证明是相同的,这与早期获得的数据一致,这些数据表明这些菌株之间缺乏可区分的表型差异;因此,建议将新菌株鉴定为振荡绿菌的代表物种。使用早期设计的寡核苷酸引物系统和专门设计的额外引物,对所有振荡绿菌菌株的“红色样”I型RuBPC的cbbL基因片段进行了扩增和测序。对cbbL基因的分析表明,所研究的细菌在系统发育树中处于一个单独的位置,其中振荡绿菌菌株形成一个独立的分支,除了该物种外,还包括唯一研究的革兰氏阳性兼性化学自养细菌嗜酸硫化芽孢杆菌。在根据nifH基因分析推断的系统发育树中,所研究的细菌也形成了一个新的单独分支,在根部附近偏离,这表明它们与其他光合细菌之间缺乏相关性。所获得的数据支持了基于核糖体基因分析得出的结论,即AFPB起源古老,应将其鉴定为真细菌的主要进化谱系之一。