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基于16S rRNA、gyrB、rpoC1和rpoD1基因序列推断的蓝细菌系统发育关系。

The phylogenetic relationships of cyanobacteria inferred from 16S rRNA, gyrB, rpoC1 and rpoD1 gene sequences.

作者信息

Seo Pil-Soo, Yokota Akira

机构信息

Laboratory of Bioresources, Institute of Molecular and Cellular Biosciences, The University of Tokyo, Bunkyo-ku, Tokyo 113-0032, Japan.

出版信息

J Gen Appl Microbiol. 2003 Jun;49(3):191-203. doi: 10.2323/jgam.49.191.

Abstract

Phylogenetic analysis of cyanobacteria was carried out using the small subunit rRNA (16S rRNA), DNA gyrase subunit B (gyrB), DNA-dependent RNA polymerase gamma subunit (rpoC1) and a principal sigma factor of E. coli sigma(70) type for DNA-dependent RNA polymerase (rpoD1) gene sequences of 24 strains which contained 5 subgroups of cyanobacteria-3 strains of the Chroococcales, 5 strains of the Pluerocapsales, 7 strains of the Oscillatoriales, 7 strains of the Nostocales and 2 strains of the Stigonematales. Degenerated PCR primers of gyrB, rpoC1 and rpoD1 genes were designed using consensus amino acid sequences registered in GenBank. The phylogenetic positions of cyanobacteria were resolved through phylogenetic analysis based on 16S rDNA, gyrB, rpoC1 and rpoD1 gene sequences. Phylogenies of gyrB, rpoC1 and rpoD1 support 16S rRNA-based classification of cyanobacteria. Interestingly, phylogenies from amino acid sequences deduced from gyrB and combined amino acid sequences deduced from rpoC1 and rpoD1 genes strongly support that of 16S rRNA, but the branching pattens of the trees based on 16S rDNA, GyrB, rpoC1, rpoD1 and combined amino acid sequences deduced from rpoC1 and rpoD1 were not congruent. In this study, we showed the correlation among phylogenetic relationships of 16S rDNA, gyrB, rpoC1 and rpoD1 genes. The phylogenetic trees based on the sequences of 16S rDNA, GyrB, rpoC1, rpoD1 and the combined amino acid sequences deduced from rpoC1 and rpoD1 showed that the lateral gene transfer of rRNA might be suspected for Synechocystis sp. PCC 6803.

摘要

利用小亚基rRNA(16S rRNA)、DNA促旋酶亚基B(gyrB)、依赖DNA的RNA聚合酶γ亚基(rpoC1)以及大肠杆菌σ70型依赖DNA的RNA聚合酶主要σ因子(rpoD1)基因序列,对24株蓝细菌进行了系统发育分析,这24株蓝细菌包含蓝细菌的5个亚群——色球藻目3株、管孢藻目5株、颤藻目7株、念珠藻目7株和真枝藻目2株。基于GenBank中登记的共有氨基酸序列设计了gyrB、rpoC1和rpoD1基因的简并PCR引物。通过基于16S rDNA、gyrB、rpoC1和rpoD1基因序列的系统发育分析,确定了蓝细菌的系统发育位置。gyrB、rpoC1和rpoD1的系统发育支持基于16S rRNA的蓝细菌分类。有趣的是,由gyrB推导的氨基酸序列以及由rpoC1和rpoD1基因推导的联合氨基酸序列的系统发育强烈支持16S rRNA的系统发育,但基于16S rDNA、GyrB、rpoC1、rpoD1以及由rpoC1和rpoD1推导的联合氨基酸序列构建的树的分支模式并不一致。在本研究中,我们展示了16S rDNA、gyrB、rpoC1和rpoD1基因系统发育关系之间的相关性。基于16S rDNA、GyrB、rpoC1、rpoD1序列以及由rpoC1和rpoD1推导的联合氨基酸序列构建的系统发育树表明,聚球藻属PCC 6803可能存在rRNA的横向基因转移。

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