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基于藻蓝蛋白操纵子(cpcb-IGS-cpcA)和16S-23S ITS区域序列分析对印度次大陆海洋蓝藻进行的分子特征分析。

Molecular characterization of marine Cyanobacteria from the Indian subcontinent deduced from sequence analysis of the phycocyanin operon (cpcb-IGS-cpcA) and 16S-23S ITS region.

作者信息

Premanandh Jagadeesan, Priya Balakrishnan, Teneva Ivanka, Dzhambazov Balik, Prabaharan Dharmar, Uma Lakshmanan

机构信息

National Facility for Marine Cyanobacteria, Bharathidasan University, Palkalaiperur, Tiruchirapalli, 620024 India.

出版信息

J Microbiol. 2006 Dec;44(6):607-16.

Abstract

Molecular characterization of ten marine cyanobacterial isolates belonging to the order Oscillatoriales was carried out using the phycocyanin locus (cpcBA-IGS) and the 16S-23S internally transcribed spacer region. DNA sequences from the phycocyanin operon discriminated ten genotypes, which corresponded to seven morphotypes identified by traditional microscopic analysis. The cpcB coding region revealed 17 % nucleotide variation, while cpcA exhibited 29 % variation across the studied species. Phylogenetic analyses support the conclusion that the Phormidium and Leptolyngbya genera are not monophyletic. The nucleotide variations were heterogeneously distributed with no or minimal informative nucleotides. Our results suggest that the discriminatory power of the phycocyanin region varies across the cyanobacterial species and strains. The DNA sequence analysis of the 16S-23S internally transcribed spacer region also supports the polyphyletic nature of the studied oscillatorian cyanobacteria. This study demonstrated that morphologically very similar strains might differ genotypically. Thus, molecular approaches comprising different gene regions in combination with morphological criteria may provide better taxonomical resolution of the order Oscillatoriales.

摘要

利用藻蓝蛋白基因座(cpcBA-IGS)和16S-23S内转录间隔区,对属于颤藻目(Oscillatoriales)的10株海洋蓝藻分离株进行了分子特征分析。藻蓝蛋白操纵子的DNA序列区分出10种基因型,这与通过传统显微镜分析鉴定出的7种形态型相对应。在所研究的物种中,cpcB编码区显示出17%的核苷酸变异,而cpcA则表现出29%的变异。系统发育分析支持这样的结论,即席藻属(Phormidium)和鞘丝藻属(Leptolyngbya)并非单系类群。核苷酸变异呈不均匀分布,信息性核苷酸很少或没有。我们的结果表明,藻蓝蛋白区域的鉴别能力在不同的蓝藻物种和菌株中有所不同。16S-23S内转录间隔区的DNA序列分析也支持所研究的颤藻目蓝藻具有多系性质。这项研究表明,形态上非常相似的菌株在基因型上可能存在差异。因此,结合不同基因区域的分子方法与形态学标准,可能会为颤藻目提供更好的分类分辨率。

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