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Genotypic and phenotypic diversity of cyanobacteria assigned to the genus Phormidium (Oscillatoriales) from different habitats and geographical sites

机译:分别来自不同生境和地理位置的Ph虫属(蓝藻属)的蓝细菌的基因型和表型多样性

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In this study, 30 strains of filamentous, non-heterocystous cyanobacteria from different habitats and different geographical regions assigned to diverse oscillatorian genera but here collectively referred to as members of the Phormidium group have been characterized using a polyphasic approach by comparing phenotypic and molecular characteristics. The phenotypic analysis dealt with cell and filament morphology, ultrastructure, phycoerythrin content, and complementary chromatic adaptation. The molecular phylogenetic analyses were based on sequences of the 16S rRNA gene and the adjacent intergenic transcribed spacer (ITS). The sequences were located on multiple branches of the inferred cyanobacterial 16S rRNA tree. For some, but not all, strains with identical 16S rDNA sequences, a higher level of discrimination was achieved by analyses of the less conserved ITS sequences. As shown for other cyanobacteria, no correlation was found between position of the strains in the phylogenetic tree and their geographic origin. Genetically similar strains originated from distant sites while other strains isolated from the same sampling site were in different phylogenetic clusters. Also the presence of phycoerythrin was not correlated with the strains’ position in the phylogenetic trees. In contrast, there was some correlation among inferred phylogenetic relationship, original environmental habitat, and morphology. Closely related strains came from similar ecosystems and shared the same morphological and ultrastructural features. Nevertheless, structural properties are insufficient in themselves for identification at the genus or species level since some phylogenetically distant members also showed similar morphological traits. Our results reconfirm that the Phormidium group is not phylogenetically coherent and requires revision.
机译:在这项研究中,通过比较表型和分子特征,采用多相方法表征了来自不同生境和不同地理区域的30种丝状,非异型蓝藻菌株,这些菌株被分配给不同的振荡属。表型分析涉及细胞和细丝形态,超微结构,藻红蛋白含量和互补色适应。分子系统发育分析是基于16S rRNA基因和相邻的基因间转录间隔区(ITS)的序列。序列位于推断的蓝细菌16S rRNA树的多个分支上。对于某些但不是全部具有相同16S rDNA序列的菌株,通过对保守性较低的ITS序列进行分析,可以实现更高的区分度。如对于其他蓝细菌所示,在系统发育树中菌株的位置与其地理起源之间未发现相关性。遗传上相似的菌株起源于遥远的地点,而从同一采样地点分离出的其他菌株则位于不同的系统发生簇中。此外,藻红蛋白的存在与菌株在系统树中的位置无关。相反,推断的系统发育关系,原始环境栖息地和形态之间存在一定的相关性。密切相关的菌株来自相似的生态系统,并具有相同的形态和超微结构特征。然而,由于某些系统发育距离较远的成员也表现出相似的形态学特征,因此其结构性质本身不足以在属或种水平上进行鉴定。我们的结果再次证实,Ph基团在系统发育上不连贯,需要修订。

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