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Day and Night: Metabolic Profiles and Evolutionary Relationships of Six Axenic Non-Marine Cyanobacteria

机译:白天和黑夜:六种轴生的非海洋蓝细菌的代谢谱和进化关系。

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摘要

Cyanobacteria are dominant primary producers of various ecosystems and they colonize marine as well as freshwater and terrestrial habitats. On the basis of their oxygenic photosynthesis they are known to synthesize a high number of secondary metabolites, which makes them promising for biotechnological applications. State-of-the-art sequencing and analytical techniques and the availability of several axenic strains offer new opportunities for the understanding of the hidden metabolic potential of cyanobacteria beyond those of single model organisms. Here, we report comprehensive genomic and metabolic analyses of five non-marine cyanobacteria, that is, Nostoc sp. DSM 107007, Anabaena variabilis DSM 107003, Calothrix desertica DSM 106972, Chroococcidiopsis cubana DSM 107010, Chlorogloeopsis sp. PCC 6912, and the reference strain Synechocystis sp. PCC 6803. Five strains that are prevalently belonging to the order Nostocales represent the phylogenetic depth of clade B1, a morphologically highly diverse sister lineage of clade B2 that includes strain PCC 6803. Genome sequencing, light and scanning electron microscopy revealed the characteristics and axenicity of the analyzed strains. Phylogenetic comparisons showed the limits of the 16S rRNA gene for the classification of cyanobacteria, but documented the applicability of a multilocus sequence alignment analysis based on 43 conserved protein markers. The analysis of metabolites of the core carbon metabolism showed parts of highly conserved metabolic pathways as well as lineage specific pathways such as the glyoxylate shunt, which was acquired by cyanobacteria at least twice via horizontal gene transfer. Major metabolic changes were observed when we compared alterations between day and night samples. Furthermore, our results showed metabolic potential of cyanobacteria beyond Synechocystis sp. PCC 6803 as model organism and may encourage the cyanobacterial community to broaden their research to related organisms with higher metabolic activity in the desired pathways.
机译:蓝细菌是各种生态系统的主要主要生产者,它们定居在海洋以及淡水和陆地生境中。基于它们的氧光合作用,已知它们可以合成大量的次级代谢产物,这使其在生物技术应用中很有前途。最先进的测序和分析技术以及几种抗微生物菌株的可用性为理解蓝藻隐藏的潜在代谢潜力提供了新的机会,超越了单一模型生物体。在这里,我们报告了五个非海洋蓝细菌,即Nostoc sp。的综合基因组和代谢分析。 DSM 107007,Anabarena variabilis DSM 107003,Calotrix desertica DSM 106972,古巴嗜铬菌DSM 107010,Chlorogloeopsis sp。 PCC 6912和参考菌株Synechocystis sp。 PCC6803。五种主要属于诺斯卡氏菌的菌株代表进化枝B1的系统发生深度,进化枝B2的形态高度多样的姐妹谱系包括PCC 6803菌株。基因组测序,光和扫描电子显微镜揭示了其特征和焦虑。分析菌株。系统发育比较显示了16S rRNA基因在蓝细菌分类中的局限性,但记录了基于43个保守的蛋白质标记的多基因座序列比对分析的适用性。核心碳代谢的代谢物分析显示,部分高度保守的代谢途径以及谱系特异性途径(例如乙醛酸分流)被蓝细菌通过水平基因转移至少两次获得。当我们比较昼夜样品之间的变化时,观察到主要的代谢变化。此外,我们的研究结果表明,蓝藻的代谢潜力超出了蓝藻。 PCC 6803作为模型生物,可能会鼓励蓝细菌界将其研究范围扩展到在所需途径中具有较高代谢活性的相关生物。

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