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Metabolic fluxes in the central carbon metabolism of Dinoroseobacter shibae and Phaeobacter gallaeciensis, two members of the marine Roseobacter clade

机译:海洋罗斯氏菌进化支的两个成员-芝迪氏菌和鸡菲菌的​​中心碳代谢中的代谢通量

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摘要

Abstract\ud \ud Background\ud In the present work the central carbon metabolism of Dinoroseobacter shibae and Phaeobacter gallaeciensis was studied at the level of metabolic fluxes. These two strains belong to the marine Roseobacter clade, a dominant bacterial group in various marine habitats, and represent surface-associated, biofilm-forming growth (P. gallaeciensis) and symbiotic growth with eukaryotic algae (D. shibae). Based on information from recently sequenced genomes, a rich repertoire of pathways has been identified in the carbon core metabolism of these organisms, but little is known about the actual contribution of the various reactions in vivo.\ud \ud \ud Results\ud Using 13C labelling techniques in specifically designed experiments, it could be shown that glucose-grown cells of D. shibae catabolise the carbon source exclusively via the Entner-Doudoroff pathway, whereas alternative routes of glycolysis and the pentose phosphate pathway are obviously utilised for anabolic purposes only. Enzyme assays confirmed this flux pattern and link the lack of glycolytic flux to the absence of phosphofructokinase activity. The previously suggested formation of phosphoenolpyruvate from pyruvate during mixotrophic CO2 assimilation was found to be inactive under the conditions studied. Moreover, it could be shown that pyruvate carboxylase is involved in CO2 assimilation and that the cyclic respiratory mode of the TCA cycle is utilised. Interestingly, the use of intracellular pathways was highly similar for P. gallaeciensis.\ud \ud \ud Conclusion\ud The present study reveals the first insight into pathway utilisation within the Roseobacter group. Fluxes through major intracellular pathways of the central carbon metabolism, which are closely linked to the various important traits found for the Roseobacter clade, could be determined. The close similarity of fluxes between the two physiologically rather different species might provide the first indication of more general key properties among members of the Roseobacter clade which may explain their enormous success in the marine realm.
机译:摘要\ ud \ ud背景\ ud在目前的工作中,从代谢通量的角度研究了芝芝和鸡菲杆菌的中心碳代谢。这两个菌株属于海洋玫瑰杆菌属,是各种海洋生境中的优势细菌群,代表与表面相关的生物膜形成生长(P. gallaeciensis)和与真核藻类(D. shibae)共生的生长。根据来自最近测序的基因组的信息,已在这些生物的碳核心代谢中发现了丰富的途径,但对体内各种反应的实际贡献知之甚少。在专门设计的实验中使用13C标记技术,可以证明芝士毛虫的葡萄糖生长细胞仅通过Entner-Doudoroff途径分解碳源,而糖酵解和戊糖磷酸途径的替代途径显然仅用于合成代谢目的。 。酶分析证实了这种通量模式,并将缺乏糖酵解通量与缺乏磷酸果糖激酶活性联系起来。发现在混合条件下CO2同化过程中丙酮酸形成的磷酸烯醇丙酮酸在研究条件下是无活性的。而且,可以表明丙酮酸羧化酶参与了CO 2同化,并且利用了TCA循环的循环呼吸模式。有趣的是,P。gallaeciensis的细胞内途径的使用与之高度相似。\ ud \ ud \ ud结论\ ud本研究揭示了迷迭香属组内途径利用的第一个见识。可以确定通过中央碳代谢的主要细胞内途径的通量,这些通量与为玫瑰红杆菌进化枝发现的各种重要特征密切相关。两个生理上不同的物种之间通量的紧密相似性可能提供了玫瑰红细菌进化枝成员之间更普遍的关键特性的第一个迹象,这可能解释了它们在海洋领域的巨大成功。

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