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Biomineralization Patterns of Intracellular Carbonatogenesis in Cyanobacteria: Molecular Hypotheses

机译:蓝细菌细胞内碳合成的生物矿化模式:分子假说。

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The recent discovery of intracellular carbonatogenesis in several cyanobacteria species has challenged the traditional view that this process was extracellular and not controlled. However, a detailed analysis of the size distribution, chemical composition and 3-D-arrangement of carbonates in these cyanobacteria is lacking. Here, we characterized these features in Candidatus Gloeomargarita lithophora C7 and Candidatus Synechococcus calcipolaris G9 by conventional transmission electron microscopy, tomography, ultramicrotomy, and scanning transmission X-ray microscopy (STXM). Both Ca . G. lithophora C7 and Ca. S. calcipolaris G9 formed numerous polyphosphate granules adjacent or engulfing Ca-carbonate inclusions when grown in phosphate-rich solutions. Ca-carbonates were scattered within Ca . G. lithophora C7 cells under these conditions, but sometimes arranged in one or several chains. In contrast, Ca-carbonates formed at cell septa in Ca. S. calcipolaris G9 and were segregated equally between daughter cells after cell division, arranging as distorted disks at cell poles. The size distribution of carbonates evolved from a positively to a negatively skewed distribution as particles grew. Conventional ultramicrotomy did not preserve Ca-carbonates explaining partly why intracellular calcification has been overlooked in the past. All these new observations allow discussing with unprecedented insight some nucleation and growth processes occurring in intracellularly calcifying cyanobacteria with a particular emphasis on the possible involvement of intracellular compartments and cytoskeleton.
机译:在一些蓝细菌物种中细胞内碳酸生成的最新发现挑战了这一过程在细胞外而不是受控的传统观点。然而,缺乏对这些蓝细菌中碳酸盐的尺寸分布,化学组成和3-D-排列的详细分析。在这里,我们通过常规的透射电子显微镜,层析成像,超薄切片术和扫描透射X射线显微镜(STXM)表征了假丝酵母C7和假丝酵母G9的特征。都Ca。 G. lithophora C7和Ca。当在富含磷酸盐的溶液中生长时,S。calcipolaris G9形成许多邻近或吞噬碳酸钙夹杂物的多磷酸盐颗粒。碳酸钙散布在钙内。在这些条件下,石楠G. C7细胞,但有时排列成一条或多条链。相反,碳酸钙在钙的细胞间隔处形成。细胞分裂后,S。calcipolaris G9和S9在子细胞之间均等地分离,在细胞极处排列成扭曲的盘状。随着颗粒的增长,碳酸盐的尺寸分布从正偏斜分布演变为负偏斜分布。常规的超薄切片术不能保留碳酸钙,这部分解释了为什么过去一直忽略细胞内钙化的原因。所有这些新发现使我们能够以前所未有的洞察力讨论细胞内钙化蓝细菌中发生的一些成核和生长过程,并特别强调细胞内区室和细胞骨架的可能参与。

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