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Intracellular Ca-carbonate biomineralization is widespread in cyanobacteria

机译:细胞内碳酸钙的生物矿化在蓝细菌中很普遍

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摘要

Cyanobacteria have played a significant role in the formation of past and modern carbonate deposits at the surface of the Earth using a biomineralization process that has been almost systematically considered induced and extracellular. Recently, a deep-branching cyanobacterial species, Candidatus Gloeomargarita lithophora, was reported to form intracellular amorphous Ca-rich carbonates. However, the significance and diversity of the cyanobacteria in which intracellular biomineralization occurs remain unknown. Here, we searched for intracellular Ca-carbonate inclusions in 68 cyanobacterial strains distributed throughout the phylogenetic tree of cyanobacteria. We discovered that diverse unicellular cyanobacterial taxa form intracellular amorphous Ca-carbonates with at least two different distribution patterns, suggesting the existence of at least two distinct mechanisms of biomineralization: (i) one with Ca-carbonate inclusions scattered within the cell cytoplasm such as in Ca. G. lithophora, and (ii) another one observed in strains belonging to the Thermosynechococcus elongatus BP-1 lineage, in which Ca-carbonate inclusions lie at the cell poles. This pattern seems to be linked with the nucleation of the inclusions at the septum of the cells, showing an intricate and original connection between cell division and biomineralization. These findings indicate that intracellular Ca-carbonate biomineralization by cyanobacteria has been overlooked by past studies and open new perspectives on the mechanisms and the evolutionary history of intra- and extracellular Ca-carbonate biomineralization by cyanobacteria.
机译:蓝细菌通过生物矿化过程在过去和现代在地球表面的碳酸盐沉积物的形成中发挥了重要作用,该过程已被系统地认为是诱导的和细胞外的。近来,据报道,一种深分支的蓝细菌物种Candidatus Gloeomargarita lithophora形成了细胞内无定形的富含钙的碳酸盐。然而,其中发生细胞内生物矿化的蓝细菌的重要性和多样性仍然未知。在这里,我们搜索了分布在整个蓝细菌系统树中的68个蓝细菌菌株中的细胞内碳酸钙内含物。我们发现,多样的单细胞蓝细菌类群形成具有至少两种不同分布模式的细胞内无定形碳酸钙,表明存在至少两种不同的生物矿化机制:(i)一种碳酸钙内含物散布在细胞质内,例如钙G. lithophora,和(ii)在属于嗜热嗜热球菌BP-1谱系的菌株中观察到的另一种,其中碳酸钙内含物位于细胞极。这种模式似乎与细胞隔中夹杂物的成核有关,表明细胞分裂与生物矿化之间存在复杂而原始的联系。这些发现表明,过去的研究已经忽视了蓝藻胞内碳酸钙生物矿化作用,并为蓝藻内和胞外碳酸钙生物矿化的机理和演化历史开辟了新的视角。

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