College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing210095, China.
Microsc Microanal. 2020 Apr;26(2):275-286. doi: 10.1017/S1431927620000057.
Research on the biogenic-specific polymorphism and morphology of carbonate has been gaining momentum in the fields of biomineralization and industrial engineering in recent years. We report the nucleation of carbonate particles on bacterial cell templates to produce a novel dumbbell-like morphology which was assembled by needle-like crystals of magnesium calcite or aragonite radiating out from both ends of the template bacterium. Mature dumbbell-like structures had a tendency to break apart in the central template region, which was made up mostly of weak amorphous carbonate. Further crystal growth, especially at the template region, transformed the broken pieces into spherulites. Rod-like cell templates were essential for the formation of dumbbell-like morphologies, and we propose a possible formation mechanism of the dumbbell-like morphology. Our findings provide new perspectives on the morphological formation mechanism in biomineralization systems and may have a potential significance in assembling composite materials suitable for industrial applications.
近年来,生物特异性多态性和碳酸盐形态的研究在生物矿化和工业工程领域引起了关注。我们报告了在细菌细胞模板上诱导碳酸盐颗粒成核,从而产生一种新颖的哑铃状形态,该形态由从模板细菌两端辐射出的针状菱镁矿或文石的晶体组装而成。成熟的哑铃状结构有在中央模板区域断裂的趋势,该区域主要由较弱的无定形碳酸盐组成。进一步的晶体生长,特别是在模板区域,将碎片转化为球晶。棒状细胞模板对于形成哑铃状形态至关重要,我们提出了哑铃状形态形成的可能机制。我们的发现为生物矿化系统中形态形成机制提供了新的视角,并且在组装适合工业应用的复合材料方面可能具有潜在的意义。