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Carbonate Mineral Formation under the Influence of Limestone-Colonizing Actinobacteria: Morphology and Polymorphism

机译:石灰石定殖放线菌影响下的碳酸盐矿物形成:形态和多态性

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摘要

Microorganisms and their biomineralization processes are widespread in almost every environment on earth. In this work, Streptomyces luteogriseus DHS C014, a dominant lithophilous actinobacteria isolated from microbial mats on limestone rocks, was used to investigate its potential biomineralization to allow a better understanding of bacterial contributions to carbonate mineralization in nature. The ammonium carbonate free-drift method was used with mycelium pellets, culture supernatant, and spent culture of the strain. Mineralogical analyses showed that hexagonal prism calcite was only observed in the sub-surfaces of the mycelium pellets, which is a novel morphology mediated by microbes. Hemispheroidal vaterite appeared in the presence of spent culture, mainly because of the effects of soluble microbial products (SMP) during mineralization. When using the culture supernatant, doughnut-like vaterite was favored by actinobacterial mycelia, which has not yet been captured in previous studies. Our analyses suggested that the effects of mycelium pellets as a molecular template almost gained an advantage over SMP both in crystal nucleation and growth, having nothing to do with biological activity. It is thereby convinced that lithophilous actinobacteria, S. luteogriseus DHS C014, owing to its advantageous genetic metabolism and filamentous structure, showed good biomineralization abilities, maybe it would have geoactive potential for biogenic carbonate in local microenvironments.
机译:微生物及其生物矿化过程几乎遍及地球上的每个环境。在这项工作中,黄褐链霉菌DHS C014是从石灰石岩石上的微生物垫中分离出的主要嗜石性放线菌,用于研究其潜在的生物矿化作用,以便更好地了解细菌对自然界碳酸盐矿化的贡献。碳酸铵自由漂移法用于菌丝体沉淀,培养上清液和菌株的废培养。矿物学分析表明,六角形方解石仅在菌丝体颗粒的亚表面观察到,这是一种由微生物介导的新型形态。半球形球ate石出现在废培养液中,主要是由于矿化过程中可溶性微生物产物(SMP)的作用。当使用培养上清液时,放线菌菌丝体喜欢甜甜圈状的球ate石,以前的研究尚未发现。我们的分析表明,菌丝体小球作为分子模板的作用在晶体成核和生长方面几乎都比SMP具有优势,而与生物活性无关。因此,可以确信,由于其亲和的遗传代谢和丝状结构,嗜石绿放线菌S. luteogriseus DHS C014表现出良好的生物矿化能力,在局部微环境中可能具有生物活性碳酸盐的地质活性潜力。

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