首页> 外文期刊>Frontiers in Microbiology >Insights Into the Mineralogy and Surface Chemistry of Extracellular Biogenic S 0 Globules Produced by Chlorobaculum tepidum
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Insights Into the Mineralogy and Surface Chemistry of Extracellular Biogenic S 0 Globules Produced by Chlorobaculum tepidum

机译:温和的Chlorobaculum tecpidum 产生的细胞外生物S 0 小球的矿物学和表面化学的认识

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Elemental sulfur (S ~(0)) is produced and degraded by phylogenetically diverse groups of microorganisms. For Chlorobaculum tepidum , an anoxygenic phototroph, sulfide is oxidized to produce extracellular S ~(0) globules, which can be further oxidized to sulfate. While some sulfur-oxidizing bacteria (e.g., Allochromatium vinosum ) are also capable of growth on commercial S ~(0) as an electron donor, C. tepidum is not. Even colloidal sulfur sols, which appear indistinguishable from biogenic globules, do not support the growth of C. tepidum . Here, we investigate the properties that make biogenic S ~(0) globules distinct from abiotic forms of S ~(0). We found that S ~(0) globules produced by C. tepidum and abiotic S ~(0) sols are quite similar in terms of mineralogy and material properties, but the two are distinguished primarily by the properties of their surfaces. C. tepidum ’s globules are enveloped by a layer of organics (protein and polysaccharides), which results in a surface that is fundamentally different from that of abiotic S ~(0) sols. The organic coating on the globules appears to slow the aging and crystallization of amorphous sulfur, perhaps providing an extended window of time for microbes in the environment to access the more labile forms of sulfur as needed. Overall, our results suggest that the surface of biogenic S ~(0) globules may be key to cell–sulfur interactions and the reactivity of biogenic S ~(0) in the environment.
机译:元素硫(S〜(0))是由种类繁多的微生物群产生和降解的。对于淡色的Chlorobaculum tepidum,是一种产氧的营养养分,将硫化物氧化生成胞外S〜(0)小球,然后可将其进一步氧化为硫酸盐。尽管一些硫氧化细菌(例如,异色变色菌)也能够在商业化的S〜(0)上作为电子供体生长,但温床梭菌却不能。甚至与生物小球无法区分的胶态硫溶胶也不能支持纤毛衣藻的生长。在这里,我们调查使S〜(0)生物球不同于非生物形式的S〜(0)小球的特性。我们发现,C。tepidum和非生物S〜(0)溶胶产生的S〜(0)球在矿物学和材料特性方面非常相似,但两者的主要区别在于它们的表面特性。纤毛衣藻的小球被一层有机物(蛋白质和多糖)包围,其表面与非生物S〜(0)溶胶的表面根本不同。小球上的有机涂层似乎减慢了无定形硫的老化和结晶,可能为环境中的微生物根据需要提供了更不稳定的硫形式提供了延长的时间窗口。总体而言,我们的结果表明,生物S〜(0)小球的表面可能是环境中细胞与硫相互作用和生物S〜(0)反应性的关键。

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